Evolution of the bilaterian mouth and anus

[1]  ACOELOMORPHA , 2020, The Invertebrate Tree of Life.

[2]  HEMICHORDATA , 2020, The Invertebrate Tree of Life.

[3]  T. Pandian Chaetognatha , 2020, Reproduction and Development in Minor Phyla.

[4]  T. Pandian Phoronida , 2020, Reproduction and Development in Minor Phyla.

[5]  C. Nielsen Origin of the trochophora larva , 2018, Royal Society Open Science.

[6]  M. Martindale,et al.  Hox and Wnt pattern the primary body axis of an anthozoan cnidarian before gastrulation , 2018, Nature Communications.

[7]  D. Arendt Animal Evolution: Convergent Nerve Cords? , 2018, Current Biology.

[8]  U. Jondelius,et al.  Convergent evolution of bilaterian nerve cords , 2017, Nature.

[9]  G. von Dassow,et al.  The trochoblasts in the pilidium larva break an ancient spiralian constraint to enable continuous larval growth and maximally indirect development , 2017, EvoDevo.

[10]  Grigory Genikhovich,et al.  On the evolution of bilaterality , 2017, Development.

[11]  J. Henry,et al.  Morphogenesis along the animal-vegetal axis: fates of primary quartet micromere daughters in the gastropod Crepidula fornicata , 2017, BMC Evolutionary Biology.

[12]  R. Janssen,et al.  Investigation of endoderm marker-genes during gastrulation and gut-development in the velvet worm Euperipatoides kanangrensis. , 2017, Developmental biology.

[13]  Philipp H. Schiffer,et al.  The mitochondrial genomes of the acoelomorph worms Paratomella rubra, Isodiametra pulchra and Archaphanostoma ylvae , 2017, Scientific Reports.

[14]  Bruno C. Vellutini,et al.  Cleavage modification did not alter blastomere fates during bryozoan evolution , 2017, BMC Biology.

[15]  D. Richter,et al.  A Large and Consistent Phylogenomic Dataset Supports Sponges as the Sister Group to All Other Animals , 2017, Current Biology.

[16]  A. Wanninger,et al.  Neuronal patterning of the tubular collar cord is highly conserved among enteropneusts but dissimilar to the chordate neural tube , 2017, bioRxiv.

[17]  C. Nielsen Evolution of deuterostomy – and origin of the chordates , 2017, Biological reviews of the Cambridge Philosophical Society.

[18]  D. Weese,et al.  Phylogenomics of Lophotrochozoa with Consideration of Systematic Error , 2016, Systematic biology.

[19]  M. Martindale,et al.  The developmental basis for the recurrent evolution of deuterostomy and protostomy , 2016, Nature Ecology &Evolution.

[20]  J. V. Döhren,et al.  Development of the Nervous System of Carinina ochracea (Palaeonemer-tea, Nemertea). , 2016 .

[21]  C. Amemiya,et al.  The Presence of a Functionally Tripartite Through-Gut in Ctenophora Has Implications for Metazoan Character Trait Evolution , 2016, Current Biology.

[22]  F. Rentzsch,et al.  Genomics and development of Nematostella vectensis and other anthozoans. , 2016, Current opinion in genetics & development.

[23]  T. Lecuit,et al.  Evo–Devo: Universal Toll Pass for the Extension Highway? , 2016, Current Biology.

[24]  M. A. Benton,et al.  Toll Genes Have an Ancestral Role in Axis Elongation , 2016, Current Biology.

[25]  K. Worsaae,et al.  Nervous system and ciliary structures of Micrognathozoa (Gnathifera): evolutionary insight from an early branch in Spiralia , 2016, Royal Society Open Science.

[26]  Gary D Bader,et al.  HOX gene complement and expression in the planarian Schmidtea mediterranea , 2016, EvoDevo.

[27]  T. Hankeln,et al.  Phylogeny of Syndermata (syn. Rotifera): Mitochondrial gene order verifies epizoic Seisonidea as sister to endoparasitic Acanthocephala within monophyletic Hemirotifera. , 2016, Molecular phylogenetics and evolution.

[28]  J. Reimer,et al.  Amphioxus mouth after dorso-ventral inversion , 2016, Zoological Letters.

[29]  G. Rouse,et al.  New deep-sea species of Xenoturbella and the position of Xenacoelomorpha , 2016, Nature.

[30]  F. Ronquist,et al.  Xenacoelomorpha is the sister group to Nephrozoa , 2016, Nature.

[31]  N. Strausfeld,et al.  The larval nervous system of the penis worm Priapulus caudatus (Ecdysozoa) , 2016, Philosophical Transactions of the Royal Society B: Biological Sciences.

[32]  E. Perea-Atienza,et al.  Xenacoelomorpha: a case of independent nervous system centralization? , 2016, Philosophical Transactions of the Royal Society B: Biological Sciences.

[33]  L. Moroz,et al.  Independent origins of neurons and synapses: insights from ctenophores , 2016, Philosophical Transactions of the Royal Society B: Biological Sciences.

[34]  D. Arendt,et al.  Gastric pouches and the mucociliary sole: setting the stage for nervous system evolution , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.

[35]  F. Rentzsch,et al.  Evolution of eumetazoan nervous systems: insights from cnidarians , 2015, Philosophical Transactions of the Royal Society B: Biological Sciences.

[36]  D. Arendt,et al.  From nerve net to nerve ring, nerve cord and brain — evolution of the nervous system , 2015, Nature Reviews Neuroscience.

[37]  Julia D. Sigwart,et al.  Mollusca: Caudofoveata, Monoplacophora, Polyplacophora, Scaphopoda, Solenogastres , 2015 .

[38]  É. Röttinger,et al.  Characterization of Morphological and Cellular Events Underlying Oral Regeneration in the Sea Anemone, Nematostella vectensis , 2015, International journal of molecular sciences.

[39]  H. Philippe,et al.  Genomic data do not support comb jellies as the sister group to all other animals , 2015, Proceedings of the National Academy of Sciences.

[40]  A. Edgar,et al.  Gastrulation occurs in multiple phases at two distinct sites in Latrodectus and Cheiracanthium spiders , 2015, EvoDevo.

[41]  A. Wanninger,et al.  The serotonin-lir nervous system of the Bryozoa (Lophotrochozoa): a general pattern in the Gymnolaemata and implications for lophophore evolution of the phylum , 2015, BMC Evolutionary Biology.

[42]  O. Zaytseva,et al.  Comparative morphology of the nervous system in three phylactolaemate bryozoans , 2015, Frontiers in Zoology.

[43]  H. Philippe,et al.  Phylogenomic Insights into Animal Evolution , 2015, Current Biology.

[44]  P. Mulder,et al.  Selective Heart Rate Reduction Improves Metabolic Syndrome–related Left Ventricular Diastolic Dysfunction , 2015, Journal of cardiovascular pharmacology.

[45]  Antje H L Fischer,et al.  Deployment of regulatory genes during gastrulation and germ layer specification in a model spiralian mollusc Crepidula , 2015, Developmental dynamics : an official publication of the American Association of Anatomists.

[46]  Bruno C. Vellutini,et al.  Evolution and development of the adelphophagic, intracapsular Schmidt’s larva of the nemertean Lineus ruber , 2015, EvoDevo.

[47]  L. Hiebert,et al.  Expression of Hox, Cdx, and Six3/6 genes in the hoplonemertean Pantinonemertes californiensis offers insight into the evolution of maximally indirect development in the phylum Nemertea , 2015, EvoDevo.

[48]  G. Giribet,et al.  Spiralian Phylogeny Informs the Evolution of Microscopic Lineages , 2015, Current Biology.

[49]  Anne Weigert,et al.  The Evolution of Annelids Reveals Two Adaptive Routes to the Interstitial Realm , 2015, Current Biology.

[50]  D. Arendt,et al.  Did the notochord evolve from an ancient axial muscle? The axochord hypothesis , 2015, BioEssays : news and reviews in molecular, cellular and developmental biology.

[51]  F. Leasi,et al.  An Integrated Morphological and Molecular Approach to the Description and Systematisation of a Novel Genus and Species of Macrodasyida (Gastrotricha) , 2015, PloS one.

[52]  J. Henry,et al.  Spiralian gastrulation: germ layer formation, morphogenesis, and fate of the blastopore in the slipper snail Crepidula fornicata , 2015, EvoDevo.

[53]  D. Littlewood,et al.  Evolution: A Turn Up for the Worms , 2015, Current Biology.

[54]  N. Skunca,et al.  A Transcriptomic-Phylogenomic Analysis of the Evolutionary Relationships of Flatworms , 2015, Current Biology.

[55]  A. Hejnol,et al.  Getting to the bottom of anal evolution , 2015 .

[56]  G. Mayer,et al.  Neural development in the tardigrade Hypsibius dujardini based on anti-acetylated α-tubulin immunolabeling , 2015, EvoDevo.

[57]  R. Janssen,et al.  Fate and nature of the onychophoran mouth–anus furrow and its contribution to the blastopore , 2015, Proceedings of the Royal Society B: Biological Sciences.

[58]  E. Temereva,et al.  Modern Data on the Innervation of the Lophophore in Lingula anatina (Brachiopoda) Support the Monophyly of the Lophophorates , 2015, PloS one.

[59]  A. Hejnol,et al.  The study of Priapulus caudatus reveals conserved molecular patterning underlying different gut morphogenesis in the Ecdysozoa , 2015, BMC Biology.

[60]  L. Hiebert,et al.  Hox genes pattern the anterior-posterior axis of the juvenile but not the larva in a maximally indirect developing invertebrate, Micrura alaskensis (Nemertea) , 2015, BMC Biology.

[61]  D. Hayward,et al.  The organizer in evolution-gastrulation and organizer gene expression highlight the importance of Brachyury during development of the coral, Acropora millepora. , 2015, Developmental biology.

