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1,091 results for “hemisphere”
Full summary statistics of mixQTL for GTEx v8 Brain_Cerebellar_Hemisphere
The mixQTL method is described in paper doi.org/10.1101/2020.04.22.050666. Please cite the original paper if using the data.
CAIRT FL2S Results of Case Study Scenario 7 (CSS7) for Southern Hemisphere Winter
<p>Results of the fast level-2 simulator (FL2S) of CAIRT developed within the Earth Explorer 11 Phase 0 Science and Requirements Consolidation Study (SciReC) – CAIRT. The files contain altitude-time cross-sections of atmospheric parameters along simulated CAIRT-orbits. The variable extensions denote the original field ('_ori'), the application of the averaging kernel ('_ak'), additional application of noise ('_aknoi'), application of systematic uncertainties ('_sys'), and application of all effects ('_aknoisys'). Further information is available from the authors.</p>
Star Trail in the Southern Hemisphere with Bortle 4 Scale Light Pollution
<p>Winner in the 2023 IAU OAE Astrophotography Contest, category Still images with smartphones-mobile devices: Star Trail in the Southern Hemisphere with Bortle 4 Scale Light Pollution, by Slamat Riyadi.</p> <p>This breathtaking photo, captured under the clear night sky of Linggamekar Village, Cilimus, Kuningan, West Java, Indonesia on 25 June 2020, displays star trails sweeping across the southern hemisphere’s heavens. The star trails are due to Earth’s rotation causing the apparent motion of stars, creating these mesmerising arcs of light when followed over extended periods. Here, the point the stars rotate around (the South Celestial Pole) is close to the horizon, as the image was taken close to the equator. The photographer used the star trail feature on a smartphone, which captured a series of images over an extended period and stacked them together. The striking tree in the foreground adds depth to the image, contrasting the celestial motion above with its Earthly stillness, while also masking some of the surrounding light pollution. Different parts of the world offer diverse and stunning perspectives on the night sky, emphasising the importance of preserving dark skies everywhere.</p> <p>Credit: Slamat Riyadi/IAU OAE (<a href="https://creativecommons.org/licenses/by/4.0/legalcode">CC BY 4.0</a>)</p>
LegacyVegetation: Northern Hemisphere reconstruction of past plant cover and total tree cover from pollen archives of the last 14 ka
Open the record for dataset details and reuse information.
Fig. 1 in First discovery and a new species of Coelogynopora (Platyhelminthes, Proseriata) in the Southern Hemisphere
Fig. 1. Coelogynopora kenichii sp. nov. A. Live specimen. Scale bar = 250 µm. B. Schematic depiction of the head, showing the trilobate brain, the statocyst and the anterior intestinal diverticulum.
Fig. 4 in First discovery and a new species of Coelogynopora (Platyhelminthes, Proseriata) in the Southern Hemisphere
Fig. 4. Sclerotised copulatory system of Coelogynopora kenichii sp. nov. A. Schematic depiction of the stylet and the three pairs of spines (RMNH.VER.19980.p). B. Photomicrograph of the stylet and the three pairs of spines (RMNH.VER.19980.n). C. Photomicrograph of the distal portion of the three spines on one side of the stylet, showing their different morphologies (RMNH.VER.19980.o). Scale bars: A–B = 25 µm; C = 10 µm.
Fig. 3 in First discovery and a new species of Coelogynopora (Platyhelminthes, Proseriata) in the Southern Hemisphere
Fig. 3. Reconstruction of the reproductive complex of Coelogynopora kenichii sp. nov., based on a series of sagittal sections. For the sake of clarity, a single seminal vesicle and ovovitelline duct were drawn, and gland cells were omitted (RMNH.VER.19980.l). Scale bar = 30 µm.
Fig. 2 in First discovery and a new species of Coelogynopora (Platyhelminthes, Proseriata) in the Southern Hemisphere
Fig. 2. Posterior end of Coelogynopora kenichii sp. nov. in ventral view, from a whole mount (RMNH. VER.19980.a). Scale bar = 50 µm.
Fig. 6 in First discovery and a new species of Coelogynopora (Platyhelminthes, Proseriata) in the Southern Hemisphere
Fig. 6. Map showing the known distribution of the genus Coelogynopora based on all the available reports, which may be summarised by Karling (1966), Sopott-Ehlers (1976, 1992), Tajika (1978, 1981), Riser (1981), Ax & Armonies (1987), Ax (2008), Armonies (2017, 2018), Jouk et al. (2019), and this work.
