The Mayfly Newsletter
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[1] R. Godunko,et al. Fossil record of the mayfly family Ephemerellidae (Insecta: Ephemeroptera), with description of new species and first report of Ephemerellinae from Baltic amber , 2018 .
[2] A. Huryn,et al. Experimental Detritus Manipulations Unite Surface and Cave Stream Ecosystems Along a Common Energy Gradient , 2018, Ecosystems.
[3] B. Kondratieff. Larvae of the Southeastern USA Mayfly, Stonefly, and Caddisfly Species (Ephemeroptera, Plecoptera, and Trichoptera). , 2018, Proceedings of the Entomological Society of Washington.
[4] T. Kaltenbach,et al. New species of Indocloeon Müller-Liebenau from South-East Asia (Ephemeroptera, Baetidae) , 2017, ZooKeys.
[5] K. Dana,et al. Analysis of environmental flow requirements for macroinvertebrates in a creek affected by urban drainage (Prague metropolitan area, Czech Republic) , 2017, Urban Ecosystems.
[6] M. Sartori,et al. Electrogena brulini sp. nov. and E. vipavensis Zurwerra & Tomka, 1986 syn. nov. revealed by integrative taxonomy of E. gridellii (Grandi, 1953) (Ephemeroptera: Heptageniidae). , 2017, Zootaxa.
[7] G. Roldán. Contribución al conocimiento de las ninfas de los efemerópteros (clase; insecta, orden: Ephemeroptera) en el departamente de Antioquia, Colombiaq , 2017, Actualidades Biológicas.
[8] Changfa Zhou,et al. The Nymph and Key Imaginal Characters of Chinese Mayfly Chankagenesia yangi (Ephemeroptera: Palingeniidae) , 2017, Entomological news.
[9] Tomasz Suchan,et al. Elevation in tropical sky islands as the common driver in structuring genes and communities of freshwater organisms , 2017, Scientific Reports.
[10] J. Gattolliat,et al. Redescription of the Afrotropical genus Crassabwa Lugo-Ortiz & McCafferty 1996 (Ephemeroptera: Baetidae: Protopatellata). , 2017, Zootaxa.
[11] K. Chandra,et al. A new species of Thalerosphyrus Eaton 1881 (Ephemeroptera: Heptageniidae: Ecdyonurinae) from India. , 2017, Zootaxa.
[12] Alison Twycross,et al. What is a case study? , 2017, Evidence Based Journals.
[13] L. Juen,et al. Mayfly assemblage structure of the Pantanal Mortes–Araguaia flood plain , 2017 .
[14] Wei Zhang,et al. A new species of the genus Teloganopsis with setaceous mouthparts and forelegs from southern China (Ephemeroptera, Ephemerellidae) , 2017, ZooKeys.
[15] H. Griffis. Comparison of Macroinvertebrate Colonization of Different Substrates in Artificial Substrate Basket Samplers to Determine Stream Quality , 2017 .
[16] M. Žurovcová,et al. Mayflies of the genus Epeorus Eaton, 1881 s.l. (Ephemeroptera: Heptageniidae) from the Caucasus Mountains: a new species of Caucasiron Kluge, 1997 from Georgia and Turkey. , 2017, Zootaxa.
[17] F. Salles,et al. Tricorythodes tragoedia sp. nov. (Ephemeroptera: Leptohyphidae), a new species from Rio Doce and surrounding areas, southeastern Brazil. , 2017, Zootaxa.
[18] Adam C. Ryan,et al. Development of biotic ligand model–based freshwater aquatic life criteria for lead following US Environmental Protection Agency guidelines , 2017, Environmental toxicology and chemistry.
[19] D. Hesterberg,et al. Periphyton uptake and trophic transfer of coal fly‐ash–derived trace elements , 2017, Environmental toxicology and chemistry.