[62]  D. Iber,et al.  Axis Patterning by BMPs: Cnidarian Network Reveals Evolutionary Constraints , 2015, Cell reports.

[63]  Pierre Kerner,et al.  A metameric origin for the annelid pygidium? , 2015, BMC Evolutionary Biology.

[64]  J. Abril,et al.  The nervous system of Xenacoelomorpha: a genomic perspective , 2015, Journal of Experimental Biology.

[65]  T. Minokawa,et al.  Neurogenesis in directly and indirectly developing enteropneusts: of nets and cords , 2015, Organisms Diversity & Evolution.

[66]  M. Yamaguchi,et al.  Development of ciliary bands in larvae of the living isocrinid sea lily Metacrinus rotundus , 2013, Acta zoologica.

[67]  G. Haszprunar Review of data for a morphological look on Xenacoelomorpha (Bilateria incertae sedis) , 2015, Organisms Diversity & Evolution.

[68]  A. Wanninger Evolutionary Developmental Biology of Invertebrates 2 , 2015, Springer Vienna.

[69]  P. Beckers The nervous systems of Pilidiophora (Nemertea) , 2015, Zoomorphology.

[70]  G. Jékely,et al.  The phylogenetic position of ctenophores and the origin(s) of nervous systems , 2015, EvoDevo.

[71]  A. Wanninger,et al.  Development of the nervous system in Solenogastres (Mollusca) reveals putative ancestral spiralian features , 2014, EvoDevo.

[72]  G. Giribet,et al.  A transcriptomic approach to ribbon worm systematics (nemertea): resolving the pilidiophora problem. , 2014, Molecular biology and evolution.

[73]  G. Giribet,et al.  Animal Phylogeny and Its Evolutionary Implications , 2014 .

[74]  M. Boyle,et al.  Molecular conservation of metazoan gut formation: evidence from expression of endomesoderm genes in Capitella teleta (Annelida) , 2014, EvoDevo.

[75]  Oleg Simakov,et al.  Development of the annelid axochord: Insights into notochord evolution , 2014, Science.

[76]  D. Arendt,et al.  Evolution: Ctenophore Genomes and the Origin of Neurons , 2014, Current Biology.

[77]  M. Akam,et al.  Germ cells of the centipede Strigamia maritima are specified early in embryonic development , 2014, Developmental biology.

[78]  J. Ryan Did the ctenophore nervous system evolve independently? , 2014, Zoology.

[79]  A. Hejnol,et al.  Development and juvenile anatomy of the nemertodermatid Meara stichopi (Bock) Westblad 1949 (Acoelomorpha) , 2014, Frontiers in Zoology.

[80]  C. Laumer,et al.  New insights into the phylogeny, systematics and DNA barcoding of Nemertea , 2014, Invertebrate Systematics.

[81]  Xin Yi Chan,et al.  Development of blastomere clones in the Ilyanassa embryo: transformation of the spiralian blastula into the larval body plan , 2014, Development Genes and Evolution.

[82]  B. Nickel,et al.  Illuminating the base of the annelid tree using transcriptomics. , 2014, Molecular biology and evolution.

[83]  Victor V. Solovyev,et al.  The Ctenophore Genome and the Evolutionary Origins of Neural Systems , 2014, Nature.

[84]  E. Temereva,et al.  Organization and metamorphic remodeling of the nervous system in juveniles of Phoronopsis harmeri (Phoronida): insights into evolution of the bilaterian nervous system , 2014, Frontiers in Zoology.

[85]  Anne Weigert,et al.  Platyzoan paraphyly based on phylogenomic data supports a noncoelomate ancestry of spiralia. , 2014, Molecular biology and evolution.

[86]  S. McKinney,et al.  Selective amputation of the pharynx identifies a FoxA-dependent regeneration program in planaria , 2014, eLife.

[87]  S. Tamm Cilia and the life of ctenophores , 2014 .

[88]  M. Arnone,et al.  Pattern and process during sea urchin gut morphogenesis: The regulatory landscape , 2014, Genesis.

[89]  I. Ebersberger,et al.  Transcriptome Data Reveal Syndermatan Relationships and Suggest the Evolution of Endoparasitism in Acanthocephala via an Epizoic Stage , 2014, PloS one.

[90]  A. Jørgensen,et al.  Brain anatomy of the marine tardigrade actinarctus doryphorus (arthrotardigrada) , 2014, Journal of morphology.

[91]  P. Dilly Cephalodiscus reproductive biology (Pterobranchia, Hemichordata) , 2014 .

[92]  J. Henry,et al.  Ins and outs of Spiralian gastrulation. , 2014, The International journal of developmental biology.

[93]  D. Weisblat,et al.  Developmental biology of the leech Helobdella. , 2014, The International journal of developmental biology.

[94]  B. David,et al.  How Hox genes can shed light on the place of echinoderms among the deuterostomes , 2014, EvoDevo.

[95]  J. Gerhart,et al.  The Fox/Forkhead transcription factor family of the hemichordate Saccoglossus kowalevskii , 2014, EvoDevo.

[96]  K. Rawlinson The diversity, development and evolution of polyclad flatworm larvae , 2014, EvoDevo.

[97]  M. Byrne,et al.  Oral–aboral identity displayed in the expression of HpHox3 and HpHox11/13 in the adult rudiment of the sea urchin Holopneustes purpurescens , 2014, Development Genes and Evolution.

[98]  Raju Tomer,et al.  Larval body patterning and apical organs are conserved in animal evolution , 2014, BMC Biology.

[99]  E. Temereva,et al.  Development and organization of the larval nervous system in Phoronopsis harmeri: new insights into phoronid phylogeny , 2014, Frontiers in Zoology.

[100]  Nicholas H. Putnam,et al.  The Genome of the Ctenophore Mnemiopsis leidyi and Its Implications for Cell Type Evolution , 2013, Science.

[101]  H. Wada,et al.  Hemichordate neurulation and the origin of the neural tube , 2013, Nature Communications.

[102]  C. Nielsen Life cycle evolution: was the eumetazoan ancestor a holopelagic, planktotrophic gastraea? , 2013, BMC Evolutionary Biology.

[103]  David Q. Matus,et al.  Ectopic activation of the canonical wnt signaling pathway affects ectodermal patterning along the primary axis during larval development in the anthozoan Nematostella vectensis. , 2013, Developmental biology.

[104]  M. Arnone,et al.  Identification of an intact ParaHox cluster with temporal colinearity but altered spatial colinearity in the hemichordate Ptychodera flava , 2013, BMC Evolutionary Biology.

[105]  A. Wanninger,et al.  Immunocytochemical studies reveal novel neural structures in nemertean pilidium larvae and provide evidence for incorporation of larval components into the juvenile nervous system , 2013, Frontiers in Zoology.

[106]  E. Ruppert MORPHOLOGY OF HATSCHEK'S NEPHRIDIUM IN LARVAL AND JUVENILE STAGES OF BRANCHIOSTOMA VIRGINIAE (CEPHALOCHORDATA) , 2013 .

[107]  C. Arenas-Mena Brachyury, Tbx2/3 and sall expression during embryogenesis of the indirectly developing polychaete Hydroides elegans. , 2013, The International journal of developmental biology.

[108]  D. Pisani,et al.  Molecular Timetrees Reveal a Cambrian Colonization of Land and a New Scenario for Ecdysozoan Evolution , 2013, Current Biology.

[109]  Sarah J. Bourlat,et al.  Xenoturbella bocki exhibits direct development with similarities to Acoelomorpha , 2013, Nature Communications.

[110]  Henriette Busengdal,et al.  The Bilaterian Head Patterning Gene six3/6 Controls Aboral Domain Development in a Cnidarian , 2013, PLoS biology.

[111]  M. Martindale Evolution of Development: The Details Are in the Entrails , 2013, Current Biology.

[112]  G. Scholtz,et al.  Arthropod Embryology: Cleavage and Germ Band Development , 2013 .

[113]  A. Collins,et al.  Cnidarian phylogenetic relationships as revealed by mitogenomics , 2013, BMC Evolutionary Biology.

[114]  E. Temereva,et al.  Embryogenesis in phoronids , 2012 .

[115]  M. Martindale,et al.  Coral comparative genomics reveal expanded Hox cluster in the cnidarian-bilaterian ancestor. , 2012, Integrative and comparative biology.

[116]  R. Janssen,et al.  Deuterostomic Development in the Protostome Priapulus caudatus , 2012, Current Biology.

[117]  A. Jørgensen,et al.  Neuroanatomy of halobiotus crispae (eutardigrada: hypsibiidae): Tardigrade brain structure supports the clade panarthropoda , 2012 .

[118]  P. Martinez,et al.  The nervous system of Isodiametra pulchra (Acoela) with a discussion on the neuroanatomy of the Xenacoelomorpha and its evolutionary implications , 2012, Frontiers in Zoology.

[119]  B. J. Eriksson,et al.  Early development in the velvet worm Euperipatoides kanangrensis Reid 1996 (Onychophora: Peripatopsidae) , 2012, Arthropod structure & development.

[120]  E. Temereva,et al.  Development of the nervous system in Phoronopsis harmeri (Lophotrochozoa, Phoronida) reveals both deuterostome- and trochozoan-like features , 2012, BMC Evolutionary Biology.

[121]  T. Holstein,et al.  The evolution of the Wnt pathway. , 2012, Cold Spring Harbor perspectives in biology.

[122]  C. Nielsen How to make a protostome , 2012, Invertebrate Systematics.

[123]  Andrew D. Peel,et al.  A Segmentation Clock with Two-Segment Periodicity in Insects , 2012, Science.

[124]  R. Loesel,et al.  Comparative neuroanatomy of Caudofoveata, Solenogastres, Polyplacophora, and Scaphopoda (Mollusca) and its phylogenetic implications , 2012, Zoomorphology.

