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93 results for “Historical Analysis”
FIGURE 30. Diversibipalium duplalaticlavium. RMNH.VER.21029.a in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 30. Diversibipalium duplalaticlavium. RMNH.VER.21029.a (field number RS580). A. Schematic drawing of the posterior part of the specimen after it accidentally broke into two parts. Anterior to the left.; B. Photograph of posterior part of the preserved specimen; C. Photograph of entire preserved specimen on its left side. The clear budge posterior to the white patches may correspond to the copulatory apparatus (cap?). Asterisks highlight white dorsal patches. Curly brackets indicate the part where mucus is not covering the body and the true brownish colouration can be distinguished.
FIGURE 6. Bipalium rhytidoantrum. RMNH.VER.20257.1 in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 6. Bipalium rhytidoantrum. RMNH.VER.20257.1 (field number KSL2401). Sagittal reconstruction (A) and photomicrograph of sagittal section (B) of the copulatory apparatus; anterior to the right.
FIGURE 26. Umbotectum flagellum. A in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 26. Umbotectum flagellum. A. Drawing of the anterior part of the preserved specimen; modified after de Beauchamp (1940). B. Reconstruction of the copulatory apparatus; modified after de Beauchamp (1940). Asterisk (*) indicates the characteristic flagellum present in this species.
FIGURE 29. Diversibipalium duplalaticlavium. RMNH.VER.21029.a in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 29. Diversibipalium duplalaticlavium. RMNH.VER.21029.a (field number RS580). Photographs. A. Dorsal view of preserved specimen; most of the specimen is covered by a mucus layer but at the posterior part the real brownish colouration can be distinguished; B. Dorsal view of the anterior part of the head; C. Ventral view.
FIGURE 3 in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 3. Calibrated tree on the basis of the ribosomal gene 18S, including a large number of representatives of the phylum Platyhelminthes. Calibration points (CP) indicated with filled blue circles on the nodes. Yellow bars represent highest posterior density (HPD) 95% confidence intervals for the estimated ages of the nodes. In this tree, Bornean Diversibipalium species D. contortolineatum (RMNH.VER.21030.b, field number RS581.1) and D. duplalaticlavium (RMNH.VER.21029.a, field number RS580) are set as sister to the rest of the Bipaliinae.
FIGURE 5. Bipalium rhytidoantrum. RMNH.VER.20257.1 in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 5. Bipalium rhytidoantrum. RMNH.VER.20257.1 (field number KSL2401). A and B. Photomicrographs of sagittal sections of the anterior part, showing various anatomical features; anterior to the right.
FIGURE 1 in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 1. Approximate native distribution (in yellow) of the subfamily Bipaliinae, modified from von Graff (1899) and Ogren et al. (1992). Localities of new species described in the present paper are indicated with numbers: 1) Bipalium rhytidoantrum; 2) B. rugiantrum; 3) Humbertium ithorense; 4) Novibipalium rhynchophorum; 5) Umbotectum capitofalcatum; 6) U. t-maculatum; 7) U. flagellum; 8) Diversibipalium marginatanigrum; 9) D. castaneum; 10) D. cephalolacteum; 11) D. contortolineatum; 12) D. duplalaticlavium. Introduced species (present worldwide, excepting Antarctica) have been excluded from the map.
FIGURE 4. Bipalium rhytidoantrum. A in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 4. Bipalium rhytidoantrum. A. Schematic drawing of a live specimen based on a photograph published by Yamamoto et al. (2003, Fig. 28) and on notes and drawings of the preserved specimen (B and C); scale bar not available; B and C. Schematic drawing of the dorsal side of the anterior (B) and posterior (C) parts of preserved holotype specimen RMNH.VER.20256.a (field number KSL2401). A small piece between these two parts was used for DNA extraction.
FIGURE 2. A in Molecular phylogenetics facilitates the first historical biogeographic analysis of the hammerhead worms (Platyhelminthes: Tricladida: Bipaliinae), with the description of twelve new species and two new genera
FIGURE 2. A. Bayesian phylogenetic tree obtained from three concatenated genes (COI, 18S, 28S), including most of the species described in the present work, plus other Bipaliinae representatives available from GenBank. Supports of Bayesian Inference (Posterior Probability) as well as Maximum Likelihood (Bootstrap) indicated at the nodes (PP/BS), with filled black circles denoting full support (1/100). Scale bar: substitutions per site. Geographic names in red in the right-hand column indicate that the species have been introduced into these regions and that the original distributional range is unknown, excepting D. multilineatum, which probably originates from Japan. Note that taxonomic assignment to the genus Bipalium has been restricted to those species from Japan that are anatomically similar to the type species B. fuscatum; B. Summary of the basic topology of the tree.