[20] F. Leese,et al. A DNA barcode library for Germany′s mayflies, stoneflies and caddisflies (Ephemeroptera, Plecoptera and Trichoptera) , 2017, Molecular ecology resources.
[21] Juan M. Guayasamin,et al. Climate variability predicts thermal limits of aquatic insects across elevation and latitude , 2017 .
[22] K. Chandra,et al. A new species of Choroterpes Eaton, 1881 (Ephemeroptera: Leptophlebiidae) from India. , 2017, Zootaxa.
[23] T. M. Tiunova. A new species of Paraleptophlebia Lestage, 1917 (Ephemeroptera: Leptophlebiidae) and a re-description of adults for Paraleptophlebia westoni Imanishi, 1937 with the first description of the larva, from the Russian Far East. , 2017, Zootaxa.
[24] A. Addo-Bediako,et al. Benthic Macroinvertebrate Assemblage Along a Pollution Gradient in the Steelpoort River, Olifants River System , 2017, African Entomology.
[25] F. Salles,et al. Corinnella lourii, a rare new species of Baetidae (Ephemeroptera) from central Brazil. , 2017, Zootaxa.
[26] Kristian Meissner,et al. Assessing strengths and weaknesses of DNA metabarcoding‐based macroinvertebrate identification for routine stream monitoring , 2017 .
[27] Louis Iyagbaye,et al. Mayflies (Order Ephemeroptera) Distribution as Indicators of the Water Quality Status of a Stretch of Ovia River (Iguoriakhi), Edo State, Southern Nigeria , 2017 .
[28] M. Kelly-Quinn,et al. The influence of aquatic buffer zone vegetation on river macroinvertebrate communities , 2017 .
[29] N. Kluge. Contribution to the knowledge of Cloeodes Traver 1938 (Ephemeroptera, Baetidae) , 2017 .
[30] A. Vogler,et al. Local environment rather than past climate determines community composition of mountain stream macroinvertebrates across Europe , 2017, Molecular ecology.
[31] N. Hamada,et al. Three new species of Miroculis from the Serra da Mocidade National Park, Roraima State, Brazil, with new records and checklist of the Leptophlebiidae (Ephemeroptera) , 2017 .
[32] H. Vatandoost,et al. Identification of common aquatic insects of Jajroud River , 2017 .
[33] J. Conley,et al. Sulfate transport kinetics and toxicity are modulated by sodium in aquatic insects. , 2017, Aquatic toxicology.
[34] J. Stockan,et al. The diversity of aquatic insects used as human food , 2017 .
[35] Sixin Li,et al. Temporal variations in macroinvertebrate communities from the tributaries in the Three Gorges Reservoir Catchment, China , 2017, Revista Chilena de Historia Natural.
[36] M. Vighi,et al. Natural variability of biochemical biomarkers in the macro‐zoobenthos: Dependence on life stage and environmental factors , 2017, Environmental toxicology and chemistry.
[37] C. Molineri,et al. Review of selected species of Campsurus Eaton 1868 (Ephemeroptera: Polymitarcyidae), with description of eleven new species and a key to male imagos of the genus , 2017 .
[38] M. Gardner,et al. Evolutionary divergence in freshwater insects with contrasting dispersal capacity across a sea of desert , 2017 .
[39] S. Sumner,et al. Metabolomics reveal physiological changes in mayfly larvae (Neocloeon triangulifer) at ecological upper thermal limits. , 2017, Journal of insect physiology.
[40] S. Jähnig,et al. Quantitative hydrological preferences of benthic stream invertebrates in Germany , 2017 .
[41] L. Brasil,et al. A new species of Miroculis Edmunds, 1963 (Ephemeroptera: Leptophlebiidae) from Cerrado-Amazonian forest transition zone, Brazil , 2017 .
[42] C. Leigh,et al. Vertical movements through subsurface stream sediments by benthic macroinvertebrates during experimental drying are influenced by sediment characteristics and species traits , 2017 .