[125]  E. Temereva Ventral nerve cord in Phoronopsis harmeri larvae. , 2012, Journal of experimental zoology. Part B, Molecular and developmental evolution.

[126]  F. Rentzsch,et al.  Nervous systems of the sea anemone Nematostella vectensis are generated by ectoderm and endoderm and shaped by distinct mechanisms , 2012, Development.

[127]  G. Richards,et al.  Expression of the pair-rule gene homologs runt, Pax3/7, even-skipped-1 and even-skipped-2 during larval and juvenile development of the polychaete annelid Capitella teleta does not support a role in segmentation , 2012, EvoDevo.

[128]  T. Stach,et al.  The central and peripheral nervous system of Cephalodiscus gracilis (Pterobranchia, Deuterostomia) , 2012, Zoomorphology.

[129]  D. Stefanik,et al.  Induction of canonical Wnt signaling by alsterpaullone is sufficient for oral tissue fate during regeneration and embryogenesis in Nematostella vectensis , 2011, Developmental dynamics : an official publication of the American Association of Anatomists.

[130]  C. Extavour,et al.  Patterns of cell lineage, movement, and migration from germ layer specification to gastrulation in the amphipod crustacean Parhyale hawaiensis. , 2011, Developmental biology.

[131]  H. Oda,et al.  Travelling and splitting of a wave of hedgehog expression involved in spider-head segmentation , 2011, Nature communications.

[132]  P. Martinez,et al.  Homeobox gene expression in Brachiopoda: the role of Not and Cdx in bodyplan patterning, neurogenesis, and germ layer specification. , 2011, Gene expression patterns : GEP.

[133]  S. Santagata Evaluating neurophylogenetic patterns in the larval nervous systems of brachiopods and their evolutionary significance to other bilaterian phyla , 2011, Journal of morphology.

[134]  S. Kempf,et al.  Characterization of the central nervous system and various peripheral innervations during larval development of the oyster Crassostrea virginica , 2011 .

[135]  R. Loesel,et al.  Lophotrochozoan neuroanatomy: An analysis of the brain and nervous system of Lineus viridis(Nemertea) using different staining techniques , 2011, Frontiers in Zoology.

[136]  T. Lacalli,et al.  Development of the nervous system in hatchlings of Spadella cephaloptera (Chaetognatha), and implications for nervous system evolution in Bilateria , 2011, Development, growth & differentiation.

[137]  M. Martindale,et al.  Ventralization of an indirect developing hemichordate by NiCl₂ suggests a conserved mechanism of dorso-ventral (D/V) patterning in Ambulacraria (hemichordates and echinoderms). , 2011, Developmental biology.

[138]  A. Stretton,et al.  A specific antibody to neuropeptide AF1 (KNEFIRFamide) recognizes a small subset of neurons in Ascaris suum: differences from Caenorhabditis elegans , 2011, The Journal of comparative neurology.

[139]  K. Peterson,et al.  Molecular paleobiological insights into the origin of the Brachiopoda , 2011, Evolution & development.

[140]  D. Weisblat,et al.  Lineage analysis of micromere 4d, a super-phylotypic cell for Lophotrochozoa, in the leech Helobdella and the sludgeworm Tubifex. , 2011, Developmental biology.

[141]  J. Martín-Durán,et al.  Evolutionary implications of morphogenesis and molecular patterning of the blind gut in the planarian Schmidtea polychroa. , 2011, Developmental biology.

[142]  Gonzalo Giribet,et al.  Higher-level metazoan relationships: recent progress and remaining questions , 2011, Organisms Diversity & Evolution.

[143]  B. H. Rothe,et al.  The nervous system of Neodasys chaetonotoideus (Gastrotricha: Neodasys) revealed by combining confocal laserscanning and transmission electron microscopy: evolutionary comparison of neuroanatomy within the Gastrotricha and basal Protostomia , 2011, Zoomorphology.

[144]  R. Copley,et al.  Acoelomorph flatworms are deuterostomes related to Xenoturbella , 2011, Nature.

[145]  M. Martindale,et al.  Ciliary photoreceptors in the cerebral eyes of a protostome larva , 2011, EvoDevo.

[146]  Thorsten Henrich,et al.  The normal development of Platynereis dumerilii (Nereididae, Annelida) , 2010, Frontiers in Zoology.

[147]  R. P. Kostyuchenko,et al.  Six3 demarcates the anterior-most developing brain region in bilaterian animals , 2010, EvoDevo.

[148]  S. Maslakova Development to metamorphosis of the nemertean pilidium larva , 2010, Frontiers in Zoology.

[149]  E. Temereva The digestive tract of actinotroch larvae (Lophotrochozoa, Phoronida): anatomy, ultrastructure, innervations, and some observations of metamorphosis , 2010 .

[150]  S. Harzsch,et al.  Invertebrate neurophylogeny: suggested terms and definitions for a neuroanatomical glossary , 2010, Frontiers in Zoology.

[151]  T. Stach,et al.  Ontogeny of the collar cord: Neurulation in the hemichordate Saccoglossus kowalevskii , 2010, Journal of morphology.

[152]  Delphine Dauga,et al.  The ANISEED database: digital representation, formalization, and elucidation of a chordate developmental program. , 2010, Genome research.

[153]  P. Martinez,et al.  Steps towards a centralized nervous system in basal bilaterians: Insights from neurogenesis of the acoel Symsagittifera roscoffensis , 2010, Development, growth & differentiation.

[154]  G. von Dassow,et al.  Five invaginations and shedding of the larval epidermis during development of the hoplonemertean Pantinonemertes californiensis (Nemertea: Hoplonemertea) , 2010 .

[155]  M. Martindale,et al.  A comprehensive fate map by intracellular injection of identified blastomeres in the marine polychaete Capitella teleta , 2010, EvoDevo.

[156]  C. Nielsen,et al.  Structure and occurrence of cyphonautes larvae (bryozoa, ectoprocta) , 2010, Journal of morphology.

[157]  Takashi Shimizu,et al.  An oligochaete homologue of the Brachyury gene is expressed transiently in the third quartette of micromeres. , 2010, Gene expression patterns : GEP.

[158]  William C. Smith,et al.  The ascidian mouth opening is derived from the anterior neuropore: reassessing the mouth/neural tube relationship in chordate evolution. , 2010, Developmental biology.

[159]  A. Cardona,et al.  Structure of the central nervous system of a juvenile acoel, Symsagittifera roscoffensis , 2010, Development Genes and Evolution.

[160]  B. Hausdorf,et al.  Phylogenetic relationships within the lophophorate lineages (Ectoprocta, Brachiopoda and Phoronida). , 2010, Molecular phylogenetics and evolution.

[161]  R. Loesel,et al.  Comparative neuroanatomy suggests repeated reduction of neuroarchitectural complexity in Annelida , 2010, Frontiers in Zoology.

[162]  M. Boyle,et al.  Clustered Fox genes in lophotrochozoans and the evolution of the bilaterian Fox gene cluster. , 2010, Developmental biology.

[163]  B. Morgenstern,et al.  Improved Phylogenomic Taxon Sampling Noticeably Affects Nonbilaterian Relationships , 2010, Molecular biology and evolution.

[164]  Christof Niehrs,et al.  On growth and form: a Cartesian coordinate system of Wnt and BMP signaling specifies bilaterian body axes , 2010, Development.

[165]  J. Shultz,et al.  Arthropod relationships revealed by phylogenomic analysis of nuclear protein-coding sequences , 2010, Nature.

[166]  S. Harzsch,et al.  Immunohistochemical analysis and 3D-reconstruction of the cephalic nervous system of Chaetognatha: insights into the evolution of an early bilaterian brain? , 2010 .

[167]  B. H. Rothe,et al.  Structure of the nervous system in Tubiluchus troglodytes (Priapulida) , 2010 .

[168]  A. Wanninger,et al.  Neuromuscular development in Novocrania anomala: evidence for the presence of serotonin and a spiralian‐like apical organ in lecithotrophic brachiopod larvae , 2010, Evolution & development.

[169]  M. Boyle,et al.  Expression of FoxA and GATA transcription factors correlates with regionalized gut development in two lophotrochozoan marine worms: Chaetopterus (Annelida) and Themiste lageniformis (Sipuncula) , 2010, EvoDevo.

[170]  K. Rawlinson Embryonic and post-embryonic development of the polyclad flatworm Maritigrella crozieri; implications for the evolution of spiralian life history traits , 2010, Frontiers in Zoology.

[171]  A. Wanninger,et al.  Trapped in freshwater: the internal anatomy of the entoproct Loxosomatoides sirindhornae , 2010, Frontiers in Zoology.

[172]  Alexander Gruhl Ultrastructure of mesoderm formation and development in Membranipora membranacea (Bryozoa: Gymnolaemata) , 2010, Zoomorphology.

[173]  A. Wanninger,et al.  Of tests, trochs, shells, and spicules: Development of the basal mollusk Wirenia argentea (Solenogastres) and its bearing on the evolution of trochozoan larval key features , 2010, Frontiers in Zoology.

[174]  G. von Dassow,et al.  Unusual Development of the Mitraria Larva in the Polychaete Owenia collaris , 2009, The Biological Bulletin.

[175]  T. Mortensen Studies in the Development of Crinoids , 2009 .

[176]  P. Whitington,et al.  Neural development in Onychophora (velvet worms) suggests a step-wise evolution of segmentation in the nervous system of Panarthropoda. , 2009, Developmental biology.

[177]  Y. Passamaneck,et al.  Direct activation of a notochord cis-regulatory module by Brachyury and FoxA in the ascidian Ciona intestinalis , 2009, Development.

[178]  L. Holland Chordate roots of the vertebrate nervous system: expanding the molecular toolkit , 2009, Nature Reviews Neuroscience.

