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588 results for “157”
Figures 1-3 from: Petitpierre E (2011) Cytogenetics, cytotaxonomy and chromosomal evolution of Chrysomelinae revisited (Coleoptera, Chrysomelidae). ZooKeys 157: 67-79. https://doi.org/10.3897/zookeys.157.1339
Figures 1-3 - Basic chromosomal data on higher taxa of Chrysomelinae
Figures 4-6 from: Petitpierre E (2011) Cytogenetics, cytotaxonomy and chromosomal evolution of Chrysomelinae revisited (Coleoptera, Chrysomelidae). ZooKeys 157: 67-79. https://doi.org/10.3897/zookeys.157.1339
Figures 4-6 - Basic chromosomal data on higher taxa of Chrysomelinae
Figure 157 from: Marsh P, Wild A, Whitfield J (2013) The Doryctinae (Braconidae) of Costa Rica: genera and species of the tribe Heterospilini. ZooKeys 347: 1-474. https://doi.org/10.3897/zookeys.347.6002
Figure 157 - Heterospilus guapilensis Marsh, sp. n.: A–C paratype D–E holotype.
Figure 157 from: van Achterberg K, Xi-Ying L, Tan J (2013) Revision of the subfamily Opiinae (Hymenoptera, Braconidae) from Hunan (China), including thirty-six new species and two new genera. ZooKeys 268: 1-186. https://doi.org/10.3897/zookeys.268.4071
Figure 157 - Opius pachymerus sp. n., female, holotype. Habitus lateral.
Figure 7 from: Jouladeh Roudbar A, Eagderi S, Esmaeili HR, Coad BW, Bogutskaya N (2016) A molecular approach to the genus Alburnoides using COI sequences data set and the description of a new species, A. damghani, from the Damghan River system (the Dasht-e Kavir Basin, Iran) (Actinopterygii, Cyprinidae). ZooKeys 579: 157-181. https://doi.org/10.3897/zookeys.579.7665
Figure 7 - Two views of Cheshmeh Ali, Damghan, type locality of Alburnoides damghani sp. n.
Figure 2 from: Kashani GM (2016) Iranian terrestrial isopods of the family Cylisticidae Verhoeff, 1949 with a description of a new species (Isopoda, Oniscidea). ZooKeys 582: 157-165. https://doi.org/10.3897/zookeys.582.7199
Figure 2 - Cylisticus masalicus sp. n.; A conglobated B active.
Figure 1 from: Manni M, Lima KM, Guglielmino CR, Lanzavecchia SB, Juri M, Vera T, Cladera J, Scolari F, Gomulski L, Bonizzoni M, Gasperi G, Silva JG, Malacrida AR (2015) Relevant genetic differentiation among Brazilian populations of Anastrepha fraterculus (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 157-173. https://doi.org/10.3897/zookeys.540.6713
Figure 1 - Map of the collected samples.
Figure 157 from: Kriebel R (2016) A Monograph of Conostegia (Melastomataceae, Miconieae). PhytoKeys 67: 1-326. https://doi.org/10.3897/phytokeys.67.6703
Figure 157 - Distribution of Conostegia fraterna.
finals_2022_157
Log and boot files of game 157
RENABLATE-II Feasibility Study of Catheter Based Renal Denervation to Treat Resistant Hypertension - 157
ClinicalTrials.gov study NCT02095691. IPD Sharing: Not stated. Countries: 0. Publications: 0.
FIGURES 151–157 in Diagnostics and updated catalogue of Acalyptris Meyrick, the second largest genus of Nepticulidae (Lepidoptera) in the Americas
FIGURES 151–157. Acalyptris extremus Stonis & Diškus, sp. nov., holotype (ZMUC). 151–154, male adult; 155–157, male genitalia, slide no. AD945.
FIGURE 157 in Morphological phylogeny and taxonomic revision of the former antlion subtribe Periclystina (Neuroptera: Myrmeleontidae: Dendroleontinae)
FIGURE 157. Riekoleon edwardsi: male: a) terminalia, lateral; b) 9th sternite, ventral; c) genitalia, lateral; d) genitalia, posterior; female: e) terminalia, lateral; f) terminalia, ventral (note pregenital plate hidden beneath sternite); g) pregenital plate, posterior. Scale bars = 0.5 mm.
FIGS. 155–158. Brunsonia digitata. Fig. 155. Left anterior gonopod, posterior view. Fig. 156. Right posterior gonopod coxite, posterior view. Fig. 157. Male leg 3. Fig. 158 in The millipede family Conotylidae in northwestern North America, with a complete bibliography of the family (Diplopoda, Chordeumatida, Heterochordeumatidea, Conotyloidea)
FIGS. 155–158. Brunsonia digitata. Fig. 155. Left anterior gonopod, posterior view. Fig. 156. Right posterior gonopod coxite, posterior view. Fig. 157. Male leg 3. Fig. 158. Detail of male leg 7.
FIGURE 157 in Revision of the metallic species of Lasioglossum (Dialictus) in Canada (Hymenoptera, Halictidae, Halictini) 2591
FIGURE 157. Lasioglossum oblongum (Lovell). Male (A) lateral habitus; (B) dorsal habitus; (C) face; (D) metapostnotum; (E) ventral view of genital capsule; (F) dorsal view of genital capsule. Scale bars, A–C = 1 mm, F = 0.5 mm.
FIGS. 152–157. Thracia arienatoma n in Cryptic bivalves with descriptions of new species from the Rodrigues lagoon
FIGS. 152–157. Thracia arienatoma n. sp., NMW.Z.2000.086.00015: (152) external left valve (MontageTM); (153) internal left valve (SEM); (154, 155) hinge views (SEM); (156) lithodesma (SEM); (157) prodissoconch (SEM).