[43] B. W. Sweeney,et al. Physiological responses to short-term thermal stress in mayfly (Neocloeon triangulifer) larvae in relation to upper thermal limits , 2017, Journal of Experimental Biology.
[44] R. Dudley,et al. Jumping and the aerial behavior of aquatic mayfly larvae (Myobaetis ellenae, Baetidae). , 2017, Arthropod structure & development.
[45] A. Gharaei,et al. Biological assessment of the Tang Sorkh River (Iran) using benthic macroinvertebrates , 2017 .
[46] Changfa Zhou,et al. Redescription and commentary on the Chinese mayfly Vietnamella sinensis (Ephemeroptera: Vietnamellidae) , 2017 .
[47] R. Mikuláš,et al. Mayfly Burrows in Firmground of Recent Rivers from the Czech Republic and Poland, with Some Comments on Ephemeropteran Burrows in General , 2017 .
[48] J. Harding,et al. Acute toxicity of arsenic to larvae of four New Zealand freshwater insect taxa , 2017 .
[49] M. Monaghan,et al. Comparative tests of the species‐genetic diversity correlation at neutral and nonneutral loci in four species of stream insect , 2017, Evolution; international journal of organic evolution.
[50] Che Salmah Md Rawi,et al. Ephemeroptera, Plecoptera and Trichoptera (Insecta) Abundance, Diversity and Role in Leaf Litter Breakdown in Tropical Headwater River , 2017, Tropical life sciences research.
[51] G. Horváth,et al. How can Asphalt Roads Extend the Range of In Situ Polarized Light Pollution? A Complex Ecological Trap of Ephemera danica and a Possible Remedy , 2017, Journal of Insect Behavior.
[52] Sahana Harun,et al. The use of aquatic insects as bio-indicator to monitor freshwater stream health of Liwagu River, Sabah, Malaysia , 2017 .
[53] C. Winkelmann,et al. Characterisation of natural streams using community indices and basal resources of macroinvertebrates in the upper Euphrates Basin , 2017 .
[54] K. Hartman,et al. The effects of riparian disturbance on the condition and summer diets of age-0 brook trout (Salvelinus fontinalis) in three central Appalachian streams , 2017 .
[55] E. Bernhardt,et al. Effects of mountaintop removal coal mining on the diversity and secondary productivity of Appalachian rivers , 2017 .
[56] Iain D. Phillips,et al. Evidence for Substrate Influence on Artificial Substrate Invertebrate Communities , 2017, Environmental Entomology.
[57] E. A. Novikova,et al. Occurrence of Anafroptilum Kluge 2012 (Ephemeroptera: Baetidae) in Oriental Region , 2017 .
[58] L. Lima,et al. New species and stages description of Ulmeritoides Traver, 1959 (Ephemeroptera: Leptophlebiidae) from Roraima State, Northern Brazil , 2017 .
[59] J. Lancaster,et al. Do pools impede drift dispersal by stream insects , 2017 .
[60] N. Sinitshenkova. New mayflies (Insecta: Ephemerida = Ephemeroptera) from the Upper Mesozoic locality of Khasurty, Western Transbaikalia , 2017, Paleontological Journal.
[61] Wei Zhang,et al. De novo transcriptome of the mayfly Cloeon viridulum and transcriptional signatures of Prometabola , 2017, PloS one.
[62] S. Dolédec,et al. Landscape variables influence taxonomic and trait composition of insect assemblages in Neotropical savanna streams , 2017 .
[63] F. Romero,et al. The role of macroinvertebrates for conservation of freshwater systems , 2017, Ecology and evolution.
[64] T. M. Tiunova,et al. New species of Ameletus Eaton, 1885 from the Russian Far East with notes on Ameletus camtschaticus Ulmer 1927 (Ephemeroptera: Ameletidae). , 2017, Zootaxa.
[65] Bin Chen,et al. Evaluation of river habitat integrity based on benthic macroinvertebrate-based multi-metric model , 2017 .