[179]  R. Beutel,et al.  Probing the Drosophila retinal determination gene network in Tribolium (II): The Pax6 genes eyeless and twin of eyeless. , 2009, Developmental biology.

[180]  M. Martindale,et al.  A developmental perspective: changes in the position of the blastopore during bilaterian evolution. , 2009, Developmental cell.

[181]  Hsiu-Chin Lin,et al.  Retinoic acid and Wnt/beta-catenin have complementary roles in anterior/posterior patterning embryos of the basal chordate amphioxus. , 2009, Developmental biology.

[182]  M. Martindale,et al.  Centralization of the Deuterostome Nervous System Predates Chordates , 2009, Current Biology.

[183]  Detlev Arendt,et al.  CNS Evolution: New Insight from the Mud , 2009, Current Biology.

[184]  A. Wanninger Shaping the Things to Come: Ontogeny of Lophotrochozoan Neuromuscular Systems and the Tetraneuralia Concept , 2009, The Biological Bulletin.

[185]  S. Maslakova,et al.  Larval Development With Transitory Epidermis in Paranemertes peregrina and Other Hoplonemerteans , 2009, The Biological Bulletin.

[186]  Koryu Kin,et al.  A novel role for dpp in the shaping of bivalve shells revealed in a conserved molluscan developmental program. , 2009, Developmental biology.

[187]  R. Janssen,et al.  Hatching and earliest larval stages of the priapulid worm Priapulus caudatus , 2009 .

[188]  R. Hochberg Three‐dimensional reconstruction and neural map of the serotonergic brain of Asplanchna brightwellii (Rotifera, Monogononta) , 2009, Journal of morphology.

[189]  T. Fujisawa,et al.  Cnidarians and the evolutionary origin of the nervous system , 2009, Development, growth & differentiation.

[190]  F. Leasi,et al.  First description of the serotonergic nervous system in a bdelloid rotifer: Macrotrachela quadricornifera Milne 1886 (Philodinidae) , 2009 .

[191]  David Q. Matus,et al.  Anatomy and development of the nervous system of Nematostella vectensis, an anthozoan cnidarian , 2009, Developmental neurobiology.

[192]  S. Dupont,et al.  Neural development of the brittlestar Amphiura filiformis , 2009, Development Genes and Evolution.

[193]  Alexander Gruhl Serotonergic and FMRFamidergic nervous systems in gymnolaemate bryozoan larvae , 2009, Zoomorphology.

[194]  Michael Levine,et al.  Gene regulatory networks underlying the compartmentalization of the Ciona central nervous system , 2009, Development.

[195]  M. Byrne,et al.  Development of nervous systems to metamorphosis in feeding and non-feeding echinoid larvae, the transition from bilateral to radial symmetry , 2009, Development Genes and Evolution.

[196]  M. Martindale,et al.  Acoel development indicates the independent evolution of the bilaterian mouth and anus , 2008, Nature.

[197]  P. Holland,et al.  Developmental biology of pterobranch hemichordates: History and perspectives , 2008, Genesis.

[198]  I. Drummond,et al.  odd skipped related1 reveals a novel role for endoderm in regulating kidney versus vascular cell fate , 2008, Development.

[199]  V. Hartenstein,et al.  Early development, pattern, and reorganization of the planula nervous system in Aurelia (Cnidaria, Scyphozoa) , 2008, Development Genes and Evolution.

[200]  K. Yasui,et al.  The Lancelet and Ammocoete Mouths , 2008, Zoological science.

[201]  C. David,et al.  Evolution of complex structures: minicollagens shape the cnidarian nematocyst. , 2008, Trends in genetics : TIG.

[202]  A. Wanninger,et al.  Larval neurogenesis in Sabellaria alveolata reveals plasticity in polychaete neural patterning , 2008, Evolution & development.

[203]  A. Wanninger,et al.  The nervous system of the basal mollusk Wirenia argentea (Solenogastres): a study employing immunocytochemical and 3D reconstruction techniques , 2008 .

[204]  William C. Smith,et al.  Ascidians and the Plasticity of the Chordate Developmental Program , 2008, Current Biology.

[205]  Romain Derelle,et al.  A maternally localised Wnt ligand required for axial patterning in the cnidarian Clytia hemisphaerica , 2008, Development.

[206]  M. Martindale,et al.  Acoel development supports a simple planula-like urbilaterian , 2008, Philosophical Transactions of the Royal Society B: Biological Sciences.

[207]  Paul Skoglund,et al.  The forces that shape embryos: physical aspects of convergent extension by cell intercalation , 2008, Physical biology.

[208]  A. Minelli,et al.  Evolving Pathways Key Themes in Evolutionary Developmental Biology: Contributors , 2008 .

[209]  M. Boyle,et al.  Developmental expression of foxA and gata genes during gut formation in the polychaete annelid, Capitella sp. I , 2008, Evolution & development.

[210]  Jane A. Langdale,et al.  Evolving Pathways: Key Themes in Evolutionary Developmental Biology , 2008 .

[211]  G. Scholtz,et al.  Three-dimensional reconstruction of the central nervous system of Macrobiotus hufelandi (Eutardigrada, Parachela): implications for the phylogenetic position of Tardigrada , 2008, Zoomorphology.

[212]  R. Croll,et al.  Neuronal development in larval mussel Mytilus trossulus (Mollusca: Bivalvia) , 2008, Zoomorphology.

[213]  H. Bode,et al.  Divergent functions of two ancient Hydra Brachyury paralogues suggest specific roles for their C-terminal domains in tissue fate induction , 2007, Development.

[214]  M. Martindale,et al.  Homology of ciliary bands in Spiralian Trochophores. , 2007, Integrative and comparative biology.

[215]  A. Wanninger,et al.  Anatomy of the serotonergic nervous system of an entoproct creeping-type larva and its phylogenetic implications , 2007 .

[216]  S. Shigeno,et al.  Central Nervous System of Chaetoderma japonicum (Caudofoveata, Aplacophora): Implications for Diversified Ganglionic Plans in Early Molluscan Evolution , 2007, The Biological Bulletin.

[217]  A. Minelli Animal Evolution: Interrelationships of the Living Phyla , 2007 .

[218]  M. Byrne,et al.  Apical organs in echinoderm larvae: insights into larval evolution in the Ambulacraria , 2007, Evolution & development.

[219]  J. Joly,et al.  Evolutionary modification of mouth position in deuterostomes. , 2007, Seminars in cell & developmental biology.

[220]  Claus Nielsen,et al.  Spezielle Zoologie. Teil 1: Einzeller und Wirbellose Tiere , 2007 .

[221]  T. Fujisawa,et al.  The aboral pore of hydra: evidence that the digestive tract of hydra is a tube not a sac , 2007, Development Genes and Evolution.

[222]  Nicholas H. Putnam,et al.  Sea Anemone Genome Reveals Ancestral Eumetazoan Gene Repertoire and Genomic Organization , 2007, Science.

[223]  A. Wanninger,et al.  Early development of the aplacophoran mollusc Chaetoderma , 2007 .

[224]  A. Hay-Schmidt,et al.  Development of the enteropneust Ptychodera flava: Ciliary bands and nervous system , 2007, Journal of morphology.

[225]  S. Harzsch,et al.  A new look at the ventral nerve centre of Sagitta: implications for the phylogenetic position of Chaetognatha (arrow worms) and the evolution of the bilaterian nervous system , 2007, Frontiers in Zoology.

[226]  M. Martindale,et al.  High-resolution fate map of the snail Crepidula fornicata: the origins of ciliary bands, nervous system, and muscular elements. , 2007, Developmental biology.

[227]  D. Arendt,et al.  Molecular Architecture of Annelid Nerve Cord Supports Common Origin of Nervous System Centralization in Bilateria , 2007, Cell.

[228]  D. Arendt,et al.  Polychaete trunk neuroectoderm converges and extends by mediolateral cell intercalation , 2007, Proceedings of the National Academy of Sciences.

[229]  David Q. Matus,et al.  Pre-Bilaterian Origins of the Hox Cluster and the Hox Code: Evidence from the Sea Anemone, Nematostella vectensis , 2007, PloS one.

[230]  E. Temereva,et al.  Embryogenesis and larval development of Phoronopsis harmeri Pixell, 1912 (Phoronida): dual origin of the coelomic mesoderm , 2007 .

[231]  E. Kozloff Stages of development, from first cleavage to hatching, of an Echinoderes (Phylum Kinorhyncha: Class Cyclorhagida) , 2007 .

[232]  Wouter Houthoofd,et al.  The embryonic cell lineage of the nematode Halicephalobus gingivalis (Nematoda: Cephalobina: Panagrolaimoidea) , 2007 .

[233]  H. Nishida,et al.  Overlapping expression of FoxA and Zic confers responsiveness to FGF signaling to specify notochord in ascidian embryos. , 2006, Developmental biology.

[234]  M. Arnone,et al.  Genetic organization and embryonic expression of the ParaHox genes in the sea urchin S. purpuratus: insights into the relationship between clustering and colinearity. , 2006, Developmental biology.

[235]  Eric H Davidson,et al.  Repression of mesodermal fate by foxa, a key endoderm regulator of the sea urchin embryo , 2006, Development.

[236]  C. Arenas-Mena Embryonic expression of HeFoxA1 and HeFoxA2 in an indirectly developing polychaete , 2006, Development Genes and Evolution.

[237]  E. Lander,et al.  Dorsoventral Patterning in Hemichordates: Insights into Early Chordate Evolution , 2006, PLoS biology.

[238]  T. Holstein,et al.  Asymmetric expression of the BMP antagonists chordin and gremlin in the sea anemone Nematostella vectensis: implications for the evolution of axial patterning. , 2006, Developmental biology.

