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10 results for “Anatomical adaptation”
Text-fig. 4. Right humerus of the large Staniantsi-beaver (GPIT/MA/10660) in caudal, cranio-lateral and proximal view with markings of the anatomical terms used for the description of the humerus. in Castor-Like Postcranial Adaptation In An Uppermost Miocene Beaver From The Staniantsi Basin (Nw Bulgaria)
Text-fig. 4. Right humerus of the large Staniantsi-beaver (GPIT/MA/10660) in caudal, cranio-lateral and proximal view with markings of the anatomical terms used for the description of the humerus.
Text-fig. 3. Right scapula of the large Staniantsi-beaver in caudo-lateral and distal view with markings of the anatomical terms used for the description of the scapula. Left figure: caudal view of GPIT/MA/09858-9. Right figure: mirrored distal view of GPIT/MA/03819. in Castor-Like Postcranial Adaptation In An Uppermost Miocene Beaver From The Staniantsi Basin (Nw Bulgaria)
Text-fig. 3. Right scapula of the large Staniantsi-beaver in caudo-lateral and distal view with markings of the anatomical terms used for the description of the scapula. Left figure: caudal view of GPIT/MA/09858-9. Right figure: mirrored distal view of GPIT/MA/03819.
Text-fig. 7. Right tibia of the large Staniantsi-beaver (GPIT/MA/10657) in distal, lateral and caudal view with the illustration of the anatomical terms used for the description of the tibia. in Castor-Like Postcranial Adaptation In An Uppermost Miocene Beaver From The Staniantsi Basin (Nw Bulgaria)
Text-fig. 7. Right tibia of the large Staniantsi-beaver (GPIT/MA/10657) in distal, lateral and caudal view with the illustration of the anatomical terms used for the description of the tibia.
Text-fig. 6. Right femur of the large Staniantsi-beaver (GPIT/MA/09934) in cranial and caudal view with the illustration of the anatomical terms used for the description of the femur. Drawing: T. Lechner. in Castor-Like Postcranial Adaptation In An Uppermost Miocene Beaver From The Staniantsi Basin (Nw Bulgaria)
Text-fig. 6. Right femur of the large Staniantsi-beaver (GPIT/MA/09934) in cranial and caudal view with the illustration of the anatomical terms used for the description of the femur. Drawing: T. Lechner.
Data from: Disentangling evolutionary, environmental and morphological drivers of plant anatomical adaptations to drought and cold in Himalayan graminoids
Understanding what determine plants ability to survive drought and cold is crucial for predicting how plants may respond to ongoing climate change. Plant survival strategies are usually characterized by morphological and physiological adaptations, while their underlying anatomical settings are largely unknown. Woody angiosperms and herbaceous dicots have repeatedly evolved small water transporting conduits and large storage parenchyma tissues at colder or drier places to cope with freezing- and drought-induced damages. However, whether these adaptations are also valid for graminoids remains unclear. Here we show that stem anatomical variations in grasses, sedges and rushes dominating in western Himalayan grasslands are driven by elevation and soil moisture via control over aboveground plant stature and belowground clonal growth, while phylogenetic constraints have only a weak effect. Phylogenetic comparative analyses controlling for confounding factors showed that the elevation-related cooling controls the conductive system through reduced vessel diameter and extended assimilatory and storage tissues with more chlorenchyma and less sclerenchyma around vessels. The soil moisture deficit, on the other hand, determines stabilization structures by promoting short-rhizomatous turf graminoids with hollow stems, thicker epidermis and deep adventitious roots in dry steppes and semi-deserts. Saline wetlands and moist alpine pastures promote long-rhizomatous short-stature plants with lower need for mechanical support (absence of hollow stem) and exposure to high evaporative forcing (thinner epidermis). Observed trends of decreasing vessel sizes and lignification rate with elevation supports the existing knowledge that narrower vessels and extensive parenchyma assist plants to grow in cold environments by avoiding freezing-induced cavitation. Our results bring novel information on ecological drivers influencing the evolution of anatomical adaptations in high mountain graminoids. Distinct grassland types, covering elevations from 2650 to 6150 m, harbor unrelated species with different evolutionary histories that have converged towards similar anatomical structures.
Data from: Disentangling evolutionary, environmental and morphological drivers of plant anatomical adaptations to drought and cold in Himalayan graminoids
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Body shape transformations by alternate anatomical adaptive peak shifts in blenniiform fishes
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Text-fig. 5. Left ulna of the large Staniantsi-beaver (GPIT/MA/03758) in cranial and lateral view with markings of the anatomical terms used for the description of the ulna. in Castor-Like Postcranial Adaptation In An Uppermost Miocene Beaver From The Staniantsi Basin (Nw Bulgaria)
Text-fig. 5. Left ulna of the large Staniantsi-beaver (GPIT/MA/03758) in cranial and lateral view with markings of the anatomical terms used for the description of the ulna.
A Volume, Motion, and Anatomically Adaptive Approach to Photon and Proton Beam Radiotherapy
ClinicalTrials.gov study NCT02130427. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Illumina miRNA profiles with anatomical study revealed involvement of miR397a in Citrus adaptation to long-term B-toxicity via modulating secondary cell wall biosynthesis
GEO Series GSE74434. Citrus sinensis; Citrus maxima. 4 samples. Type: Non-coding RNA profiling by high throughput sequencing.
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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.