Whole-brain serial-section electron microscopy in larval zebrafish
暂无分享,去创建一个
Brett J. Graham | Tran Minh Quan | David Grant Colburn Hildebrand | George S. Plummer | R. Portugues | F. Engert | S. Saalfeld | W. Lee | A. Wetzel | J. Lichtman | J. Vogelstein | A. Schier | R. Burns | Russel Torres | Andrew Champion | I. H. Bianco | Owen Randlett | Marcelo Cicconet | D. G. Hildebrand | W. Jeong | Alex Baden | Woohyuk Choi | Jungmin Moon | Kunal Lillaney | R. Torres
[1] Nicholas F. Polys,et al. High-precision registration between zebrafish brain atlases using symmetric diffeomorphic normalization , 2016, bioRxiv.
[2] Florian Engert,et al. A novel mechanism for mechanosensory-based rheotaxis in larval zebrafish , 2017, Nature.
[3] David Grant Colburn Hildebrand,et al. To Find the Symmetry Plane in Any Dimension, Reflect, Register, and Compute a -1 Eigenvector , 2016, ArXiv.
[4] Jeff Lichtman,et al. Registering large volume serial-section electron microscopy image sets for neural circuit reconstruction using FFT signal whitening , 2016, 2016 IEEE Applied Imagery Pattern Recognition Workshop (AIPR).
[5] A. Wanner,et al. Dense EM-based reconstruction of the interglomerular projectome in the zebrafish olfactory bulb , 2016, Nature Neuroscience.
[6] Daniel R. Berger,et al. The Fuzzy Logic of Network Connectivity in Mouse Visual Thalamus , 2016, Cell.
[7] Brett J. Graham,et al. Anatomy and function of an excitatory network in the visual cortex , 2016, Nature.
[8] Timothy W. Dunn,et al. Neural Circuits Underlying Visually Evoked Escapes in Larval Zebrafish , 2016, Neuron.
[9] Stephan Saalfeld,et al. Robust registration of calcium images by learned contrast synthesis , 2015, 2016 IEEE 13th International Symposium on Biomedical Imaging (ISBI).
[10] Casey M. Schneider-Mizell,et al. Quantitative neuroanatomy for connectomics in Drosophila , 2015, bioRxiv.
[11] Gregory D. Marquart,et al. A 3D Searchable Database of Transgenic Zebrafish Gal4 and Cre Lines for Functional Neuroanatomy Studies , 2015, Front. Neural Circuits.
[12] James E. Fitzgerald,et al. Whole-brain activity mapping onto a zebrafish brain atlas , 2015, Nature Methods.
[13] William R. Gray Roncal,et al. Saturated Reconstruction of a Volume of Neocortex , 2015, Cell.
[14] Florian Engert,et al. Large-scale imaging in small brains , 2015, Current Opinion in Neurobiology.
[15] Kristin Branson,et al. A multilevel multimodal circuit enhances action selection in Drosophila , 2015, Nature.
[16] David Grant Colburn Hildebrand,et al. Whole-brain functional and structural examination in larval zebrafish , 2015 .
[17] W. Denk,et al. High-resolution whole-brain staining for electron microscopic circuit reconstruction , 2015, Nature Methods.
[18] A. L. Eberle,et al. High-resolution, high-throughput imaging with a multibeam scanning electron microscope , 2015, Journal of microscopy.
[19] Hyungsuk Choi,et al. Vivaldi: A Domain-Specific Language for Volume Processing and Visualization on Distributed Heterogeneous Systems , 2014, IEEE Transactions on Visualization and Computer Graphics.
[20] David Grant Colburn Hildebrand,et al. Imaging ATUM ultrathin section libraries with WaferMapper: a multi-scale approach to EM reconstruction of neural circuits , 2014, Front. Neural Circuits.
[21] Gáspár Jékely,et al. Neuronal connectome of a sensory-motor circuit for visual navigation , 2014, eLife.
[22] M. Orger,et al. Whole-Brain Activity Maps Reveal Stereotyped, Distributed Networks for Visuomotor Behavior , 2014, Neuron.
[23] E. Boyden,et al. Simultaneous whole-animal 3D-imaging of neuronal activity using light-field microscopy , 2014, Nature Methods.
[24] Philipp J. Keller,et al. Whole-brain functional imaging at cellular resolution using light-sheet microscopy , 2013, Nature Methods.
[25] Christel Genoud,et al. Analyzing the structure and function of neuronal circuits in zebrafish , 2013, Front. Neural Circuits.
[26] Jasper Akerboom,et al. Optimization of a GCaMP Calcium Indicator for Neural Activity Imaging , 2012, The Journal of Neuroscience.
[27] Travis A. Jarrell,et al. The Connectome of a Decision-Making Neural Network , 2012, Science.
[28] Johannes E. Schindelin,et al. Fiji: an open-source platform for biological-image analysis , 2012, Nature Methods.
[29] A. Cardona,et al. Elastic volume reconstruction from series of ultra-thin microscopy sections , 2012, Nature Methods.
[30] Maxwell H. Turner,et al. A method for detecting molecular transport within the cerebral ventricles of live zebrafish (Danio rerio) larvae , 2012, The Journal of physiology.
[31] Davi D Bock,et al. Volume electron microscopy for neuronal circuit reconstruction , 2012, Current Opinion in Neurobiology.