[239]  N. Strausfeld,et al.  Arthropod phylogeny: onychophoran brain organization suggests an archaic relationship with a chelicerate stem lineage , 2006, Proceedings of the Royal Society B: Biological Sciences.

[240]  M. Martindale,et al.  Molecular evidence for deep evolutionary roots of bilaterality in animal development. , 2006, Proceedings of the National Academy of Sciences of the United States of America.

[241]  R. Hochberg On the serotonergic nervous system of two planktonic rotifers, Conochilus coenobasis and C. dossuarius (Monogononta, Flosculariacea, Conochilidae) , 2006 .

[242]  M. Martindale,et al.  Expression of otd orthologs in the amphipod crustacean, Parhyale hawaiensis , 2006, Development Genes and Evolution.

[243]  A. Wanninger,et al.  Immunocytochemistry of the neuromuscular systems of Loxosomella vivipara and L. parguerensis (Entoprocta: Loxosomatidae) , 2006, Journal of morphology.

[244]  H. Oda,et al.  Axis specification in the spider embryo: dpp is required for radial-to-axial symmetry transformation and sog for ventral patterning , 2006, Development.

[245]  E. Davidson The Regulatory Genome: Gene Regulatory Networks In Development And Evolution , 2006 .

[246]  Michael Levine,et al.  Regulatory Blueprint for a Chordate Embryo , 2006, Science.

[247]  L. Zon,et al.  The caudal-related homeobox genes cdx1a and cdx4 act redundantly to regulate hox gene expression and the formation of putative hematopoietic stem cells during zebrafish embryogenesis. , 2006, Developmental biology.

[248]  R. Schnabel,et al.  What a couple of dimensions can do for you: Comparative developmental studies using 4D microscopy--examples from tardigrade development. , 2006, Integrative and comparative biology.

[249]  B. Schierwater,et al.  Medusozoan phylogeny and character evolution clarified by new large and small subunit rDNA data and an assessment of the utility of phylogenetic mixture models. , 2006, Systematic biology.

[250]  The Development of Ophiothrix fragilis , 2006 .

[251]  R. Sandeman,et al.  Early embryonic development of the central nervous system in the Australian crayfish and the Marbled crayfish (Marmorkrebs) , 2006, Development Genes and Evolution.

[252]  E. Seaver,et al.  ParaHox gene expression in the polychaete annelid Capitella sp. I , 2006, Development Genes and Evolution.

[253]  C. Ackermann,et al.  Clonal domains in postlarval Platynereis dumerilii (Annelida: Polychaeta) , 2005, Journal of morphology.

[254]  B. Prud’homme,et al.  caudal and even‐skipped in the annelid Platynereis dumerilii and the ancestry of posterior growth , 2005, Evolution & development.

[255]  J. Finnerty Did internal transport, rather than directed locomotion, favor the evolution of bilateral symmetry in animals? , 2005, BioEssays : news and reviews in molecular, cellular and developmental biology.

[256]  P. L. Hertzler Cleavage and gastrulation in the shrimp Penaeus (Litopenaeus) vannamei (Malacostraca, Decapoda, Dendrobranchiata) , 2005 .

[257]  C. Nielsen Trochophora larvae: cell-lineages, ciliary bands and body regions. 2. Other groups and general discussion. , 2005, Journal of experimental zoology. Part B, Molecular and developmental evolution.

[258]  J. Skeath,et al.  The Tribolium columnar genes reveal conservation and plasticity in neural precursor patterning along the embryonic dorsal-ventral axis. , 2005, Developmental biology.

[259]  R. Schnabel,et al.  The eutardigrade Thulinia stephaniae has an indeterminate development and the potential to regulate early blastomere ablations , 2005, Development.

[260]  H. Oda,et al.  Expression Patterns of a twist-Related Gene in Embryos of the Spider Achaearanea tepidariorum Reveal Divergent Aspects of Mesoderm Development in the Fly and Spider , 2005, Zoological science.

[261]  Bruno Moulia,et al.  In vivo modulation of morphogenetic movements in Drosophila embryos with femtosecond laser pulses. , 2005, Proceedings of the National Academy of Sciences of the United States of America.

[262]  M. Martindale,et al.  Unexpected complexity of the Wnt gene family in a sea anemone , 2005, Nature.

[263]  A. Hay-Schmidt Ultrastructure and immunocytochemistry of the nervous system of the larvae ofLingula anatina andGlottidia sp. (Brachiopoda) , 1992, Zoomorphology.

[264]  A. Dorresteijn Quantitative analysis of cellular differentiation during early embryogenesis ofPlatynereis dumerilii , 1990, Roux's archives of developmental biology.

[265]  K. Herrmann Dokumentation des Metamorphoseablaufs beiActinotrocha branchiata (Phoronidea) , 1973, Helgoländer wissenschaftliche Meeresuntersuchungen.

[266]  W. Vogt Gestaltungsanalyse am Amphibienkeim mit Örtlicher Vitalfärbung , 1929, Wilhelm Roux' Archiv für Entwicklungsmechanik der Organismen.

[267]  R. Woltereck Beiträge zur praktischen Analyse der Polygordius-Entwicklung nach dem »Nordsee-« und dem »Mittelmeertypus« , 1904, Archiv für Entwicklungsmechanik der Organismen.

[268]  T. Lacalli,et al.  The nervous system of amphioxus : structure, development, and evolutionary significance , 2005 .

[269]  I. Meinertzhagen Eutely, cell lineage, and fate within the ascidian larval nervous system: determinacy or to be determined? , 2005 .

[270]  E. Schierenberg Unusual cleavage and gastrulation in a freshwater nematode: developmental and phylogenetic implications , 2005, Development Genes and Evolution.

[271]  M. Averof,et al.  Ancestral role of caudal genes in axis elongation and segmentation. , 2004, Proceedings of the National Academy of Sciences of the United States of America.

[272]  U. Technau,et al.  Analysis of forkhead and snail expression reveals epithelial-mesenchymal transitions during embryonic and larval development of Nematostella vectensis. , 2004, Developmental biology.

[273]  N. Satoh,et al.  Ciona intestinalis Hox gene cluster: Its dispersed structure and residual colinear expression in development. , 2004, Proceedings of the National Academy of Sciences of the United States of America.

[274]  S. Harzsch The tritocerebrum of Euarthropoda: a “non‐drosophilocentric” perspective , 2004, Evolution & Development.

[275]  Yutaka Satou,et al.  Gene expression profiles of transcription factors and signaling molecules in the ascidian embryo: towards a comprehensive understanding of gene networks , 2004, Development.

[276]  M. Martindale,et al.  The cell lineage of the polyplacophoran, Chaetopleura apiculata: variation in the spiralian program and implications for molluscan evolution. , 2004, Developmental biology.

[277]  M. Martindale,et al.  Vestigial prototroch in a basal nemertean, Carinoma tremaphoros (Nemertea; Palaeonemertea) , 2004, Evolution & development.

[278]  Hans Meinhardt,et al.  Different strategies for midline formation in bilaterians , 2004, Nature Reviews Neuroscience.

[279]  J. Finnerty,et al.  Origins of Bilateral Symmetry: Hox and Dpp Expression in a Sea Anemone , 2004, Science.

[280]  J. Finnerty,et al.  Investigating the origins of triploblasty: `mesodermal' gene expression in a diploblastic animal, the sea anemone Nematostella vectensis (phylum, Cnidaria; class, Anthozoa) , 2004, Development.

[281]  V. Hartenstein,et al.  The embryonic development of the flatworm Macrostomum sp. , 2004, Development Genes and Evolution.

[282]  H. Jansen,et al.  Timed interactions between the Hox expressing non-organiser mesoderm and the Spemann organiser generate positional information during vertebrate gastrulation. , 2004, Developmental biology.

[283]  U. Jondelius,et al.  Basiepidermal nervous system in Nemertoderma westbladi (Nemertodermatida): GYIRFamide immunoreactivity. , 2004, Zoology.

[284]  M. Martindale,et al.  Fundamental properties of the spiralian developmental program are displayed by the basal nemertean Carinoma tremaphoros (Palaeonemertea, Nemertea). , 2004, Developmental biology.

[285]  H. Kaneko,et al.  Divergent patterns of neural development in larval echinoids and asteroids , 2004, Evolution & development.

[286]  N. Satoh,et al.  Development of Ciona intestinalis Juveniles (Through 2nd Ascidian Stage) , 2004, Zoological science.

[287]  C. Nielsen Trochophora larvae: cell-lineages, ciliary bands, and body regions. 1. Annelida and Mollusca. , 2004, Journal of experimental zoology. Part B, Molecular and developmental evolution.

[288]  J. Coulon,et al.  Autoradiographic detection of indolamine and catecholamine neurons in the nervous system of Owenia fusiformis (Polychaeta, Annelida) , 1979, Cell and Tissue Research.

[289]  G. Teuchert The ultrastructure of the marine gastrotrichTurbanella cornuta Remane (Macrodasyoidea) and its functional and phylogenetical importance , 1977, Zoomorphologie.

[290]  P. Fioroni Die organogenetische und transitorische rolle der vitellophagen in der darmentwicklung von Galathea (Crustacea, Anomura) , 1970, Zeitschrift für Morphologie der Tiere.

[291]  G. Teuchert Zur fortpflanzung und entwicklung der macrodasyoidea (Gastrotricha) , 1968, Zeitschrift für Morphologie der Tiere.

[292]  M. Lechner Untersuchungen zur Embryonalentwicklung des RädertieresAsplanchna girodi De Guerne , 1966, Wilhelm Roux' Archiv für Entwicklungsmechanik der Organismen.

[293]  E. Reisinger Untersuchungen am nernvensystem der bothrioplana semperi braun. (Zugleich ein beitrag zur technik der vitalen nervenfärbung und zur vergleighenden anatomie des plathelminthennervensystems.) , 1925, Zeitschrift für Morphologie und Ökologie der Tiere.

