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Distribution. Occurs widely in NE part of the Congo Basin (NE DR Congo), extending into W Uganda, Rwanda, and Burundi. in Muridae
Distribution. Occurs widely in NE part of the Congo Basin (NE DR Congo), extending into W Uganda, Rwanda, and Burundi.
Distribution. SW Guinea (Mt Nimba), from SE Liberia E through Ivory Coast and Ghana to Togo, SW Nigeria, and E& S through Cameroon, SW Central African Republic, Equatorial Guinea (including Bioko I), Gabon, Republic of the Congo, and DR Congo to N Angola; distribution limits uncertain. in Muridae
Distribution. SW Guinea (Mt Nimba), from SE Liberia E through Ivory Coast and Ghana to Togo, SW Nigeria, and E& S through Cameroon, SW Central African Republic, Equatorial Guinea (including Bioko I), Gabon, Republic of the Congo, and DR Congo to N Angola; distribution limits uncertain.
Distribution. Widespread in tropical Africa in Guinea-Bissau and from Sierra Leone and Guinea E to S South Sudan and W Kenya, and S to N Angola, S DR Congo, NE Zambia, SW Tanzania, and extreme N Malawi; isolated populations occur in SW Sudan and SW Ethiopia. in Muridae
Distribution. Widespread in tropical Africa in Guinea-Bissau and from Sierra Leone and Guinea E to S South Sudan and W Kenya, and S to N Angola, S DR Congo, NE Zambia, SW Tanzania, and extreme N Malawi; isolated populations occur in SW Sudan and SW Ethiopia.
Distribution. SW Zimbabwe, E South Africa, and Swaziland; the range of the form cf. incomtus includes much of C Africa (Gabon, Republic of the Congo, DR Congo, Angola, Zambia, Malawi, and Mozambique). in Muridae
Distribution. SW Zimbabwe, E South Africa, and Swaziland; the range of the form cf. incomtus includes much of C Africa (Gabon, Republic of the Congo, DR Congo, Angola, Zambia, Malawi, and Mozambique).
Distribution. Widely distributed in tropical Africa from Dahomey Gap E to Ethiopia and S to N Angola, S DR Congo, and SW Tanzania. in Muridae
Distribution. Widely distributed in tropical Africa from Dahomey Gap E to Ethiopia and S to N Angola, S DR Congo, and SW Tanzania.
Distribution. Restricted to Lake Kivu region of the Albertine Rift (E DR Congo, Rwanda, and Burundi). in Muridae
Distribution. Restricted to Lake Kivu region of the Albertine Rift (E DR Congo, Rwanda, and Burundi).
Distribution. Widespread in tropical Africa from Volta River(Ghana) E through Congo Basin to the Albertine Rift (Uganda) and S to NW Angola (Cabinda) and SC DR Congo; occurs also on Bioko I. in Muridae
Distribution. Widespread in tropical Africa from Volta River(Ghana) E through Congo Basin to the Albertine Rift (Uganda) and S to NW Angola (Cabinda) and SC DR Congo; occurs also on Bioko I.
Distribution. Widely distributed in Congo Basin and Albertine Rift from the Niger River in W to shores of Lake Victoria in E; an isolated population occurs in NW Zambia and neighboring DR Congo. in Muridae
Distribution. Widely distributed in Congo Basin and Albertine Rift from the Niger River in W to shores of Lake Victoria in E; an isolated population occurs in NW Zambia and neighboring DR Congo.
Distribution. From the Rwenzori Mts in Uganda and DR Congo S to Albertine Rift Mts in Rwanda, Burundi, and neighboring DR Congo. in Muridae
Distribution. From the Rwenzori Mts in Uganda and DR Congo S to Albertine Rift Mts in Rwanda, Burundi, and neighboring DR Congo.