[66] Jing Xiong,et al. Longitudinal and seasonal patterns of macroinvertebrate communities in a large undammed river system in Southwest China , 2017 .
[67] F. Nakamura,et al. Response of aquatic insects along gradients of agricultural development and flood magnitude in northern Japanese streams , 2017, Aquatic Sciences.
[68] Maria João Feio,et al. Chironomidae traits and life history strategies as indicators of anthropogenic disturbance , 2017, Environmental Monitoring and Assessment.
[69] K. Shao,et al. Community responses to dam removal in a subtropical mountainous stream , 2017, Aquatic Sciences.
[70] J. Negishi,et al. Developing a food web-based transfer factor of radiocesium for fish, whitespotted char (Salvelinus leucomaenis) in headwater streams. , 2017, Journal of environmental radioactivity.
[71] M. Kim,et al. Analysis and prediction of the spatial distribution of EPT (Ephemeroptera, Plecoptera, and Trichoptera) assemblages in the Han River watershed in Korea , 2017 .
[72] Zuleyma Mosquera Murillo,et al. THE FIRST RECORD OF Tikuna SAVAGE, FLOWERS Y PORRAS (EPHEMEROPTERA: LEPTOPHLEBIIDAE) FOR CHOCÓ, COLOMBIA , 2017 .
[73] V. A. Teslenko,et al. Distribution of the macrobenthos fauna in the Ola River basin, northern coast of the Sea of Okhotsk , 2017, Entomological Review.
[74] J. M. Webb,et al. Range extensions for recently described North American species of Acentrella Bengtsson (Insecta: Ephemeroptera: Baetidae) , 2017 .
[75] F. Nikpour,et al. Faunistic Study of the Aquatic Arthropods in a Tourism Area in Northern Iran , 2017, Journal of arthropod-borne diseases.
[76] M. Callisto,et al. Response of aquatic insect assemblages to the activities of traditional populations in eastern Amazonia , 2017, Hydrobiologia.
[77] V. Simić,et al. Comparison of the effectiveness of kick and sweep hand net and surber net sampling techniques used for collecting aquatic macroinvertebrate samples , 2017 .
[78] A. Martynov,et al. Distribution extension of Oriental mayfly Clypeocaenis oligosetosa Soldán, 1983 (Ephemeroptera: Caenidae) , 2017 .
[79] K. Chandra,et al. A new species and a new record of the subgenus Dilatognathus Kluge 2012 (Ephemeroptera: Leptophlebiidae: genus Choroterpes Eaton, 1881) from India. , 2017, Zootaxa.
[80] M. Ivković,et al. Mayfly emergence along an oligotrophic Dinaric karst hydrosystem: spatial and temporal patterns, and species–environment relationship , 2017, Aquatic Ecology.
[81] T. Endreny,et al. Effects of extreme floods on macroinvertebrate assemblages in tributaries to the Mohawk River, New York, USA , 2017 .
[82] A. Flecker,et al. Genetic diversity and gene flow decline with elevation in montane mayflies , 2017, Heredity.
[83] P. V. Cruz,et al. Review of continental North and Central American Paracloeodes Day 1955 (Ephemeroptera: Baetidae), including description of a new species from Minnesota, U.S.A. , 2017, Zootaxa.
[84] Agustín Vanzetti,et al. Biometry of neotropical invertebrates inhabiting floodplain rivers: unraveling bionomy , 2017 .
[85] Fabio Laurindo da Silva,et al. Checklist de Ephemeroptera do Estado de Mato Grosso do Sul, Brasil , 2017 .
[86] S. Janarthanan,et al. Genetic diversity and conservation of South Indian Mayfly, Petersula courtallensis Sivaramakrishnan, 1984 (Ephemeroptera: Leptophlebiidae) , 2017 .