[294]  V. Hartenstein,et al.  Fate-mapping in wild-typeDrosophila melanogaster , 2004, Wilhelm Roux's archives of developmental biology.

[295]  S. Celniker,et al.  Posterior patterning genes and the identification of a unique body region in the brine shrimp Artemia franciscana , 2003, Development.

[296]  L. Zon,et al.  cdx4 mutants fail to specify blood progenitors and can be rescued by multiple hox genes , 2003, Nature.

[297]  V. Hinman,et al.  Expression of anterior Hox genes during larval development of the gastropod Haliotis asinina , 2003, Evolution & development.

[298]  G. Freeman Regional specification during embryogenesis in Rhynchonelliform brachiopods. , 2003, Developmental biology.

[299]  Sarah J. Bourlat,et al.  Xenoturbella is a deuterostome that eats molluscs , 2003, Nature.

[300]  S. Harzsch Ontogeny of the ventral nerve cord in malacostracan crustaceans: a common plan for neuronal development in Crustacea, Hexapoda and other Arthropoda? , 2003, Arthropod structure & development.

[301]  E. Lander,et al.  Anteroposterior Patterning in Hemichordates and the Origins of the Chordate Nervous System , 2003, Cell.

[302]  H. Oda,et al.  Early patterning of the spider embryo: a cluster of mesenchymal cells at the cumulus produces Dpp signals received by germ disc epithelial cells , 2003, Development.

[303]  A. Wanninger,et al.  The development of the serotonergic and FMRF-amidergic nervous system in Antalis entalis (Mollusca, Scaphopoda) , 2003, Zoomorphology.

[304]  M. Obst,et al.  Dwarf male of symbion pandora (cycliophora) , 2003, Journal of morphology.

[305]  N. Lartillot,et al.  The expression of a caudal homologue in a mollusc, Patella vulgata. , 2003, Gene expression patterns : GEP.

[306]  M. Sørensen Further structures in the jaw apparatus of limnognathia maerski (micrognathozoa), with notes on the phylogeny of the gnathifera , 2003, Journal of morphology.

[307]  G. Budd,et al.  Head development in the onychophoran Euperipatoides kanangrensis with particular reference to the central nervous system , 2003, Journal of morphology.

[308]  M. Martindale,et al.  The origin of mesoderm in phoronids. , 2002, Developmental biology.

[309]  N. Patel,et al.  Cell lineage analysis of the amphipod crustacean Parhyale hawaiensis reveals an early restriction of cell fates , 2002, Development.

[310]  Marek Mlodzik,et al.  Planar cell polarization: do the same mechanisms regulate Drosophila tissue polarity and vertebrate gastrulation? , 2002, Trends in genetics : TIG.

[311]  N. Lartillot,et al.  Expression patterns of fork head and goosecoid homologues in the mollusc Patella vulgata supports the ancestry of the anterior mesendoderm across Bilateria , 2002, Development Genes and Evolution.

[312]  P. L. Hertzler Development of the mesendoderm in the dendrobranchiate shrimp Sicyonia ingentis. , 2002, Arthropod structure & development.

[313]  Akiko Okusu Embryogenesis and Development of Epimenia babai (Mollusca Neomeniomorpha) , 2002, The Biological Bulletin.

[314]  A. Wanninger,et al.  Neurogenesis in the mossy chiton, Mopalia muscosa (gould) (polyplacophora): Evidence against molluscan metamerism , 2002, Journal of morphology.

[315]  B. Neuhaus,et al.  Ultrastructure, Biology, and Phylogenetic Relationships of Kinorhyncha1 , 2002, Integrative and comparative biology.

[316]  Scott E Fraser,et al.  Convergent extension: the molecular control of polarized cell movement during embryonic development. , 2002, Developmental cell.

[317]  E. Davidson,et al.  New early zygotic regulators expressed in endomesoderm of sea urchin embryos discovered by differential array hybridization. , 2002, Developmental biology.

[318]  E. Davidson,et al.  brachyury Target genes in the early sea urchin embryo isolated by differential macroarray screening. , 2002, Developmental biology.

[319]  S. Chapman,et al.  Analysis of spatial and temporal gene expression patterns in blastula and gastrula stage chick embryos. , 2002, Developmental biology.

[320]  J. Spring,et al.  Conservation of Brachyury, Mef2, and Snail in the myogenic lineage of jellyfish: a connection to the mesoderm of bilateria. , 2002, Developmental biology.

[321]  N. Lartillot,et al.  Expression pattern of Brachyury in the mollusc Patella vulgata suggests a conserved role in the establishment of the AP axis in Bilateria. , 2002, Development.

[322]  N. Satoh,et al.  Expression pattern of the Brachyury gene in the arrow worm paraspadella gotoi (chaetognatha) , 2002, Genesis.

[323]  S. Mango,et al.  Regulation of Organogenesis by the Caenorhabditis elegans FoxA Protein PHA-4 , 2002, Science.

[324]  J. Reece-Hoyes,et al.  Cloning and expression of the Cdx family from the frog Xenopus tropicalis , 2002, Developmental dynamics : an official publication of the American Association of Anatomists.

[325]  U. Technau,et al.  The ancestral role of Brachyury: expression of NemBra1 in the basal cnidarian Nematostella vectensis (Anthozoa) , 2002, Development Genes and Evolution.

[326]  Jenifer C. Croce,et al.  Expression pattern of Brachyury in the embryo of the sea urchin Paracentrotus lividus , 2001, Development Genes and Evolution.

[327]  R. Angerer,et al.  Sea urchin goosecoid function links fate specification along the animal-vegetal and oral-aboral embryonic axes. , 2001, Development.

[328]  D. McClay,et al.  The role of Brachyury (T) during gastrulation movements in the sea urchin Lytechinus variegatus. , 2001, Developmental biology.

[329]  J. Garcia-Fernández,et al.  Amphioxus Evx genes: implications for the evolution of the Midbrain-Hindbrain Boundary and the chordate tailbud. , 2001, Developmental biology.

[330]  T. Yamaguchi,et al.  Heads or tails: Wnts and anterior–posterior patterning , 2001, Current Biology.

[331]  U. Technau Brachyury, the blastopore and the evolution of the mesoderm , 2001, BioEssays : news and reviews in molecular, cellular and developmental biology.

[332]  T. Goto,et al.  Developmental fates of the first four blastomeres of the chaetognath Paraspadella gotoi: Relationship to protostomes , 2001, Development, growth & differentiation.

[333]  I. Meinertzhagen,et al.  The larval ascidian nervous system: the chordate brain from its small beginnings , 2001, Trends in Neurosciences.

[334]  J. Gibert,et al.  The caudal gene of the barnacle Sacculina carcini is not expressed in its vestigial abdomen , 2001, Development Genes and Evolution.

[335]  D. Arendt,et al.  Evolution of the bilaterian larval foregut , 2001, Nature.

[336]  Matthew J. Hayden Embryology: Constructing the Organism , 2001, The Yale Journal of Biology and Medicine.

[337]  P. S. Larsen,et al.  Downstream collecting in ciliary suspension feeders: the catch-up principle , 2000 .

[338]  J. Langeland,et al.  Amphioxus goosecoid and the evolution of the head organizer and prechordal plate , 2000, Evolution & development.

[339]  G. Freeman Regional specification during embryogenesis in the craniiform brachiopod Crania anomala. , 2000, Developmental biology.

[340]  U. Jondelius,et al.  An immunocytochemical and ultrastructural study of the nervous and muscular systems of Xenoturbella westbladi (Bilateria inc. sed.) , 2000, Zoomorphology.

[341]  D. Tautz,et al.  Conserved and divergent aspects of terminal patterning in the beetle Tribolium castaneum. , 2000, Proceedings of the National Academy of Sciences of the United States of America.

[342]  M. Martindale,et al.  The unique developmental program of the acoel flatworm, Neochildia fusca. , 2000, Developmental biology.

[343]  V. Hinman,et al.  Neuroectodermal and endodermal expression of the ascidian Cdx gene is separated by metamorphosis , 2000, Development Genes and Evolution.

[344]  K. Tagawa,et al.  Characterization of a hemichordate fork head/HNF-3 gene expression , 2000, Development Genes and Evolution.

[345]  K. Hotta,et al.  Brachyury downstream notochord differentiation in the ascidian embryo. , 1999, Genes & development.

[346]  D. Arendt,et al.  Dorsoventral axis inversion: Enteropneust anatomy links invertebrates to chordates turned upside down , 1999 .

[347]  N. Satoh,et al.  Pattern of Brachyury gene expression in starfish embryos resembles that of hemichordate embryos but not of sea urchin embryos , 1999, Mechanisms of Development.

[348]  H. Bode,et al.  HyBra1, a Brachyury homologue, acts during head formation in Hydra. , 1999, Development.

[349]  D. Arendt,et al.  Rearranging gastrulation in the name of yolk: evolution of gastrulation in yolk-rich amniote eggs , 1999, Mechanisms of Development.

[350]  T. Gilmour,et al.  The oral nerve plexus in amphioxus larvae: function, cell types and phylogenetic significance , 1999, Proceedings of the Royal Society of London. Series B: Biological Sciences.

[351]  E. Davidson,et al.  A comparative molecular approach to mesodermal patterning in basal deuterostomes: the expression pattern of Brachyury in the enteropneust hemichordate Ptychodera flava. , 1999, Development.

[352]  M. Martindale,et al.  The cell lineage of a polyclad turbellarian embryo reveals close similarity to coelomate spiralians. , 1998, Developmental biology.

[353]  M. Martindale,et al.  Conservation of the spiralian developmental program: cell lineage of the nemertean, Cerebratulus lacteus. , 1998, Developmental biology.

