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622 results for “High altitude”
FIGURE 4 in Yet another small brown frog from high altitude on the Marojejy Massif, northeastern Madagascar (Anura: Mantellidae)
FIGURE 4. Audiospectrogram (above) and oscillogram (below) of a call of the holotype of Gephyromantis tohatra sp. nov. (ZSM 422/2016), recorded on 19 November 2016 on the Marojejy Massif in the North East of Madagascar. This call is here interpreted as consisting of eight notes, each with a distinct pulsed structure, and the last note containing more pulses than the preceding notes. Calls were filtered with a high pass filter to remove frequencies below 400 Hz in order to reduce wind artefacts.
FIGURE 1 in Yet another small brown frog from high altitude on the Marojejy Massif, northeastern Madagascar (Anura: Mantellidae)
FIGURE 1. Maximum Likelihood tree based on 1106 bp of the mitochondrial 12S and 16S rRNA genes, showing relationships of G. tohatra sp. nov. to three other related Gephyromantis species and one candidate species from northern Madagascar. Support at nodes are ML likelihood bootstrap values, BI posterior probabilities, and MP bootstrap values. Gephyromantis granulatus was used as the outgroup. Inset map shows the four localities from which these species are known (with jitter to reveal overlapping species). Inset photos show representative individuals of the four target species, size of the pictures roughly proportional to body size differences among the species.
FIGURE 3 in Yet another small brown frog from high altitude on the Marojejy Massif, northeastern Madagascar (Anura: Mantellidae)
FIGURE 3. Adult male specimens of Gephyromantis tohatra sp. nov. and syntopic G. schilfi from Marojejy National Park in life, in dorsolateral and ventral views. (a,b) Holotype of G. tohatra (ZSM 422/2016, field number ZCMV 15245, SVL 32.7 mm); (c,d) paratype of G. tohatra (UADBA uncatologued, field number ZCMV 15236, SVL unknown). (e,f) call voucher of G. schilfi (ZSM 415/2016, field number ZCMV 15246, SVL 29.8 mm).
Data from: The genetic architecture of adaptations to high altitude in Ethiopia
<p>Genotype data for 260 high and low altitude Ethiopians from </p> <p>Alkorta-Aranburu G, Beall CM, Witonsky DB, Gebremedhin A, Pritchard JK, Di Rienzo A. The genetic architecture of adaptations to high altitude in Ethiopia. PLoS Genet. 2012</p> <p>Data is in PLINK format. </p> <p> </p>
Data for clear-air turbulence calculated from high-resolution radiosonde measurements at cruising altitudes in China during the period from 2010 to 2022.
<p>The file is the turbulence dissipation rate(ε) data, calculated using high-resolution radiosonde measurements at cruising altitudes in China, during the period from 2010 to 2022. More description can be seen in the read_me.txt.</p>
Analysis of the effectiveness and safety of conventional anticoagulants in preventing deep vein thrombosis after total knee arthroplasty in patients undergoing total knee arthroplasty at high altitudes
<p><strong><span>Analysis of the effectiveness and safety of conventional anticoagulants in preventing deep vein thrombosis after total knee arthroplasty in patients undergoing total knee arthroplasty at high altitudes</span></strong></p>
FIGURES 54–56 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 54–56. (54) Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: Detail of subepithelial pigmentation at level of leg-bearing segments 40–44, dorsal. (55–56). Pectiniunguis aequatorialis sp. nov. [male juvenile (MACN-My 51)]: (55) Left coxal organs, ventral (a: individual areas of mucous layer; b: outer lobes). (56) Right gonopod, ventral. Scale bars: 0.1 mm (56); 0.2 mm (55); 0.8 mm (54).
FIGURE 70 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURE 70. Distribution records of Pectiniunguis aequatorialis sp. nov. and Pectiniunguis roigi Pereira, Foddai & Minelli, 2001.
FIGURES 48–53 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 48–53. Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: (48) Ultimate leg-bearing segment and postpedal segments, ventral. (49) Left coxal organs, ventral (a: individual areas of mucous layer; b: outer lobes). (50) Postpedal segments, ventral (a: gonopods). (51) Right gonopod, ventral. (52) Penis, dorsal. (53) Detail of tubula seminifera with mature spermatozoa at level of leg-bearing segments 35–38, ventral (a: spermatozoa, b: contour of tubula seminifera). Scale bars: 0.1 mm (51); 0.2 mm (49, 50, 52); 0.4 mm (48); 0.8 mm (53).
FIGURES 25–32 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 25–32. Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: (25) Metasternite 2. (26) Metasternite 3. (27) Metasternite 4. (28) Metasternite 7. (29) Metasternite 10. (30) Metasternite 11. (31) Metasternite 12. (32) Metasternite 13. Scale bar: 0.3 mm.
FIGURES 1–7 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 1–7. Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: (1) Right antenna, ventral. (2) Right a.a. XIII and XIV, ventral (a, b: a, b type sensilla; c: claviform sensilla; d: apical specialized sensilla). (3) Detail of apex of right a.a. XIV, ventral (a: clavate sensilla; b: apical specialized sensilla). (4) Right a.a. II, ventral (b: b type sensilla). (5) Right a.a. V, ventral (a, b: a, b type sensilla). (6) Right a.a. IX, ventral (a, b: a, b type sensilla). (7) Right a.a. II, dorsal (a, b: a, b type sensilla). Scale bars: 0.1 mm (2–7); 0.6 mm (1)
FIGURES 18–24 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 18–24. Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: (18) Left side of first maxillae, dorsal (a: lappet of coxosternite; b: lappet of telopodite). (19) First and second maxillae, ventral (a: pleurite of second maxillae, b: coxosternite of second maxillae). (20) Detail of left postero-external region of coxosternite of second maxillae (b), and pleurite (a), ventral. (21) Claw of right telopodite of second maxillae, ventral. (22) Forcipular segment, ventral. (23) Forcipular segment, dorsal. (24) Detail of venom gland (a), calyx (b), and duct (c) of venom apparatus in left forcipular telopodite, dorsal. Scale bars: 0.05 mm (21); 0.1 mm (20); 0.2 mm (18); 0.3 mm (24); 0.4 mm (19); 0.6 mm (22, 23).