[87] P. Malzacher,et al. Revision of the tribe Caenoculini (Insecta: Ephemeroptera: Caenidae) and its position within the Brachycercinae , 2017, Stuttgarter Beiträge zur Naturkunde A.
[88] M. Bogan,et al. Aquatic invertebrate communities exhibit both resistance and resilience to seasonal drying in an intermittent coastal stream , 2017, Hydrobiologia.
[89] N. Hamada,et al. Four new species of Callibaetis Eaton (Ephemeroptera: Baetidae), nymphal description of Callibaetis (Abaetetuba) fasciatus (Pictet) and keys for South American species of Callibaetis. , 2017, Zootaxa.
[90] T. Lipinskaya,et al. Aquatic insects of the Neman River and its tributaries , 2017, Entomological Review.
[91] M. Bruford,et al. Enhancing capacity for freshwater conservation at the genetic level: a demonstration using three stream macroinvertebrates , 2017 .
[92] A. Melo,et al. How seasonality and anthropogenic impacts can modulate the structure of aquatic benthic invertebrate assemblages. , 2017 .
[93] L. Campbell,et al. Variations in anthropogenic silver in a large Patagonian lake correlate with global shifts in photographic processing technology. , 2017, Environmental pollution.
[94] J. Beringer,et al. Consequences of altered temperature regimes for emerging freshwater invertebrates , 2017, Aquatic Sciences.
[95] S. Baumgartner,et al. Changes in macroinvertebrate trophic structure along a land-use gradient within a lowland stream network , 2017, Aquatic Sciences.
[96] Marek Svitok,et al. Biological recovery of acidified alpine lakes may be delayed by the dispersal limitation of aquatic insect adults , 2017, Hydrobiologia.
[97] L. Demková,et al. Invertebrates in overlooked aquatic ecosystem in the middle of the town , 2017 .
[98] V. Resh,et al. Temporal patterns of genetic diversity in Baetis tricaudatus (Ephemeroptera:Baetidae) from the Russian River, northern California , 2017, Freshwater Science.
[99] Mahedy Araujo Bastos Passos,et al. A new species of Campylocia Needham & Murphy, 1924 (Ephemeroptera, Euthyplociidae) from Northern Brazil. , 2017, Zootaxa.
[100] W. Krzemiński,et al. A New Fossil Mayfly Species of the Genus Borinquena Traver, 1938 (Insecta: Ephemeroptera: Leptophlebiidae: Atalophlebiinae) from Miocene Dominican Amber , 2017, Annales Zoologici.
[101] T. K. Krolow,et al. New records of Ephemeroptera (Insecta) from Tocantins state, northern Brazil , 2017 .
[102] K. Sivaramakrishnan,et al. A new species of Prosopistoma Latreille, 1833 and redescription of P. indicum Peters, 1967 (Ephemeroptera: Prosopistomatidae) from the Western Ghats, India. , 2017, Zootaxa.
[103] K. Watanabe,et al. Hairworm Infection and Seasonal Changes in Paratenic Hosts in a Mountain Stream in Japan , 2017, Journal of Parasitology.
[104] M. Kučinić,et al. Mayfly ecological traits in tufa depositing habitats of the Dinaric Karst , 2017 .
[105] J. Sauterleute,et al. A Fuzzy Rule‐based Model for the Assessment of Macrobenthic Habitats under Hydropeaking Impact , 2017 .
[106] Susan B. Norton,et al. Conceptual model diagrams as evidence scaffolds for environmental assessment and management , 2017, Freshwater Science.
[107] N. Hamada,et al. Phylogeny of Callibaetis (Ephemeroptera: Baetidae) based on morphology of nymphs and adults , 2017 .
[108] P. Bispo,et al. Trophic guilds of EPT (Ephemeroptera, Plecoptera, and Trichoptera) in three basins of the Brazilian Savanna , 2017 .
[109] L. Balistrieri,et al. Larval aquatic insect responses to cadmium and zinc in experimental streams , 2017, Environmental toxicology and chemistry.