[354]  E. Davidson,et al.  Specification of cell fate in the sea urchin embryo: summary and some proposed mechanisms. , 1998, Development.

[355]  C. Nüsslein-Volhard,et al.  fork head domain genes in zebrafish , 1998, Development Genes and Evolution.

[356]  K. Tagawa,et al.  Novel pattern of Brachyury gene expression in hemichordate embryos , 1998, Mechanisms of Development.

[357]  M. Labouesse,et al.  pha-4, an HNF-3 homolog, specifies pharyngeal organ identity in Caenorhabditis elegans. , 1998, Genes & development.

[358]  J. McGhee,et al.  pha-4 is Ce-fkh-1, a fork head/HNF-3alpha,beta,gamma homolog that functions in organogenesis of the C. elegans pharynx. , 1998, Development.

[359]  R. Moon,et al.  BMP-2/-4 and Wnt-8 cooperatively pattern the Xenopus mesoderm , 1998, Mechanisms of Development.

[360]  J. McGhee,et al.  pha-4 is Ce-fkh-1, a fork head/HNF-3 a , b , g homolog that functions in organogenesis of the C. elegans pharynx , 1998 .

[361]  V. Malakhov Embryological and histological peculiarities of the order Enoplida, a primitive group of nematodes , 1998 .

[362]  H. Bode,et al.  Budhead, a fork head/HNF-3 homologue, is expressed during axis formation and head specification in hydra. , 1997, Developmental biology.

[363]  M. Koehl,et al.  Cellular mechanism underlying neural convergent extension in Xenopus laevis embryos. , 1997, Developmental biology.

[364]  Prof. Dr. José A. Campos-Ortega,et al.  The Embryonic Development of Drosophila melanogaster , 1997, Springer Berlin Heidelberg.

[365]  M. Levine,et al.  Dorsoventral patterning of the vertebrate neural tube is conserved in a protochordate. , 1997, Development.

[366]  A. Fainsod,et al.  The chicken caudal genes establish an anterior-posterior gradient by partially overlapping temporal and spatial patterns of expression , 1997, Mechanisms of Development.

[367]  N. Satoh,et al.  Formation of the chordamesoderm in the amphioxus embryo: Analysis with Brachyury and fork head/HNF-3 genes , 1997, Development Genes and Evolution.

[368]  L. Holland,et al.  Topographic changes in nascent and early mesoderm in amphioxus embryos studied by DiI labeling and by in situ hybridization for a Brachyury gene , 1997, Development, Genes and Evolution.

[369]  M. Kessel,et al.  Segregating expression domains of two goosecoid genes during the transition from gastrulation to neurulation in chick embryos. , 1997, Development.

[370]  W. Dictus,et al.  Cell-lineage and clonal-contribution map of the trochophore larva of Patella vulgata (Mollusca) 1 Both authors contributed equally to this work. 1 , 1997, Mechanisms of Development.

[371]  C. G. Satuito,et al.  Settlement and Metamorphosis of Marine Invertebrate Larvae 国際学会に参加して , 1997 .

[372]  D. Arendt,et al.  Dorsal or ventral: Similarities in fate maps and gastrulation patterns in annelids, arthropods and chrodates , 1997, Mechanisms of Development.

[373]  J. Singer,et al.  Drosophila brachyenteron regulates gene activity and morphogenesis in the gut. , 1996, Development.

[374]  H. Jäckle,et al.  Drosophila goosecoid participates in neural development but not in body axis formation. , 1996, The EMBO journal.

[375]  A. Goriely,et al.  A functional homologue of goosecoid in Drosophila. , 1996, Development.

[376]  J. Ahringer,et al.  Posterior patterning by the Caenorhabditis elegans even-skipped homolog vab-7. , 1996, Genes & development.

[377]  D. Arendt,et al.  Enteropneusts and chordate evolution , 1996, Current Biology.

[378]  Y. Sasai,et al.  A common plan for dorsoventral patterning in Bilateria , 1996, Nature.

[379]  D. Halton,et al.  Functional morphology of the platyhelminth nervous system , 1996, Parasitology.

[380]  Professor Dr. Peter Ax Multicellular Animals , 1996, Springer Berlin Heidelberg.

[381]  P. Holland,et al.  Conservation of Brachyury (T) genes in amphioxus and vertebrates: developmental and evolutionary implications. , 1995, Development.

[382]  J. Postlethwait,et al.  A homeobox gene essential for zebrafish notochord development , 1995, Nature.

[383]  G. Freeman Regional specification during embryogenesis in the inarticulate brachiopod Glottidia. , 1995, Developmental biology.

[384]  M. Raineri Is a mollusc an evolved bent metatrochophore? A histochemical investigation of neurogenesis in Mytilus (Mollusca: Bivalvia) , 1995, Journal of the Marine Biological Association of the United Kingdom.

[385]  N. Satoh,et al.  Spatial expression of the amphioxus homologue of Brachyury (T) gene during early embryogenesis of Branchiostoma belcheri , 1995, Development, growth & differentiation.

[386]  R. DeSalle,et al.  Class-level relationships in the phylum Cnidaria: molecular and morphological evidence. , 1995, Molecular biology and evolution.

[387]  C. Nielsen Animal Evolution: Interrelationships of the Living Phyla , 1995 .

[388]  N. Satoh,et al.  Developmental Biology of Ascidians , 1995 .

[389]  S. Mango,et al.  The pha-4 gene is required to generate the pharyngeal primordium of Caenorhabditis elegans. , 1994, Development.

[390]  D. Arendt,et al.  Inversion of dorsoventral axis? , 1994, Nature.

[391]  J. Rossant,et al.  HNF-3β is essential for node and notochord formation in mouse development , 1994, Cell.

[392]  J. Postlethwait,et al.  Goosecoid expression in neurectoderm and mesendoderm is disrupted in zebrafish cyclops gastrulas. , 1994, Developmental biology.

[393]  T. Lacalli,et al.  Landmarks in the Anterior Central Nervous System of Amphioxus Larvae , 1994 .

[394]  K D Irvine,et al.  Cell intercalation during Drosophila germband extension and its regulation by pair-rule segmentation genes. , 1994, Development.

[395]  E M De Robertis,et al.  Expression of zebrafish goosecoid and no tail gene products in wild-type and mutant no tail embryos. , 1994, Development.

[396]  N. Satoh,et al.  An Ascidian Homolog of the Mouse Brachyury (T) Gene is Expressed Exclusively in Notochord Cells at the Fate Restricted Stage , 1994, Development, growth & differentiation.

[397]  Michael E. Roberts,et al.  Ultrastructure of hatchling chaetognaths (Ferosagitta hispida): Epithelial arrangement of the mesoderm and its phylogenetic implications , 1994, Journal of morphology.

[398]  B. Blumberg,et al.  Tail formation as a continuation of gastrulation: the multiple cell populations of the Xenopus tailbud derive from the late blastopore lip. , 1993, Development.

[399]  J. Joly,et al.  The ventral and posterior expression of the zebrafish homeobox gene eve1 is perturbed in dorsalized and mutant embryos. , 1993, Development.

[400]  M. Shankland,et al.  Lox10, a member of the NK-2 homeobox gene class, is expressed in a segmental pattern in the endoderm and in the cephalic nervous system of the leech Helobdella. , 1993, Development.

[401]  J. M. W. Slack,et al.  The zootype and the phylotypic stage , 1993, Nature.

[402]  B I Meyer,et al.  Mouse Cdx-1 expression during gastrulation. , 1993, Development.

[403]  R. Ho,et al.  The protein product of the zebrafish homologue of the mouse T gene is expressed in nuclei of the germ ring and the notochord of the early embryo. , 1992, Development.

[404]  P. L. Hertzler,et al.  Cleavage and gastrulation in the shrimp Sicyonia ingentis: invagination is accompanied by oriented cell division. , 1992, Development.

[405]  M. Jamrich,et al.  A novel, activin-inducible, blastopore lip-specific gene of Xenopus laevis contains a fork head DNA-binding domain. , 1992, Genes & development.

[406]  J. Smith,et al.  Expression of a xenopus homolog of Brachyury (T) is an immediate-early response to mesoderm induction , 1991, Cell.

[407]  O. Koizumi,et al.  Plasticity in the nervous system of adult hydra. III. Conversion of neurons to expression of a vasopressin-like immunoreactivity depends on axial location , 1991, The Journal of neuroscience : the official journal of the Society for Neuroscience.

[408]  T. Drysdale,et al.  Development of the Xenopus laevis hatching gland and its relationship to surface ectoderm patterning. , 1991, Development.

[409]  R. Hirakow,et al.  Electron microscopic study of the development of amphioxus, Branchiostoma belcheri tsingtauense: The gastrula , 1991, Journal of morphology.

[410]  F. Harrison Microscopic anatomy of invertebrates , 1991 .

[411]  R. Raff,et al.  Novel origins of lineage founder cells in the direct-developing sea urchin Heliocidaris erythrogramma. , 1990, Developmental biology.

[412]  W. Harris,et al.  Mapping of the presumptive brain regions in the neural plate of Xenopus laevis. , 1990, Journal of neurobiology.

[413]  V. Malakhov Description of the development of Ascopodaria discreta (Coloniales, Barentsiidae) and discussion of the Kamptozoa statusin the animal kingdom , 1990 .

[414]  H. Jäckle,et al.  The homeotic gene fork head encodes a nuclear protein and is expressed in the terminal regions of the Drosophila embryo , 1989, Cell.

[415]  R. Raff,et al.  Evolutionary modification of cell lineage in the direct-developing sea urchin Heliocidaris erythrogramma. , 1989, Developmental biology.

[416]  I. Meinertzhagen,et al.  Development of the central nervous system of the larva of the ascidian, Ciona intestinalis L. I. The early lineages of the neural plate. , 1988, Developmental biology.

