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FIGURE 6 in Description of three new species of the genus Mata Distant, 1906 (Hemiptera Cicadidae: Cicadinae: Oncotympanini) with notes on their natural history from Indian state of Meghalaya, India
FIGURE 6. Mata ruffordii sp. nov. A: Lateral view of paratype in habitus (NCBS-BI002). B: Dorsal view of paratype in habitus (NCBS-BI002). C: Ventral view of paratype in habitus (NCBS-BI002). D: Close up dorsal view of paratype in habitus (NCBS-BI002). (Copyright and photographed by Vivek Sarkar.)
FIGURE 4 in Description of three new species of the genus Mata Distant, 1906 (Hemiptera Cicadidae: Cicadinae: Oncotympanini) with notes on their natural history from Indian state of Meghalaya, India
FIGURE 4. Mata lenonia sp. nov. A: Dorsal view of holotype (NCBS-AH292). B: Ventral view of holotype (NCBS-AH292). C: Lateral view of male timbal cover (NCBS-AH292). D: Dorsal view of male timbal cover (NCBS-AH292). (Copyright: NCBS and photographed by Vivek Sarkar.)
FIGURE 3 in Description of three new species of the genus Mata Distant, 1906 (Hemiptera Cicadidae: Cicadinae: Oncotympanini) with notes on their natural history from Indian state of Meghalaya, India
FIGURE 3. Mata lenonia sp. nov. A: Lateral view of holotype in habitus (NCBS-AH292). B: Dorsal view of holotype in habitus (NCBS-AH292). C: Habitat of the holotype. (Copyright and photographed by Vivek Sarkar.)
FIGURE 2. Mata rama Distant, 1912 A in Description of three new species of the genus Mata Distant, 1906 (Hemiptera Cicadidae: Cicadinae: Oncotympanini) with notes on their natural history from Indian state of Meghalaya, India
FIGURE 2. Mata rama Distant, 1912 A: Dorsal view of holotype. B: Ventral view of holotype. C: Dorsal view of the timbal cover. (Copyright: Trustees of the Natural History Museum, London. Photographed by BW Price and EL Allan.)
FIGURE 1 in Description of three new species of the genus Mata Distant, 1906 (Hemiptera Cicadidae: Cicadinae: Oncotympanini) with notes on their natural history from Indian state of Meghalaya, India
FIGURE 1. Mata kama (Distant, 1881) A: Dorsal view of holotype. B: Ventral view of holotype. C: Dorsal view of the timbal cover. (Copyright: Trustees of the Natural History Museum, London. Photographed by BW Price and EL Allan.)
Data from: The interactions of ethical notions and moral values of immediate stakeholders of immunisation services in two Indian states: a qualitative study
OBJECTIVES: This study examines the existing norms regarding immunization within the communities and the ethical notions that govern the action of different health professionals and their collective synergistic or conflicting effect on governance of the programme. Design: We used descriptive and analytical qualitative methods as it suited the research question. SETTING: The data was collected from areas under 16 Primary Health Centres in Kerala and Tamil Nadu identified through three-step sampling process. PARTICIPANTS: This involved in-depth interview with stakeholders including providers, beneficiaries and other stakeholders, focus group discussions with mother of under five children and participant and non-participant observations of vaccination related activities. RESULTS: Unlike most other ethical analysis that looks at ethics of vaccination policies, the interactions of normative principles and notions are analysed in this article. Moral obligation of parents towards their children, beneficence of health care providers and the utilitarian aspirations of the state are the key normative principles involved. Our analysis points to the interplay of both synergy and conflict in ethical notions and moral values in the context of immunisation services. Paternalistic interventions like special immunisation campaigns against polio and Japanese encephalitis are a case in point: they generate conflict at the normative level and create mistrust. CONCLUSIONS: Analysis of vaccination policies and programmes need to go beyond factors that assess monitory benefits or herd immunity. Understanding the interactions normative notions that shape the social organisation of the providers and the users of vaccination is important in creating a sustainable environment for the programme.
FIGURE 5. Ichthyophis moustakius, BNHS 5215 in Three new species of striped Ichthyophis (Amphibia: Gymnophiona: Ichthyophiidae) from the northeast Indian states of Manipur and Nagaland
FIGURE 5. Ichthyophis moustakius, BNHS 5215 (paratype). A. Dorsolateral view in life, B. Dorsolateral view of head in life, C. Ventral view in life, D. Dorsal view of head in preservation, E. Ventral view of head in life, F. Ventral view of body terminus in life.
FIGURE 7 in Three new species of striped Ichthyophis (Amphibia: Gymnophiona: Ichthyophiidae) from the northeast Indian states of Manipur and Nagaland
FIGURE 7. Holotype of Ichthyophis sendenyu, BNHS 5221. A. Anterodorsal view in life, B. Dorsolateral view of head in life, C. Ventral view in life, D. Dorsal view of head in preservation, E. Ventral view of head in life, F. Ventral view of body terminus in life.
FIGURE 1 in Three new species of striped Ichthyophis (Amphibia: Gymnophiona: Ichthyophiidae) from the northeast Indian states of Manipur and Nagaland
FIGURE 1. Distribution map of Ichthyophis species from northeast India: 1. I. khumhzi, 2. I. moustakius, 3. I. sendenyu, 4. I. sikkimensis, 5. I. husaini, 6. I. garoensis. Positioning of symbols is approximate.