[110] A. Viñolas,et al. L'utilisation des Coleoptera, Ephemeroptera et Diptera comme bioindicateurs de la qualite des eaux de quelques Oueds en Algérie , 2017 .
[111] F. Muñoz,et al. CATÁLOGO ACTUALIZADO DE LOS BAETIDAE (EPHEMEROPTERA) PRESENTES EN CHILE Y SU DISTRIBUCIÓN GEOGRÁFICA , 2017 .
[112] P. Fink,et al. The best of both worlds: A combined approach for analyzing microalgal diversity via metabarcoding and morphology-based methods , 2017, PloS one.
[113] K. Elkin,et al. Biological and Water Quality Monitoring at Tallgrass Prairie Preserve in Oklahoma , 2017 .
[114] N. Hamada,et al. Additions and corrections to the systematics of mayfly species assigned to the genus Callibaetis Eaton 1881 (Ephemeroptera: Baetidae) from South America. , 2017, Zootaxa.
[115] S. Sánchez-Ramírez,et al. Erratum to: DNA barcoding of aquatic insects reveals unforeseen diversity and recurrent population divergence patterns through broad-scale sampling in northern Canada , 2017, Polar Biology.
[116] K. Reckhow,et al. A Bayesian network assessment of macroinvertebrate responses to nutrients and other factors in streams of the Eastern Corn Belt Plains, Ohio, USA , 2017 .
[117] Andrew S. Watson,et al. Diet composition and prey selection of Telmatobius macrostomus, the Junín giant frog , 2017 .
[118] A. S. Melo,et al. Effects of urbanization on stream benthic invertebrate communities in Central Amazon , 2017 .
[119] T. Angradi,et al. A depth-adjusted ambient distribution approach for setting numeric removal targets for a Great Lakes Area of Concern beneficial use impairment: degraded benthos. , 2017, Journal of Great Lakes research.
[120] R. DeSalle,et al. Colonization and diversification of aquatic insects on three Macaronesian archipelagos using 59 nuclear loci derived from a draft genome. , 2017, Molecular phylogenetics and evolution.
[121] J. Kaster,et al. Survival, growth, and production of Hexagenia bilineata mayflies in fluidized sediment from lower Green Bay, Lake Michigan , 2017 .
[122] F. Çeti̇nkaya,et al. Spatial and temporal distribution of aquatic insects in the Dicle (Tigris) River Basin, Turkey, with new records , 2017 .
[123] Jeff S. Wesner,et al. Metamorphosis Affects Metal Concentrations and Isotopic Signatures in a Mayfly (Baetis tricaudatus): Implications for the Aquatic-Terrestrial Transfer of Metals. , 2017, Environmental Science and Technology.
[124] L. Juen,et al. Effect of Environmental and Temporal Factors on Patterns of Rarity of Ephemeroptera in Stream of the Brazilian Cerrado , 2017, Neotropical Entomology.
[125] M. E. Galassi,et al. Leaf Litter and Invertebrate Colonization: the Role of Macroconsumers in a Subtropical Wetland (Corrientes, Argentina) , 2017, Wetlands.
[126] T. Derka,et al. Downstream effect of a pumped-storage hydropower plant on river habitat conditions and benthic life – a case study , 2017, Biologia.
[127] A. Savić,et al. Ephemeroptera, Plecoptera, and Trichoptera assemblages of karst springs in relationto some environmental factors: a case study in central Bosnia and Herzegovina , 2017 .
[128] S. Ouellette,et al. Incidence of Wolbachia in aquatic insects , 2017, Ecology and evolution.
[129] M. Engel,et al. Paleozoic Nymphal Wing Pads Support Dual Model of Insect Wing Origins , 2017, Current Biology.
[130] Brian J. Smith,et al. Dispersal distances of aquatic insects: upstream crawling by benthic EPT larvae and flight of adult Trichoptera along valley floors , 2017 .