Fig. 5 in Revised Diagnosis and First Northern Hemisphere Records of the Rare Clingfish Lepadichthys akiko (Gobiesocidae: Diademichthyinae)
Fig. 5. Distributional records of Lepadichthys akiko. Stars and circle indicate records based on collected specimens and underwater photographs, respectively. Closed and open symbols indicate type locality and newly recorded localities, respectively.
Fig. 6 in Revised Diagnosis and First Northern Hemisphere Records of the Rare Clingfish Lepadichthys akiko (Gobiesocidae: Diademichthyinae)
Fig. 6. Preserved specimen of Lepadichthys bolini from Palau (BPBM 9219, 28.1 mm SL). A, lateral view; B, dorsal view; C, ventral view.
Fig. 4 in Revised Diagnosis and First Northern Hemisphere Records of the Rare Clingfish Lepadichthys akiko (Gobiesocidae: Diademichthyinae)
Fig. 4. Underwater photographs of Lepadichthys akiko from Okinawa Island, Japan (A, KPM-NR 73666; B, KPM-NR 176523). Specimens not collected. Photos by Y. Terada.
Fig. 1 in Revised Diagnosis and First Northern Hemisphere Records of the Rare Clingfish Lepadichthys akiko (Gobiesocidae: Diademichthyinae)
Fig. 1. Preserved specimens of Lepadichthys akiko from Palau (A, BPBM 37705, 12.3 mm SL; B–D, BPBM, 37695, 14.0 mm SL). A, B, lateral view; C, dorsal view; D, ventral view.
Fig. 3 in Revised Diagnosis and First Northern Hemisphere Records of the Rare Clingfish Lepadichthys akiko (Gobiesocidae: Diademichthyinae)
Fig. 3. Head sensory canal pores of Lepadichthys akiko, BPBM 37695, 14.0 mm SL. Bar indicates 1.0 mm.
Fig. 1 in First Records of the Rare Snake Eel Ophichthus exourus (Pisces: Anguilliformes: Ophichthidae) from the Northern Hemisphere
Fig. 1. Fresh specimen of Ophichthus exourus, OCF-P03211, 634 mm TL, off Okinawa Island, Okinawa Prefecture, East China Sea, Japan.
Fig. 2 in First Records of the Rare Snake Eel Ophichthus exourus (Pisces: Anguilliformes: Ophichthidae) from the Northern Hemisphere
Fig. 2. Lateral view of the head (A), and schematic diagram of dentition on upper jaw (left) and lower jaw (right) (B), of Ophichthus exourus, OCF-P03211, 634 mm TL. Dotted circles in (B) represent missing teeth.
Fig. 3 in Acentrogobius limarius (Gobiidae) from the Ryukyu Islands, Japan: First Northern Hemisphere Records
Fig. 3. Distributional records of Acentrogobius limarius. Stars and circles indicate newly recorded and other localities, respectively. Closed and open symbols indicate records based on collected specimens and underwater photograph, respectively. Arrowhead indicates type locality. Papua New Guinean record was based on three specimens collected by G. Allen and M. Erdmann (unpublished).
Fig. 1 in Acentrogobius limarius (Gobiidae) from the Ryukyu Islands, Japan: First Northern Hemisphere Records
Fig. 1. Photographs of Acentrogobius limarius from: A–C, Atetsu, Amami-oshima island, Amami Islands, Ryukyu Islands, Japan (YCM-P 45483, 31.7 mm SL); D, Amitori Bay, Iriomote-jima island, Yaeyama Islands, Ryukyu Islands, Japan (specimen not collected). A, Fresh coloration; B, preserved coloration; C, radiograph; D, underwater photograph taken at 8 m depth (Photo: K. Yano).
Fig. 2 in First Northern Hemisphere Record of a Poorly Known Armored Searobin Peristedion richardsi (Actinopterygii: Teleostei: Peristediidae) from Taiwan
Fig. 2. (A) Dorsal and (B) ventral views of head of preserved specimen of Peristedion richardsi (same individual as Fig. 1).
Fig. 1 in First Northern Hemisphere Record of a Poorly Known Armored Searobin Peristedion richardsi (Actinopterygii: Teleostei: Peristediidae) from Taiwan
Fig. 1. Photographs of preserved specimen of Peristedion richardsi (KAUM–I. 127304, 197.2 mm SL). Top to bottom: dorsal, lateral, and ventral views.
ScienceDex guides
Understand access before you commit
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.