Subspecies and Distribution. D.f.ferrugineusThomas,1888—LowerCongo. D. f. christyi Thomas, 1915 — known only from the type locality in Poko, Uelle River, N DR Congo. Also present in Cameroon, Equatorial Guinea, Gabon, Uganda, Rwanda,Burundi, and NW Tanzania, but subspecies involved not known. in Muridae
Subspecies and Distribution. D.f.ferrugineusThomas,1888—LowerCongo. D. f. christyi Thomas, 1915 — known only from the type locality in Poko, Uelle River, N DR Congo. Also present in Cameroon, Equatorial Guinea, Gabon, Uganda, Rwanda,Burundi, and NW Tanzania, but subspecies involved not known.
Distribution. Central African Republic, Sudan, South Sudan, Ethiopia, NE DR Congo, Uganda, Kenya, Somalia, and N Tanzania. in Muridae
Distribution. Central African Republic, Sudan, South Sudan, Ethiopia, NE DR Congo, Uganda, Kenya, Somalia, and N Tanzania.
Distribution. Angola, S DR Congo, Tanzania, Zambia, Malawi, Namibia, Botswana, Zimbabwe, Mozambique (including Bazaruto I, off S coast), N South Africa, and Swaziland. in Muridae
Distribution. Angola, S DR Congo, Tanzania, Zambia, Malawi, Namibia, Botswana, Zimbabwe, Mozambique (including Bazaruto I, off S coast), N South Africa, and Swaziland.
Distribution. Sub-Saharan regions (Sahelo-Sudanian and Guinean savannas) from Guinea and Sierra Leone E to SW Ethiopia, Uganda, W Kenya, NE DR Congo, Rwanda, Burundi, and NW Tanzania. in Muridae
Distribution. Sub-Saharan regions (Sahelo-Sudanian and Guinean savannas) from Guinea and Sierra Leone E to SW Ethiopia, Uganda, W Kenya, NE DR Congo, Rwanda, Burundi, and NW Tanzania.
Distribution. Angola, DR Congo, Uganda, Rwanda,Burundi, SE Kenya, Tanzania, Zambia, and N Zimbabwe; possible presence in Sudan, South Sudan, and Ethiopia has not yet been clarified. in Muridae
Distribution. Angola, DR Congo, Uganda, Rwanda,Burundi, SE Kenya, Tanzania, Zambia, and N Zimbabwe; possible presence in Sudan, South Sudan, and Ethiopia has not yet been clarified.
Subspecies and Distribution. L.w.woosnam:Thomas,1906—RwenzoriMts,EDRCongoandSWUganda. L. w. prittiei Thomas, 1911 — highlands of Kigesi, Virunga Mts, and Nyungwe and Kibira forests, SW Uganda, E DR Congo, W Rwanda, and NW Burundi. Woosnam's Brush-furred Rats of a still undescribed form are present W of Lake Kivu in E DR Congo. in Muridae
Subspecies and Distribution. L.w.woosnam:Thomas,1906—RwenzoriMts,EDRCongoandSWUganda. L. w. prittiei Thomas, 1911 — highlands of Kigesi, Virunga Mts, and Nyungwe and Kibira forests, SW Uganda, E DR Congo, W Rwanda, and NW Burundi. Woosnam's Brush-furred Rats of a still undescribed form are present W of Lake Kivu in E DR Congo.
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information. in Muridae
Lophuromys stanley: is member of the L. flavopunctatus species complex and was named during partial revision of the L. aguilus species complex. It is characterized by craniometric and genetic character-istics; its skull proportions are similar to L. laticeps, and molecularly, it is similar to L. margarettae and L. zena (cytochrome-b). Lophuromys stanleyi is one of four endemic species in the Rwenzori Mountains diversity hotspot. Monotypic. Distribution. Rwenzori Mts, E DR Congo and SW Uganda. Descriptive notes. Head-body 113-126 mm, tail 40-80 mm, ear 16-19 mm, hindfoot 22-24 mm; weight 36-55 g. The Rwenzori Brush-furred Rat has a speckled pelage similar to other speciesin the L. flavopunctatus species complex. Tail is short, 50-60% of head-body length. Habitat. Poorly known, but type specimen was collected at an elevation of 3700 m. Food and Feeding. No information. Breeding. No information. Activity patterns. No information.