[131] M. Sartori,et al. Molecular phylogeny and morphological analysis resolve a long‐standing controversy over generic concepts in Ecdyonurinae mayflies (Ephemeroptera: Heptageniidae) , 2017 .
[132] M. Leppänen,et al. Assessing ecotoxicity of biomining effluents in stream ecosystems by in situ invertebrate bioassays: A case study in Talvivaara, Finland , 2017, Environmental toxicology and chemistry.
[133] L. Dias,et al. Actual knowledge and expansion of the distribution of the Tricorythopsis rondoniensis (Ephemeroptera, Leptohyphidae) , 2016 .
[134] A. Martynov. The life cycles of mayflies (Insecta: Ephemeroptera) of the Eastern Ukraine. Second report , 2016 .
[135] F. Salles,et al. New species of Macunahyphes Dias, Salles & Molineri (Ephemeroptera: Leptohyphidae), with taxonomic notes , 2016 .
[136] A. Ramírez,et al. Occurrence of nematodes on Ephemeroptera nymphs in a tropical rainforest stream , 2016 .
[137] K. Sivaramakrishnan,et al. A new genus and species of Atalophlebiinae (Insecta: Ephemeroptera: Leptophlebiidae) from Palni hills of the southern Western Ghats, India. , 2016, Zootaxa.
[138] Adriana Marcela Forero-Céspedes. Composition and structure of the Baetidae family (Insecta: Ephemeroptera) in a Colombian Andean basin , 2016 .
[139] Michał Bogdziewicz,et al. Increased temperature delays the late-season phenology of multivoltine insect , 2016, Scientific Reports.
[140] Artur Niechwiej. Formation of groupings of mayfly larvae (Ephemeroptera) in the area of small hydrological structures, in the streams of the Kamienica Nawojowska river basin (the Sądeckie Beskids, Poland) , 2016 .
[141] D. Stagliano. Mayflies (Insecta: Ephemeroptera) of Conservation Concern in Montana: Status Updates and Management Needs , 2016, Western North American Naturalist.
[142] D. Boukal,et al. Spatial heterogeneity and habitat permanence affect community assembly, structure and phenology of mayflies (Ephemeroptera) in sandpit pools , 2016 .
[143] M. Schletterer,et al. Larval redescription of Prosopistoma pennigerum (MÜLLER, 1785) from the River Volga near Rzhev, Tver Region, Russia (Insecta: Ephemeroptera) , 2016 .
[144] D. Boukal,et al. Influence of food availability, predation risk and initial body size on growth and maturation of Cloeon dipterum (Ephemeroptera: Baetidae) , 2016 .
[145] M. Hubmann,et al. Development of a habitat preference curve for the mayfly Baetis alpinus (Pictet 1843) , 2016 .
[146] F. Salles,et al. Review of Waltzoyphius McCafferty & Lugo-Ortiz, 1995 and Zelusia Lugo-Ortiz & McCafferty, 1998 (Ephemeroptera: Baetidae) , 2016 .
[147] F. Salles,et al. Species delimitation of Lachlania Hagen (Ephemeroptera: Oligoneuriidae) with description of two new species from Brazil , 2016 .
[148] A. Martynov,et al. Kintrishi State Nature Reserve — a hotspot for mayfly (Insecta: Ephemeroptera) diversity in Adjara (Georgia) , 2016 .
[149] K. Sivaramakrishnan. Systematics of the Ephemeroptera of India: Present status and future prospects , 2016 .
[150] C. Macadam. The current status of British mayflies and stoneflies , 2016 .
[151] P. Grant,et al. A simple, inexpensive artificial stream for rearing Ephemeroptera from sandy substrates , 2016 .
[152] J. Alba-Tercedor. Microtomographic study on the anatomy of adult male eyes of two mayfly species , 2016 .