Distribution. SW Amazonian Brazil (Rondonia State), known only from José Bonifacio Indian Village (12° 10" S and 60° 09' W), where initially collected in 1914, and Pimenta Bueno (12° 12' S and 60° 41° W). in Ctenomyidae
Distribution. SW Amazonian Brazil (Rondonia State), known only from José Bonifacio Indian Village (12° 10" S and 60° 09' W), where initially collected in 1914, and Pimenta Bueno (12° 12' S and 60° 41° W).
In 2017, Plantix, a free smartphone app that helps identify plant damage, was introduced to the Indian state of Andhra Pradesh, with an extension partner. Plantix was created by Progressive Environmental and Agricultural Technologies (PEAT), a German startup. Two PEAT cofounders, Charlotte Schuman (second from the right) and Alex Kennepohl (center, with eyeglasses), confer about the smartphone app with students from Angrau University. Farmers and gardeners can transmit their plant images to Plantix, which uses deep learning and computer vision to help identify diseases and pests. The smartphone app offers symptom descriptions, treatment recommendations, and potential preventive actions. Photographs: Courtesy of PEAT GmbH. in Deep learning brings speed, accuracy to the life sciences.
In 2017, Plantix, a free smartphone app that helps identify plant damage, was introduced to the Indian state of Andhra Pradesh, with an extension partner. Plantix was created by Progressive Environmental and Agricultural Technologies (PEAT), a German startup. Two PEAT cofounders, Charlotte Schuman (second from the right) and Alex Kennepohl (center, with eyeglasses), confer about the smartphone app with students from Angrau University. Farmers and gardeners can transmit their plant images to Plantix, which uses deep learning and computer vision to help identify diseases and pests. The smartphone app offers symptom descriptions, treatment recommendations, and potential preventive actions. Photographs: Courtesy of PEAT GmbH.
FIGURE 6 in Description of two new species of torrent frog, Amolops Cope (Anura: Ranidae) from a degrading forest in the northeast Indian state of Nagaland
FIGURE 6. Habitat photograph depicting the current scale of habitat destruction of the primary stream (main) ca. 30 m from the adjoining side stream and collection locality of Amolops nidorbellus sp. nov. and Amolops kohimaensis sp. nov. (inset).
FIGURE 4 in Description of two new species of torrent frog, Amolops Cope (Anura: Ranidae) from a degrading forest in the northeast Indian state of Nagaland
FIGURE 4. Holotype of Amolops kohimaensis sp. nov. (ZSI A 10972) in preservation: A. dorsal view, B. ventral view, C. lateral view of head, D. anterior dorsal view, E. anterior ventral view, F. ventral view of hand, G. ventral view of foot.
FIGURE 2 in Description of two new species of torrent frog, Amolops Cope (Anura: Ranidae) from a degrading forest in the northeast Indian state of Nagaland
FIGURE 2. Holotype of Amolops nidorbellus sp. nov. (ZSI A 10965) in preservation: A. dorsal view, B. ventral view, C. lateral view of head, D. anterior dorsal view, E. anterior ventral view, F. ventral view of hand, G. ventral view of foot.
FIGURE 1 in Description of two new species of torrent frog, Amolops Cope (Anura: Ranidae) from a degrading forest in the northeast Indian state of Nagaland
FIGURE 1. Map of northeast India showing the type locality of the new Amolops species: 1. Amolops nidorbellus sp. nov., 2. Amolops kohimaensis sp. nov.. Positioning of symbols is approximate; for exact coordinates, see text.
FIGURE 5 in Description of two new species of torrent frog, Amolops Cope (Anura: Ranidae) from a degrading forest in the northeast Indian state of Nagaland
FIGURE 5. Referred specimen of Amolops kohimaensis sp. nov. (SDB 2007.129) in dorsal view showing typical live colouration.
FIGURE 3 in A new species of Aconitum (Ranunculaceae) from Indian Eastern Himalayan state of Sikkim
FIGURE 3. Aconitum sikkimensis: A, C. Flower side and front view; E. Upper sepal; G. Lateral Sepal; I. Lower sepal; K. Petal; M. Stamens; O. Carpel; Aconitum hookeri: B, D. Flower side and front view; F. Upper sepal; H. Lateral Sepal; J. Lower sepal; L. Petal; N. Stamens; P. Carpels.
FIGURE 2 in A new species of Aconitum (Ranunculaceae) from Indian Eastern Himalayan state of Sikkim
FIGURE 2. Aconitum sikkimensis: A. Habitat; B. Flowers; C. Leaves; D. Inflorescence; Aconitum hookeri: E, F. Habitat; G, H. Flowers.
Data from: The interactions of ethical notions and moral values of immediate stakeholders of immunisation services in two Indian states: a qualitative study
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FIGURE 13 in Description of three new species of the genus Mata Distant, 1906 (Hemiptera Cicadidae: Cicadinae: Oncotympanini) with notes on their natural history from Indian state of Meghalaya, India
FIGURE 13. Mata meghalayana sp. nov. A,B,C,D: Cards for Identification by Acoustics (CIA).
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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.