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104 results for “Y Combinator”
Text-fig. 6. Scatter diagram of length and width of M1 specimens in Progonomys hussaini and Karnimata fejfari from localities Y 259, 450, 311. The solid line ellipse is a 55% concentration ellipse for P. hussaini, and the dashed ellipse is a 55% concentration ellipse for Karnimata fejfari, all specimens combined. in Early Late Miocene Murine Rodents From The Upper Part Of The Nagri Formation, Siwalik Group, Pakistan, With A New Fossil Calibration Point For The Tribe Apodemurini (Apodemus/Tokudaia)
Text-fig. 6. Scatter diagram of length and width of M1 specimens in Progonomys hussaini and Karnimata fejfari from localities Y 259, 450, 311. The solid line ellipse is a 55% concentration ellipse for P. hussaini, and the dashed ellipse is a 55% concentration ellipse for Karnimata fejfari, all specimens combined.
Supplementary material 1 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Taxon, voucher information and GenBank accession number of the samples used in the phylogenetic analyses.
Supplementary material 5 from: Tochihara Y, Hosoya T (2022) Examination of the generic concept and species boundaries of the genus Erioscyphella (Lachnaceae, Helotiales, Ascomycota) with the proposal of new species and new combinations based on the Japanese materials. MycoKeys 87: 1-52. https://doi.org/10.3897/mycokeys.87.73082
Figure S5. ML best-scored phylogenetic tree based on concatenated dataset of ITS1, 5.8S, and ITS2 constructed by RAxML-NG
Supplementary material 1 from: Ge Z-W, Jacobs A, Vellinga EC, Sysouphanthong P, van der Walt R, Lavorato C, An Y-F, Yang ZL (2018) A multi-gene phylogeny of Chlorophyllum (Agaricaceae, Basidiomycota): new species, new combination and infrageneric classification. MycoKeys 32: 65-90. https://doi.org/10.3897/mycokeys.32.23831
Figure S1. Maximum Likelihood tree showing the monophyly of Chlorophyllum inferred from the rpb2 data set : Explanation note: Bootstrap values (>50) are indicated along nodes. The clade where Chlorophyllum species are nested is highlighted in grey.
Efficacy of Ciclesonide vs Fixed Combination of Fluticasone Propionate/Salmeterol vs Placebo in Patients With Mild Persistent Asthma (12 to 75 y) (BY9010/M1-132)
ClinicalTrials.gov study NCT00163358. IPD Sharing: Not stated. Countries: 7. Publications: 1.
The Purpose of This Research Study is to See if Combining Gemcitabine, Cisplatin and Durvalumab Chemotherapy Treatments With a Direct Tumor Therapy Yittrium-90 (Y-90) Will Work Better Together to Shri
ClinicalTrials.gov study NCT05422690. IPD Sharing: NO. Countries: 1. Publications: 25.
Yttrium Y 90 Basiliximab and Combination Chemotherapy Before Stem Cell Transplant in Treating Patients With Mature T-cell Non-Hodgkin Lymphoma
ClinicalTrials.gov study NCT02342782. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Rituximab, Combination Chemotherapy, and Yttrium Y 90 Ibritumomab Tiuxetan in Treating Patients With Relapsed Follicular Non-Hodgkin Lymphoma
ClinicalTrials.gov study NCT00637832. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Combined Y-90 Selective Internal Radiation Therapy (Y-90 SIRT) and Stereotactic Body Radiation Therapy (SBRT) in Hepatic Malignancy.
ClinicalTrials.gov study NCT04518748. IPD Sharing: NO. Countries: 1. Publications: 0.
Figure 1 from: Ding H-B, Yang B, Maw MB, Win PP, Tan Y-H (2020) A new species and two new combinations of Monolophus (Zingiberaceae) from Indo-Burma. In: Jin X-H, Xia N-H, Tan Y-H (Eds) Plant diversity of Southeast Asia-II. PhytoKeys 138: 155-162. https://doi.org/10.3897/phytokeys.138.39217
Figure 1 Monolophus odontochilus Y.H. Tan & H.B. Ding, sp. nov. A habitat B ligule C leaf blade abaxially D habit E single leaf (adaxially and abaxially) F flower (side view) G flower (front view) H anther with stigma and crest (front and back view) I stigma J dorsal corolla lobe K lateral corolla lobes L bracts M bracteoles and young flower N calyx O ovary P labellum and floral tube Q lateral staminodes R stamen and stigma S ovary with style. Photographed by H.B.Ding
Figure 5 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Figure 5 Geographical distribution of Oreocharis guileana (green dot), O. baolianis (red triangle) and O. pilosopetiolata (blue square).