[153] P. Michalik,et al. Deciphering genital anatomy of rare, delicate and precious specimens: first study of two type specimens of mayflies using micro-computed X-ray tomography (Ephemeroptera; Heptageniidae) , 2016 .
[154] Changfa Zhou,et al. The nymph, habitat, and status of Eatonigenia in China (Ephemeroptera: Ephemeridae). , 2016, Zootaxa.
[155] A. Sanz,et al. Are Antioxidant Capacity and Oxidative Damage Related to Biological and Autecological Characteristics in Aquatic Insects , 2016 .
[156] J. Peters,et al. A new species of Polyplocia Lestage from Malaysia with comments on the genus (Ephemeroptera, Euthyplociidae, Euthyplociinae). , 2016, Zootaxa.
[157] R. Schmitt,et al. Temporal variation in the Ephemeroptera, Plecoptera and Trichoptera community in response to environmental drivers in a subtropical stream , 2016 .
[158] J. D. L. G. Neto,et al. Leptophlebiidae (Ephemeroptera) from Roraima State, Brazil: description of two new species of Ulmeritoides Domínguez, 1991. , 2016, Zootaxa.
[159] S. Anbalagan,et al. A new species of Prosopistoma Latreille, 1833 (Ephemeroptera: Prosopistomatidae) from South India. , 2016, Zootaxa.
[160] C. Molineri,et al. Three new species of Leptohyphes Eaton (Ephemeroptera: Leptohyphidae) from Colombia , 2016 .
[161] F. Salles,et al. The imagos of some enigmatic members of the Hermanella complex (Ephemeroptera, Leptophlebiidae) , 2016, ZooKeys.
[162] M. Raby,et al. Interlaboratory evaluation of the assessment of arsenic bioaccumulation from field collected sediments using Hexagenia spp , 2016, Environmental toxicology and chemistry.
[163] A. Calor,et al. Mayflies (Ephemeroptera) from Reserva Ecológica Michelin, Bahia, Brazil , 2016 .
[164] E. Bauernfeind,et al. An annotated catalogue of the mayfly fauna of Turkey (Insecta, Ephemeroptera) , 2016, ZooKeys.
[165] C. Molineri,et al. Two new species of Caenis Stephens, 1835 (Ephemeroptera: Caenidae) from South America. , 2016, Zootaxa.
[166] M. Sartori,et al. Sangpradubina, an astonishing new mayfly genus from Thailand (Ephemeroptera: Leptophlebiidae: Atalophlebiinae). , 2016, Zootaxa.
[167] M. Monaghan,et al. Molecular phylogeny and timing of diversification in Alpine Rhithrogena (Ephemeroptera: Heptageniidae) , 2016, BMC Evolutionary Biology.
[168] M. Bundschuh,et al. Multiple exposure routes of a pesticide exacerbate effects on a grazing mayfly. , 2016, Aquatic toxicology.
[169] Lester L. Yuan,et al. Multitaxon distribution models reveal severe alteration in the regional biodiversity of freshwater invertebrates , 2016, Freshwater Science.
[170] A. Camp,et al. Can't take the heat: Temperature-enhanced toxicity in the mayfly Isonychia bicolor exposed to the neonicotinoid insecticide imidacloprid. , 2016, Aquatic toxicology.
[171] Gábor Horváth,et al. Mayflies are least attracted to vertical polarization: A polarotactic reaction helping to avoid unsuitable habitats , 2016, Physiology & Behavior.
[172] J. Gelhaus,et al. A contribution to mayfly studies of Western Mongolia (Insecta, Ephemeroptera) , 2016, ZooKeys.
[173] H. Rajaei,et al. An updated list of type material of Ephemeroptera Hyatt & Arms, 1890, deposited at the Zoological Museum of Hamburg (ZMH) , 2016, ZooKeys.
[174] Wei Zhang,et al. The nymph and imago of Chinese mayfly Siphlonurus davidi (Navás, 1932) , 2016, ZooKeys.
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