Lophuromys medicaudatus, L. woosnami, and L. luteogaster are in subgenus Kivumys and woosnami species group. Monotypic. Distribution. Endemic to the Albertine Rift, occurring around Lake Kivu in E DR Congo and Rwanda and SW Uganda (Bwindi). Descriptive notes. Head—body 92-112 mm, tail 73-95 mm, ear 15-19 mm, hindfoot 18-23 mm; weight 29-43 g. Similar to other species in subgenus Kivumys, the Western Rift Brush-furred Rat has unspeckled pelage, and tail ¢.85% of head-body length. Dorsum is uniform dark brown-olive, and venter is orange. Females have three pairs of mammae. Habitat. Mountain swamps and mountain forests at elevations of 1850-2500 m. Food and Feeding. The Western Rift Brush-furred Rat is omnivorous; diets contain 30-100% arthropods, mollusks, seeds, and fruits. Breeding. Female Western Rift Brush-furred Rats can have 1-2 embryos. Pregnant females were observed in February, April, and July. Activity patterns. The Western Rift Brush-furred Rat is terrestrial. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Vulnerable on The IUCN Red List. The Western Rift Brush-furred Rat has never been found in modified secondary environment and is quite rare. Bibliography. Dieterlen (1976b, 1987 2013g), Kasangaki et al. (2003), Verheyen et al. (1996). in Muridae
Lophuromys medicaudatus, L. woosnami, and L. luteogaster are in subgenus Kivumys and woosnami species group. Monotypic. Distribution. Endemic to the Albertine Rift, occurring around Lake Kivu in E DR Congo and Rwanda and SW Uganda (Bwindi). Descriptive notes. Head—body 92-112 mm, tail 73-95 mm, ear 15-19 mm, hindfoot 18-23 mm; weight 29-43 g. Similar to other species in subgenus Kivumys, the Western Rift Brush-furred Rat has unspeckled pelage, and tail ¢.85% of head-body length. Dorsum is uniform dark brown-olive, and venter is orange. Females have three pairs of mammae. Habitat. Mountain swamps and mountain forests at elevations of 1850-2500 m. Food and Feeding. The Western Rift Brush-furred Rat is omnivorous; diets contain 30-100% arthropods, mollusks, seeds, and fruits. Breeding. Female Western Rift Brush-furred Rats can have 1-2 embryos. Pregnant females were observed in February, April, and July. Activity patterns. The Western Rift Brush-furred Rat is terrestrial. Movements, Home range and Social organization. No information. Status and Conservation. Classified as Vulnerable on The IUCN Red List. The Western Rift Brush-furred Rat has never been found in modified secondary environment and is quite rare. Bibliography. Dieterlen (1976b, 1987 2013g), Kasangaki et al. (2003), Verheyen et al. (1996).