FIGURES 8–17 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 8–17. Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: (8) Right a.a. V, dorsal (a, b: a, b type sensilla). (9) Right a.a. IX, dorsal (a, b, c: a, b, c type sensilla). (10) Right a.a. XIII, dorsal (a, b, c: a, b, c type sensilla). (11) Cephalic plate and bases of antennae. (12) Clypeus and bases of antennae. (13) Labrum. (14) Left mandible, dorsal. (15) Dentate lamella of left mandible, dorsal. (16) Right mandible, dorsal. (17) Dentate lamella of right mandible, dorsal. Scale bars: 0.03 mm (15, 17); 0.1 mm (8–10, 13, 14, 16); 0.4 mm (12); 0.5 mm (11).
FIGURES 41–47 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 41–47. Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: (41) Left leg (pair 23), anteroventral view. (42) Left leg (pair 42), anteroventral view. (43) Left leg (pair 44), ventral. (44) Claw of left leg (pair 25), anterior view (a: anterior accessory spine). (45) Claw of left leg (pair 25), posterior view (a: anterior accessory spine, b: posterior accessory spines). (46) Claw of left leg (pair 33), ventral view (a: anterior accessory spine, b: posterior accessory spines). (47) Ultimate leg-bearing segment and postpedal segments, dorsal (a: ultimate pretergite, b: intercalary pleurite). Scale bars: 0.05 mm (44– 46); 0.3 mm (41–43); 0.4 mm (47).
FIGURES 33–40 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 33–40. Pectiniunguis aequatorialis sp. nov. [male holotype (QCAZ)]: (33) Metasternite 14. (34) Metasternite 16. (35) Metasternite 17. (36) Metasternite 18. (37) Metasternite 19. (38) Left leg (pair 1), anteroventral view. (39) Left leg (pair 2), anteroventral view. (40) Left leg (pair 12), anteroventral view. Scale bars: 0.3 mm.
FIGURES 57–68 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURES 57–68. (57–65). Pectiniunguis ascendens Pereira, Minelli & Barbieri, 1994 [female holotype (INPA)]: (57) Right a.a. I-VI, ventral. (58) Right a.a. VII-XIV, ventral. (59) Clypeus and bases of antennae. (60) Forcipular segment, ventral. (61) Metasternite 3. (62) Metasternite 4. (63) Metasternite 8. (64) Metasternite 12. (65) Detail of left coxal organs, ventral. (66–68). Pectiniunguis ascendens Pereira, Minelli & Barbieri, 1994 [male allotype (INPA)]: (66) Ultimate leg-bearing segment and postpedal segments, dorsal. (67) Ultimate leg-bearing segment and postpedal segments, ventral. (68) Detail of distal end of last podomere of right ultimate leg, dorsal. (All from Pereira et al. 1994). Scale bars: 0.03 mm (68); 0.1 mm (65); 0.2 mm (57, 58, 66, 67); 0.3 mm (61–64, 59); 0.4 mm (60).
FIGURE 69 in A new high-altitude species of centipede from the Andes of Ecuador (Chilopoda, Geophilomorpha, Schendylidae)
FIGURE 69. Photograph showing the type locality of Pectiniunguis aequatorialis sp. nov., in a high Andean (Paramo) ecosystem, road to Papallacta, Oyacachi (ca. 3823 m a.s.l.), Cayambe Coca Ecological Reserve, Napo province, northern Ecuador. (Photo courtesy Matías Izquierdo).
FIG. 8 in A New Species of Silverside of the Genus Odontesthes (Atheriniformes: Atherinopsidae) with Hypertrophic Lips from a High-Altitude Basin in Southern Brazil
FIG. 8. Distribution of Odontesthes crossognathos in the Pelotas River basin, Upper Uruguay River drainage, Rio Grande do Sul and Santa Catarina states, south Brazil. Star represents the type locality.
FIG. 9 in A New Species of Silverside of the Genus Odontesthes (Atheriniformes: Atherinopsidae) with Hypertrophic Lips from a High-Altitude Basin in Southern Brazil
FIG. 9. Haplotype network illustrating the genetic connectivity of COI haplotypes of Odontesthes crossognathos and congeners. Each circle represents a unique haplotype with circle sizes being proportional to their frequencies. Each color represents a different species of Odontesthes. Crossed markers in the branches that connect the haplotypes represent the number of mutations.
FIG. 7 in A New Species of Silverside of the Genus Odontesthes (Atheriniformes: Atherinopsidae) with Hypertrophic Lips from a High-Altitude Basin in Southern Brazil
FIG. 7. Histological section of the lip of Odontesthes crossognathos showing dermal papillae (black arrows) as fingerlike projections from dermis constituted by loose connective tissue (lct), and projected through epidermal layers of pavement cells and reaching stratified squamous epithelial tissue (sste). EP ¼ epidermis; DE ¼ dermis; (*) ¼ technique artifact. Scale bar ¼ 200 lm.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.