[417]  I. Meinertzhagen,et al.  Development of the central nervous system of the larva of the ascidian, Ciona intestinalis L. II. Neural plate morphogenesis and cell lineages during neurulation. , 1988, Developmental biology.

[418]  S. M. Lester Ultrastructure of Adult Gonads and Development and Structure of the Larva of Rhabdopleura normani (Hemichordata: Pterobranchia) , 1988 .

[419]  R. Britten,et al.  Lineage and fate of each blastomere of the eight-cell sea urchin embryo. , 1987, Genes & development.

[420]  S. Brenner,et al.  The structure of the nervous system of the nematode Caenorhabditis elegans. , 1986, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[421]  E. Ruppert,et al.  NEPHRIDIA IN THE LARVAE OF HEMICHORDATES AND ECHINODERMS , 1986 .

[422]  W. Gehring,et al.  Isolation of caudal, a Drosophila homeo box‐containing gene with maternal expression, whose transcripts form a concentration gradient at the pre‐blastoderm stage , 1985, The EMBO journal.

[423]  J. Shih,et al.  The function and mechanism of convergent extension during gastrulation of Xenopus laevis. , 1985, Journal of embryology and experimental morphology.

[424]  H. Huggel,et al.  Etude ultrastructurale du Neuropore d'Amphioxus adulte (Branchiostoma lanceolatum Pallas) , 1985 .

[425]  V. Hartenstein,et al.  A Fate Map of the Blastoderm , 1985 .

[426]  G. Stent,et al.  Embryonic origins of cells in the leech Helobdella triserialis. , 1984, Developmental biology.

[427]  J. Sulston,et al.  The embryonic cell lineage of the nematode Caenorhabditis elegans. , 1983, Developmental biology.

[428]  S. Morris The origins and relationships of lower invertebrates , 1983 .

[429]  T. Lacalli The brain and central nervous system of Mller's larva , 1983 .

[430]  T. Lacalli The nervous system and ciliary band of Müller’s larva , 1982, Proceedings of the Royal Society of London. Series B. Biological Sciences.

[431]  C. Nielsen Larval ciliary bands and metazoan phylogeny , 1979 .

[432]  W. D. Russell-Hunter A life of invertebrates , 1979 .

[433]  N. Satoh Cellular morphology and architecture during early morphogenesis of the ascidian egg: an SEM study. , 1978, The Biological bulletin.

[434]  M. Pilgrim The anatomy and histology of the nervous system and excretory system of the maldanid polychaetes Clymenella torquata and Euclymene oestedi , 1978 .

[435]  M. E. Rice,et al.  Settlement and metamorphosis of marine invertebrate larvae , 1978 .

[436]  J. Hedgpeth EVOLUTION OF THE METAZOAN LIFE CYCLE , 1974 .

[437]  Edward E. Ruppert,et al.  Invertebrate Zoology: A Functional Evolutionary Approach , 1974 .

[438]  D. Anderson INTRODUCTION—EMBRYOLOGY AND PHYLOGENY , 1973 .

[439]  P. Dilly The larva of Rhabdopleura compacta (Hemichordata) , 1973 .

[440]  E. Reisinger Die Evolution des Orthogons der Spiralier und das Archicölomatenproblem , 1972 .

[441]  S. Manton,et al.  Studies on the Onychophora VIII. The relationship between the embryos and the oviduct in the viviparous placental onychophorans Epiperipatus trinidadensis Bouvier and Macroperipatus torquatus (Kennel) from Trinidad , 1972 .

[442]  C. Nielsen Entoproct life-cycles and the entoproct/ectoproct relationship , 1971 .

[443]  K. Diebel Hartmann, Gerd: Ostracoda. In: Dr. H. G. BRONNS Klassen und Ordnungen des Tierreichs. 5. Band: Arthropoda, I. Abteilung: Crustacea, 2. Buch, IV. Teil. — Leipzig (Akademische Verlagsgesellschaft Geest & Portig K.‐G.) , 1970 .

[444]  R. Riedl Gnathostomulida from America. , 1969, Science.

[445]  D. Anderson On the embryology of the cirripede crustaceans Tetraclita rosea (Krauss), Tetraclita purpurascens (Wood), Chthamalus antennatus (Darwin) and Chamaesipho columna (Spengler) and some considerations of crustacean phylogenetic relationships , 1969 .

[446]  B. Åkesson The Embryology of the Polychaete Eunice kobiensis , 1967 .

[447]  Wilfried WestheideII Monographic der Gattungen Hesionides Friedrich und Microphthalmus Mecznikow (Polychaeta, Hesionidae) , 1967 .

[448]  C. Nielsen On the life-cycle of some loxosomatidae (Entoprocta) , 1966 .

[449]  D. Anderson The comparative early embryology of the Oligochaeta, Hirudinea and Onychophora , 1966 .

[450]  F. Iwata Studies on the Comparative Embryology of Nemerteans with Special Reference to Their Interrelationships , 1960 .

[451]  T. E. Thompson The development of Neomenia carinata Tullberg (Mollusca Aplacophora) , 1960, Proceedings of the Royal Society of London. Series B. Biological Sciences.

[452]  M. Sacks Observations on the embryology of an aquatic gastrotrich, lepidodermella squammata (dujardin, 1841) , 1955 .

[453]  Lars Silén DEVELOPMENTAL BIOLOGY OF PHORONIDEA OF THE GULLMAR FIORD AREA (WEST COAST OF SWEDEN) , 1954 .

[454]  O. Yadoff SECTION OF MATHEMATICS AND ENGINEERING: INFLUENCE OF AN ELECTRIC FIELD ON AN ELECTRIC CURRENT IN METALLIC OR CARBON CONDUCTORS* , 1952 .

[455]  L. Hyman,et al.  The Invertebrates, Vol. II: Platyhelminthes and Rhynchocoela , 1951 .

[456]  S. Manton Studies on the Onychophora VII. The early embryonic stages of Peripatopsis, and some general considerations concerning the morphology and phylogeny of the arthropoda , 1949, Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences.

[457]  H. Henson THE THEORETICAL ASPECT OF INSECT METAMORPHOSIS , 1946, Biological reviews of the Cambridge Philosophical Society.

[458]  L. Hyman The Invertebrates: Protozoa Through Ctenophora , 1940 .

[459]  L. Hyman The invertebrates: Protozoa through Ctenophora vol.1 , 1940 .

[460]  E. Lewis,et al.  The embryonic development of Drosophila melanogaster , 1938, Protoplasma.

[461]  C. C. John Memoirs: Habits, Structure, and Development of Spadella cephaloptera , 1933 .

[462]  Bertil Hanström Vergleichende Anatomie des Nervensystems der wirbellosen Tiere: unter Berücksichtigung seiner Funktion , 1929, Nature.

[463]  E. Reisinger Untersuchungen am Nervensystem von Bothrioplana semperi Braun , 1925 .

[464]  J. Gilchrist Memoirs: On the Development of the Cape Cephalodiscus (C. gilchristi, Ridewood) , 1917 .

[465]  F. M. Surface The early development of a polyclad, Planocera inquilina Wh. , 1908 .

[466]  E. Macbride Memoirs: The Development of Ophiothrix fragilis , 1907 .

[467]  E. Conklin Scientific Books: The Organization and Cell-Lineage of the Ascidian Egg , 1905 .

[468]  L. Doncaster Memoirs: On the Development of Sagitta; with Notes on the Anatomy of the Adult , 1902 .

[469]  N. Yatsu On the Development of Lingula anatina , 1902 .

[470]  J. Torrey THE EARLY EMBRYOLOGY OF THALASSEMA MELLITA (CONN) , 1901 .

[471]  A. L. Treadwell The cytogeny of Podarke obscura Verrill , 1901 .

[472]  C. M. Child The early development of Arenicola and Sternaspis , 1900 .

[473]  H. Heath The development of ischnochiton , 1899 .

[474]  E. Conklin The embryology of crepidula, A contribution to the cell lineage and early development of some marine gasteropods , 1897 .

[475]  J. Lebedinsky Beobachtungen über die Entwicklungsgeschichte der Nemertinen , 1897 .

[476]  J. Lebedinsky Beobachtungen über die Entwicklungsgeschichte der Nemertinen , 1897 .

[477]  E. Wilson The cell‐lineage of Nereis. A contribution to the cytogeny of the annelid body , 1892 .

[478]  É. V. Beneden,et al.  Recherches sur la morphologie des Tuniciers , 1887 .

[479]  H. Bury The Early Stages in the Development of Antedon rosacea. [Abstract] , 1887 .

[480]  A. Sedgwick Memoirs: On the Origin Metameric Segmentation and Some Other Morphological Question , 1884 .

[481]  F. M. Balfour Memoirs: The Anatomy and Development of Peripatus capensis , 1883 .

[482]  A. O. Kovalevskiĭ Étude sur l'embryogénie du dentale , 1883 .

[483]  J. F. V. Bemmelen Untersuchungen über den anatomischen und histologischen Bau der Brachiopoda Testicardinia , 1883 .

[484]  B. Hatschek Studien über Entwicklung des Amphioxus , 1881 .

[485]  E. Lankester A Treatise on Comparative Embryology , 1880, Nature.

[486]  C. Chun Die Ctenophoren des Golfes von Neapel und der angrenzenden Meeres-Abschnitte , 1880 .

[487]  J. Young Brachiopoda , 1871, Transactions of the Glasgow Geological Society.

[488]  Ernst Haeckel,et al.  Generelle Morphologie der Organismen: Allgemeine Grundzüge der organischen Formen-Wissenschaft, mechanisch begründet durch die von Charles Darwin reformierte Descendenz-Theorie. Band 1: Allgemeine Anatomie. Band 2: Allgemeine Entwicklungsgeschichte , 1866 .

[489]  C. Gegenbaur On the Development of Sagitta , 1859 .