FIGURES 157–162. Myopsocus putumayensis n in New species of Myopsocidae (Insecta: Psocodea: "Psocoptera") from Colombia
FIGURES 157–162. Myopsocus putumayensis n. sp. Male. 157. Forewing. 158. Hindwing. 159. Head (frontal view). 160. Epiproct and paraproct. 161. Hypandrium. 162. Phallosome. Scales in mm.
On following pages: 149. Meadow Vole (Microtus pennsyivanicus); 150. Long-tailed Vole (Microtus longicaudus); 151. Creeping Vole (Microtus oregoni); 152. Major's Pine Vole (Microtus majori); 153. Common Pine Vole (Microtus subterraneus); 154. Caucasian Pine Vole (Microtus daghestanicus); 155. Alpine Pine Vole (Microtus multiplex); 156. Liechtenstein's Pine Vole (Microtus liechtensteini); 157. Tatra Pine Vole (Microtus tatricus): 158. Mediterranean Pine Vole (Microtus duodecimcostatus); 159. Lusitanian Pine Vole (Microtus lusitanicus); 160. Pyrenean Pine Vole (Microtus gerbil); 161. Savi's Pine Vole (Microtus savii): 162. Calabria Pine Vole (Microtus brachycercus); 163. Sicilian Pine Vole (Microtus nebrodensis); 164. Thomas's Pine Vole (Microtus thomasi); 165. Balkan Pine Vole (Microtus felteni); 166. Schelkovnikov's Pine Vole (Microtus schelkovnikovi): 167. Harting's Vole (Microtus hartingi); 168. Levant Vole (Microtus guentheri); 169. Dogramaci's Vole (Microtus dogramacii); 170. Cyrenaica Vole (Microtus mustersi); 171. Social Vole (Microtus socialis): 172. Anatolian Vole (Microtus anatolicus): 173. Iranian Vole (Microtus iran); 174. Kopet Dag Pine Vole (Microtus paradoxus); 175. Common Vole (Microtus arvalis); 176. Altai Vole (Microtus obscurus); 177. East European Vole (Microtus mystacinus); 178. Kerman Vole (Microtus kermanensis); 179. Transcaspian Vole (Microtus transcaspicus); 180. Tian Shan Vole (Microtus ilaeus). in Cricetidae
On following pages: 149. Meadow Vole (Microtus pennsyivanicus); 150. Long-tailed Vole (Microtus longicaudus); 151. Creeping Vole (Microtus oregoni); 152. Major's Pine Vole (Microtus majori); 153. Common Pine Vole (Microtus subterraneus); 154. Caucasian Pine Vole (Microtus daghestanicus); 155. Alpine Pine Vole (Microtus multiplex); 156. Liechtenstein's Pine Vole (Microtus liechtensteini); 157. Tatra Pine Vole (Microtus tatricus): 158. Mediterranean Pine Vole (Microtus duodecimcostatus); 159. Lusitanian Pine Vole (Microtus lusitanicus); 160. Pyrenean Pine Vole (Microtus gerbil); 161. Savi's Pine Vole (Microtus savii): 162. Calabria Pine Vole (Microtus brachycercus); 163. Sicilian Pine Vole (Microtus nebrodensis); 164. Thomas's Pine Vole (Microtus thomasi); 165. Balkan Pine Vole (Microtus felteni); 166. Schelkovnikov's Pine Vole (Microtus schelkovnikovi): 167. Harting's Vole (Microtus hartingi); 168. Levant Vole (Microtus guentheri); 169. Dogramaci's Vole (Microtus dogramacii); 170. Cyrenaica Vole (Microtus mustersi); 171. Social Vole (Microtus socialis): 172. Anatolian Vole (Microtus anatolicus): 173. Iranian Vole (Microtus iran); 174. Kopet Dag Pine Vole (Microtus paradoxus); 175. Common Vole (Microtus arvalis); 176. Altai Vole (Microtus obscurus); 177. East European Vole (Microtus mystacinus); 178. Kerman Vole (Microtus kermanensis); 179. Transcaspian Vole (Microtus transcaspicus); 180. Tian Shan Vole (Microtus ilaeus).
FIGURES 148–157 in The genus Afrocymbella (Bacillariophyceae) from lakes Malawi and Tanganyika, with description of new fossil and extant species
FIGURES 148–157. Afrocymbella brunii and Afrocymbella beccarii, LM valve views. 148–151. Afrocymbella brunii, observed in samples from Isanga, Monkey, Mangochi, and Chembe Bays. 152–157. Afrocymbella beccarii, observed in samples from Chituta and Isanga Bays. Scale bar = 10 μm.
FIGURES 157–158 in Fifteen new species of Chilicola (Oroediscelis) (Hymenoptera: Colletidae: Xeromelissinae) with illustrated keys to the males and females of the subgenus
FIGURES 157–158. Metapostnotum, dorsal view, to show relative lengths of striae. 157. not attaining posterior margin (C. huarPe holotype); 158. at least some striate attaining posterior margin (C. cuyense holotype).
FIGURAS 157‑162 in Chave De Identificação Ilustrada Dos Phlebotominae (Diptera, Psychodidae) Do Estado De São Paulo, Brasil
FIGURAS 157‑162: Espermatecas de Phlebotominae: 157. Pintomyia christenseni; 158. Evandromyia carmelinoi; 159. Evandromyia lenti; 160. Pintomyia pessoai; 161. Pressatia choti; 162. Pintomyia bianchigalatiae.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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