[32] Florian Engert,et al. Prey Capture Behavior Evoked by Simple Visual Stimuli in Larval Zebrafish , 2011, Front. Syst. Neurosci..
[33] W. Denk,et al. The Big and the Small: Challenges of Imaging the Brain’s Circuits , 2011, Science.
[34] Kevin L. Briggman,et al. Wiring specificity in the direction-selectivity circuit of the retina , 2011, Nature.
[35] Arthur W. Wetzel,et al. Network anatomy and in vivo physiology of visual cortical neurons , 2011, Nature.
[36] Jianli Li,et al. In Vivo Time-Lapse Imaging and Serial Section Electron Microscopy Reveal Developmental Synaptic Rearrangements , 2011, Neuron.
[37] Kevan A. C. Martin,et al. The Synaptic Organization of the Claustral Projection to the Cat's Visual Cortex , 2010, The Journal of Neuroscience.
[38] K. Harris,et al. Ultrastructural Analysis of Hippocampal Neuropil from the Connectomics Perspective , 2010, Neuron.
[39] R. Baker,et al. Ancestry of motor innervation to pectoral fin and forelimb , 2010, Nature communications.
[40] Stephan Saalfeld,et al. As-rigid-as-possible mosaicking and serial section registration of large ssTEM datasets , 2010, Bioinform..
[41] Rainer W. Friedrich,et al. Circuit Neuroscience in Zebrafish , 2010, Current Biology.
[42] Robert Baker,et al. Mosaic hoxb4a Neuronal Pleiotropism in Zebrafish Caudal Hindbrain , 2009, PloS one.
[43] Stephan Saalfeld,et al. CATMAID: collaborative annotation toolkit for massive amounts of image data , 2009, Bioinform..
[44] Ju Lu,et al. Correction: The Interscutularis Muscle Connectome , 2009, PLoS Biology.
[45] Ju Lu,et al. The Interscutularis Muscle Connectome , 2009, PLoS biology.
[46] Evan Z. Macosko,et al. A huband-spoke circuit drives pheromone attraction and social behaviour in C . elegans , 2009 .
[47] S. Higashijima,et al. Zebrafish and motor control over the last decade , 2008, Brain Research Reviews.
[48] Herwig Baier,et al. Lamina-specific axonal projections in the zebrafish tectum require the type IV collagen Dragnet , 2007, Nature Neuroscience.
[49] Sreekanth H. Chalasani,et al. Dissecting a circuit for olfactory behaviour in Caenorhabditis elegans , 2007, Nature.
[50] M. Wullimann,et al. Atlas of Early Zebrafish Brain Development: A Tool for Molecular Neurogenetics , 2005 .
[51] Cori Bargmann,et al. A circuit for navigation in Caenorhabditis elegans , 2005 .
[52] Ralf Dahm,et al. Zebrafish: A Practical Approach. Edited by C. NÜSSLEIN-VOLHARD and R. DAHM. Oxford University Press. 2002. 322 pages. ISBN 0 19 963808 X. Price £40.00 (paperback). ISBN 0 19 963809 8. Price £80.00 (hardback). , 2003 .
[53] Stephen L. Johnson,et al. nacre encodes a zebrafish microphthalmia-related protein that regulates neural-crest-derived pigment cell fate. , 1999, Development.
[54] A. Ghysen,et al. Somatotopy of the lateral line projection in larval zebrafish. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[55] G. Shepherd,et al. Three-Dimensional Structure and Composition of CA3→CA1 Axons in Rat Hippocampal Slices: Implications for Presynaptic Connectivity and Compartmentalization , 1998, The Journal of Neuroscience.
[56] P. Somogyi,et al. Salient features of synaptic organisation in the cerebral cortex 1 Published on the World Wide Web on 3 March 1998. 1 , 1998, Brain Research Reviews.
[57] S. Palay,et al. The Fine Structure of the Nervous System: Neurons and Their Supporting Cells , 1991 .
[58] S. Sherman,et al. Synaptic circuits involving an individual retinogeniculate axon in the cat , 1987, The Journal of comparative neurology.
[59] 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.
[60] W. K. Metcalfe,et al. Segmental homologies among reticulospinal neurons in the hindbrain of the zebrafish larva , 1986, The Journal of comparative neurology.
[61] S. Brenner,et al. The neural circuit for touch sensitivity in Caenorhabditis elegans , 1985, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[62] P. Sterling. Microcircuitry of the cat retina. , 1983, Annual review of neuroscience.
[63] W. K. Metcalfe,et al. Brain neurons which project to the spinal cord in young larvae of the zebrafish , 1982, The Journal of comparative neurology.
[64] J. Scholes. Nerve fibre topography in the retinal projection to the tectum , 1979, Nature.
[65] J. Koehler,et al. Advanced Techniques in Biological Electron Microscopy , 1974 .
[66] J. Luft. Embedding Media — Old and New , 1973 .
[67] F. S. Sjostrand. Ultrastructure of retinal rod synapses of the guinea pig eye as revealed by three-dimensional reconstructions from serial sections. , 1958, Journal of ultrastructure research.
[68] J. Munkres. ALGORITHMS FOR THE ASSIGNMENT AND TRANSIORTATION tROBLEMS* , 1957 .