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FIGURE 12 in New and interesting palpigrades (Arachnida, Palpigradi) of the genera Koeneniodes Silvestri, 1913 and Prokoenenia Börner, 1901 from Asia
FIGURE 12. Prokoenenia sarcodactylica sp. n. A, basitarsus IV, right side. B, hand of chelicera. Scale bars: 50 μm.
FIGURE 1 in New and interesting palpigrades (Arachnida, Palpigradi) of the genera Koeneniodes Silvestri, 1913 and Prokoenenia Börner, 1901 from Asia
FIGURE 1. Koeneniodes tibetanus sp. n. A, habitus, dorsal view; B, habitus, ventral view; C, frontal organ; D, lateral organ; E, distal setae (d1 –d3) on basal segment of chelicera; F, proximal setae (p1 –p6) on basal segment of chelicera; G, deuto–tritosternal setae. Scale bars: 100 μm (A–B), 20 μm (C–G).
FIGURE 2 in New and interesting palpigrades (Arachnida, Palpigradi) of the genera Koeneniodes Silvestri, 1913 and Prokoenenia Börner, 1901 from Asia
FIGURE 2. Koeneniodes tibetanus sp. n. A, metapeltidium setae; B, propeltidium; C, opisthosoma, dorsal view; D, opisthosoma, ventral view; E, sternites III–VI; F, sternites IV–VI; G, female genitalia, first lobe; H, female genitalia, second lobe; I, sternites VII–XI. Scale bars: 50 μm.
FIGURE 9 in New and interesting palpigrades (Arachnida, Palpigradi) of the genera Koeneniodes Silvestri, 1913 and Prokoenenia Börner, 1901 from Asia
FIGURE 9. Prokoenenia sarcodactylica sp. n. A, frontal organ, lateral view; B, lateral organ; C, blade of lateral organ, detail; D, insertions/sockets of blades, lateral organ; E, distal setae (d1–d3) on basal segment of chelicera; F, proximal setae (p1–p6) on basal segment of chelicera; G, pedipalp coxa, right side; H, leg I coxa, right side I. Scale bars: 20 μm (A–F), 50 μm (G–H).
Data from: A priori and a posteriori approaches for finding genes of evolutionary interest in non-model species: osmoregulatory genes in the kidney transcriptome of the desert rodent Dipodomys spectabilis (banner-tailed kangaroo rat)
One common goal in evolutionary biology is the identification of genes underlying adaptive traits of evolutionary interest. Recently next-generation sequencing techniques have greatly facilitated such evolutionary studies in species otherwise depauperate of genomic resources. Kangaroo rats (Dipodomys sp.) serve as exemplars of adaptation in that they inhabit extremely arid environments, yet require no drinking water because of ultra-efficient kidney function and osmoregulation. As a basis for identifying water conservation genes in kangaroo rats, we conducted a priori bioinformatics searches in model rodents (Mus musculus and Rattus norvegicus) to identify candidate genes with known or suspected osmoregulatory function. We then obtained 446,758 reads via 454 pyrosequencing to characterize genes expressed in the kidney of banner-tailed kangaroo rats (Dipodomys spectabilis). We also determined candidates a posteriori by identifying genes that were overexpressed in the kidney. The kangaroo rat sequences revealed nine different a priori candidate genes predicted from our Mus and Rattus searches, as well as 32 a posteriori candidate genes that were overexpressed in kidney. Mutations in two of these genes, Slc12a1 and Slc12a3, cause human renal diseases that result in the inability to concentrate urine. These genes are likely key determinants of physiological water conservation in desert rodents.