Network Theme: Continuous blood processing for patient specific therapies - Dr Robert Barker (University of Kent)
<p>This video is the third talk from our Future Blood Testing Network Plus Launch that took place on the 23/11/2021.</p> <p>Network Theme: Continuous blood processing for patient specific therapies - Dr Robert Barker (University of Kent)</p> <p>Bio: Dr Robert Barker is an Associate Professor in Chemistry in the School of Physical Sciences, School Director of Public Engagement, project lead for the ‘Future Human’ Signature Research, University of Kent (UoK). He is a Royal Society Industrial Fellow and the PI of the trans-disciplinary EPSRC project Optimising Me Manufacturing Systems [EP/R022534/1], exploring continuous blood processing for healthcare and developing a healthcare micro-factory that provides on-the-body manufacturing of therapeutics, continuously and in response to the body’s needs. His work focuses on the whole blood processing and the development of a manufacturing system for T-cell immunotherapies which present a cure for some of the most aggressive forms of cancer (acute lymphoblastic leukaemia and chronic lymphoblastic leukaemia). His research is at the interface of industry and the NHS to meet their needs for continuous blood monitoring and to help the shift away from the current one-size-fits-all approach to deliver patient-specific therapies.</p> <p>Further details on this event can be found at: https://futurebloodtesting.org/event/23-11-21-future-blood-testing-network-launch/</p> <p>This video is an output from the Future Blood Testing Network which is funded by EPSRC under Grant Number EP/W000652/1</p> <p>YouTube Link: https://youtu.be/T4UVEOM1cZU</p>
Network Theme: Sensor Technologies - Dr Sergiy Korposh (University of Nottingham)
<p>This video is the second talk from our Future Blood Testing Network Plus Launch that took place on the 23/11/2021.</p> <p>Network Theme: Sensor Technologies - Dr Sergiy Korposh (University of Nottingham)</p> <p>Bio: Dr Sergiy Korposh is an Associate Professor in Electronics, Nanoscale Bioelectronics and Biophotonics at University of Nottingham. His current research focuses on the development of fibre optic sensors and instrumentation for biomedical application from discovery at the interface with physics and chemistry through to application addressing major healthcare challenges. He has published over 100 (h-index 21) peer-reviewed journal and conference papers, book contributions, holds 11 patents (4 licensed to UK and Japanese companies) and given invited presentations at international meetings in the field of optical fibre chemical sensors. He has managed as a PI and Co-I a total funding portfolio of £3.5 million in the area of biomedical point of care sensors. He was a Director of the EPSRC funded Network Cyclops (EP/N026985/1, Closed Loop Control Systems for Optimising Treatment, http://www.healthcaretechnologies.ac.uk/cyclops/); with the aim to facilitate the formation of a community of academics, clinicians and industrialists, across multiple disciplines (photonic sensing, advanced materials, treatment, and mathematical modelling), including international collaborators to address grand challenges in automation of treatment in healthcare.</p> <p>Further details on this event can be found at: https://futurebloodtesting.org/event/23-11-21-future-blood-testing-network-launch/</p> <p>This video is an output from the Future Blood Testing Network which is funded by EPSRC under Grant Number EP/W000652/1</p> <p>YouTube Link: https://youtu.be/tv0JydXOdUI</p>
Network Theme: Digital and data-driven blood monitoring and analytics for patient centred care pathways - Dr Weizi (Vicky) Li (Henley Business School, University of Reading)
<p>This video is the fifth talk from our Future Blood Testing Network Plus Launch that took place on the 23/11/2021.</p> <p>Network Theme: Digital and data-driven blood monitoring and analytics for patient centred care pathways - Dr Weizi (Vicky) Li (Henley Business School, University of Reading).</p> <p>Bio: Dr Weizi (Vicky) Li is the PI of the Future Blood Testing Network, an Associate Professor of Informatics and Digital Health, Deputy Director in Informatics Research Centre, Henley Business School, University of Reading. She is an interdisciplinary researcher focusing on using informatics, data science, machine learning, and digital information systems to solve real-world healthcare challenges. She is the academic lead of a large collaborative project of Improving the Quality of Healthcare through an Integrated Clinical Pathway Management Approach and Cloud based Digital Data Integration Platform, which was awarded ESRC O2RB Excellence in Impact Award in 2018 for her research impact on healthcare quality improvement. She is the academic lead of machine learning based decision support system for outpatient management which has successfully been implemented in Royal Berkshire NHS Foundation Trust and has received Research Engagement and Impact award in 2020. She has been PI on projects funded by ESRC, EPSRC, The Health Foundation, NHS and companies, working on data-driven decision support systems that use real-world data (under privacy preserving framework) from multiple sources including Electronic Patient Record in acute, community hospital and primary care settings, remote health monitoring and patient reported outcomes to develop novel technologies (including AI based methods) to support clinical and operational decision makings in patient pathway.</p> <p>Further details on this event can be found at: https://futurebloodtesting.org/event/23-11-21-future-blood-testing-network-launch/</p> <p>This video is an output from the Future Blood Testing Network which is funded by EPSRC under Grant Number EP/W000652/1</p> <p>YouTube Link: https://youtu.be/egINC9hJifI</p>
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.