Data for articles in "Historical Network Analysis in the Study of Chinese Religion" (Special issue Religions 2023)
<p>This is the data for the seven articles collected in the special issue of <i>Religions</i> (2023) "Historical Network Analysis in the Study of Chinese Religion":</p><p> - Bingenheimer, Marcus. 2023. "Miyun Yuanwu 密雲圓悟 (1567–1642) and His Impact on 17th-Century Buddhism" Religions 14, no. 2: 248. https://doi.org/10.3390/rel14020248</p><p>- Chen, Song. 2023. "Patterns of Integration: A Network Perspective on Popular Religious Connections in China's Lower Yangzi, 1150–1350" Religions 14, no. 5: 577. https://doi.org/10.3390/rel14050577</p><p>- Chu, Ming-Kin. 2023. "Realizing the "Outwardly Regal" Vision in the Midst of Political Inactivity: A Study of the Epistolary Networks of Li Gang 李綱 (1083–1140) and Sun Di 孫覿 (1081–1169)" Religions 14, no. 3: 389. https://doi.org/10.3390/rel14030389</p><p>- Goossaert, Vincent. 2023. "The Social Networks of Gods in Late Imperial Spirit-Writing Altars" Religions 14, no. 2: 217. https://doi.org/10.3390/rel14020217</p><p>- Nehrdich, Sebastian. 2023. "Observations on the Intertextuality of Selected Abhidharma Texts Preserved in Chinese Translation" Religions 14, no. 7: 911. https://doi.org/10.3390/rel14070911</p><p>- Sokolova, Anna. 2023. "Regional Buddhist Communities in Tang China and Their Social Networks: The Network of Master Fayun (?–766)" Religions 14, no. 3: 335. https://doi.org/10.3390/rel14030335</p><p>- Van Cutsem, Laurent. 2023. "Lineages as Network: A Study of Chan Genealogy in the Zutang ji 祖堂集 Using Social Network Analysis" Religions 14, no. 2: 205. https://doi.org/10.3390/rel14020205</p>
Historical Data Analysis of Hematological Remission and Survival in Adults With R/R Acute Lymphoblastic Leukemia
ClinicalTrials.gov study NCT02003612. IPD Sharing: Not stated. Countries: 8. Publications: 2.
Data from: Whole genome-sequencing and phylogenetic analysis of a historical collection of Bacillus anthracis strains from Danish cattle
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Data from: Comparative analysis indicates historical persistence and contrasting contemporary structure in sympatric woody perennials of semi-arid south-west Western Australia
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Data from: Microevolution in time and space: SNP analysis of historical DNA reveals dynamic signatures of selection in Atlantic cod
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Data from: A phylogeographic, demographic and historical analysis of the short-tailed pit viper (Gloydius brevicaudus): evidence for early divergence and late expansion during the Pleistocene
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Data from: Range-wide analysis of genetic structure in a widespread, highly mobile species (Odocoileus hemionus) reveals the importance of historical biogeography
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Reconstructing the historical fauna of a large continental island: a multispecies reintroduction risk analysis
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Data from: Phylogeny, macroevolutionary trends and historical biogeography of sloths: insights from a Bayesian morphological clock analysis
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Haplotype analysis of the mitochondrial DNA d-loop region reveals the maternal origin and historical dynamics among the indigenous goat populations in east and west of the Democratic Republic of Congo (DRC)
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Figure 2 from: Piwowarczyk R, Schneider AC, Góralski G, Kwolek D, Denysenko-Bennett M, Burda A, Ruraż K, Joachimiak AJ, Pedraja ÓS (2021) Phylogeny and historical biogeography analysis support Caucasian and Mediterranean centres of origin of key holoparasitic Orobancheae (Orobanchaceae) lineages. PhytoKeys 174: 165-194. https://doi.org/10.3897/phytokeys.174.62524
Figure 2 Rooted Maximum Likelihood phylogenetic tree constructed using plastid trnL–trnF spacer sequences. As an outgroup, Lindenbergia sinaica was used. Numbers near branches show ultrafast bootstrap values (values ≥ 75 are shown). The bar represents the amount of genetic change (nucleotide substitutions per site) A summary of backbone (generic) relationships BPhelipanche clade COrobanche clade. Species names, the country of origin, host species (if available) and GenBank number are included on the phylogeny tip labels.
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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.