Data from: What influence do courses at medical school and personal experience have on interest in practicing family medicine? – results of a student survey in Hessia
Aim: Against the background of an impending shortage of family practitioners, it is important to investigate the factors influencing the choice to become one. The aim of this study was to identify factors that encourage medical students to choose to practice family medicine. Method: Using a questionnaire, students in the fourth and fifth years of their studies in the Federal State of Hesse were asked about the factors that had influenced their choice of medical specialty and their experience of courses in family medicine. Predictors of an interest in practicing family medicine were calculated using multiple logistic regression. Results: 361 questionnaires were returned, representing a response rate of 70.9%. Confirmation of personal strengths, an interest in the field, and practical experience of the subject generally turned out to be important factors influencing the choice of medical specialty. 49.3% of students expressed an interest in practicing family medicine. A link existed between an interest in working as a family doctor and the opportunity to take over an existing practice, experience of medicine in rural areas, and an appreciation of the conditions of work. With regard to education at medical school, positive experiences during a clinical traineeship in family medicine and positive role models among teachers of general practice were identified as predictors. Conclusion: Almost half the medical students were open to the idea of practicing family medicine. Experience of medicine in rural areas and positive experiences of courses in general practice were linked to an increased interest in working as a family doctor. To promote this interest, it may be a promising approach to increase opportunities to collect experience of medicine in rural areas, and to encourage highly motivated teaching practices.
FIGURE 47 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 47. Heteropternis couloniana, holotype ♀ of synonym Heteropternis vittata Kirby, 1902, Zomba, British Central Africa (=Malawi). Scale bar represents 1 cm.
FIGURE 43 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 43. Heteropternis minuta; 1–3, 5: Bamboo Forest (2620 m), 4: Hana Wetland (2424 m), Ethiopia. 1a & 1b show the same male specimen. 4a and 4b show the same female specimen. Male specimen nr. 3 is sound recorded (Figure 44). Scale bar represents 1 cm.
FIGURE 34 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 34. Cataloipus sp., left: Ƌ, Dembi Forest (1260 m); right: ♀, Sheko Forest (1340 m), Ethiopia. Scale bar represents 1 cm.
FIGURE 7 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 7. Ruspolia differens, Dembi Forest (1260 m) (upper left), Kaya Kela (1725 m) (bottom left, upper right) and Makira Forest (2370 m) (upper middle), Ethiopia. Scale bar represents 1 cm.
FIGURE 6 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 6. Stridulatory file and mirror of Pseudorhynchus lanceolatus (Dembi Forest), Anoedopoda lamellata (Bale Mountain Lodge) and Ruspolia differens (Dembi Forest, Ethiopia).
FIGURE 29 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 29. Subgenital plate and stridulatory file of Horatosphaga regularis, Dembi Forest (1260 m), Ethiopia.
FIGURE 1. Study sites 2015 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 1. Study sites 2015 in and around Kafa Biosphere Reserve and Bale Mountains N.P., Ethiopia. The numbers correspond with those in Table 1.
FIGURE 45 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 45. Holotype Ƌ of Heteropternis minuta, Mount Chillalo (3050 m), Ethiopia. Scale bar represents 1 cm.
FIGURE 26 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 26. Attilio Carapezza (right) and Daniel Wiersbowsky (left) collecting insects on light, Sheko, Ethiopia.
FIGURE 41 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 41. Odontomelus scalatus, first on the left: Baku Lake (1425 m); three on the right Dembi Forest (1260 m), Ethiopia. Scale bar represents 1 cm.
FIGURE 44 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 44. Oscillogram of the song of a male Heteropternis minuta, Bamboo Forest (2620 m), Ethiopia. Recording and oscillogram by Baudewijn Odé, the Netherlands.
FIGURE 39 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 39. Coryphosima stenoptera stenoptera, left: Ƌ, Sheko Forest (1570 m); right: ♀, Bamboo Forest (2620 m), Ethiopia. Scale bar represents 1 cm.
FIGURE 33 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 33. Eucoptacra anguliflava, Sheko Forest (1570 m), and Eucoptacra exigua Dembi Forest (1260 m), Ethiopia. Scale bar represents 1 cm.
FIGURE 36 in Orthoptera (Insecta: Tettigonioidea, Pyrgomorphoidea, Acridoidea) of Kafa Biosphere Reserve, Bale Mountains National Park and other areas of conservation interest in Ethiopia
FIGURE 36. Neritius abyssinicus, left: ♀, Dembi Forest (1260 m); right: Ƌ, Bamboo Forest (2620 m), Ethiopia. Scale bar represents 1 cm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.