Figure 3 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Figure 3 Bayesian (> 50%) tree resulting of the combined nuclear (ITS) and plastid (trnL-F) data matrices. Posterior probability (PP) from the BI analysis are indicated above branches and Bootstrap value (BS) from the ML analysis are indicated below. The asterisk indicates a BS < 50. The dash indicates the topological discordance between ML and Bayesian tree. The two species, O. baolianis and O. guileana, are highlighted in bold.
Figure 1 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Figure 1 Photographs of Oreocharis guileana (A–H), O. pilosopetiolata (I), Boeica ferruginea (J) and Beccarinda tonkinensis (K). A, E, I habit B, C flower D opened corolla, showing stamens and staminodes F pistil G, H, J, K mature fruit.
Figure 4 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Figure 4 Somatic metaphase chromosome spreads of Oreocharis guileana, 2n = 34 (A), O. baolianis, 2n = 34 (B), Beccarinda tonkinensis, 2n = 20 (C) and Boeica stolonifera, 2n = 20 (D). Scale bar: 10 μm.
Figure 2 from: Yang L-H, Wen F, Kong H-H, Sun Z-X, Su L-Y, Kang M (2020) Two new combinations in Oreocharis (Gesneriaceae) based on morphological, molecular and cytological evidence. In: Shui Y-M, Chen W-H, Ren M-X, Wen F, Hong X, Qiu Z-J, Wei Y-G, Kang M (Eds) Taxonomy of Gesneriaceae in China and Vietnam. PhytoKeys 157: 43-58. https://doi.org/10.3897/phytokeys.157.32609
Figure 2 Photographs of Oreocharis baolianis. A–C Habit D, E flower F, H opened corolla, showing stamens and staminodes G anthers I pistil J mature fruit.
Figure 3 from: Zhao W-Y, Fritsch PW, Liu Z-C, Fan Q, Jin J-H, Liao W-B (2020) New combinations and synonyms in Rehderodendron (Styracaceae). PhytoKeys 161: 79-88. https://doi.org/10.3897/phytokeys.161.54970
Figure 3 A lectotype of Rehderodendron macrophyllum (Yu Ping-Hua s.n. [KUN (acc. # KUN0026237)] B isotype of R. truongsonense (Ulf Swenson, Do Van Truong, Hoang Manh Quyen & Sylvain Razaflimandimbison 2131 [P00937133]).
Figure 2 from: Zhao W-Y, Fritsch PW, Liu Z-C, Fan Q, Jin J-H, Liao W-B (2020) New combinations and synonyms in Rehderodendron (Styracaceae). PhytoKeys 161: 79-88. https://doi.org/10.3897/phytokeys.161.54970
Figure 2 Inflorescences of Rehderodendron burmanicum, Pterostyrax corymbosus Siebold & Zucc. and R. microcarpum. A inflorescence of R. burmanicum, showing flowering shoots comprising only inflorescences, flowers not strictly arranged on one side of ultimate inflorescence branches and (red arrow) stamens longer than the petals B inflorescence of P. corymbosus, showing flowering shoots comprising both inflorescences and (red arrow) leaves and flowers arranged on one side of ultimate inflorescence branches C inflorescences of R. microcarpum, showing flowering shoots comprising only inflorescences, flowers not strictly arranged on one side of ultimate inflorescence branches and stamens that are shorter than the petals. (Photographs: A from the holotype of R. burmanicumB by Wan-Yi Zhao from Jinggangshan, Jiangxi, China C by Wan-Yi Zhao from Gongshan, Yunnan, China).
Figure 4 from: Zhao W-Y, Fritsch PW, Liu Z-C, Fan Q, Jin J-H, Liao W-B (2020) New combinations and synonyms in Rehderodendron (Styracaceae). PhytoKeys 161: 79-88. https://doi.org/10.3897/phytokeys.161.54970
Figure 4 Morphology of Rehderodendron macrophyllum and R. macrocarpum Hu. A–DRehderodendron macrophyllumA branchlet and leaf B fruiting branch C young fruit D transverse section of fruit showing endocarp with many rays intruding into the mesocarp E fruit transverse section of R. macrocarpum. (Photographs: A–D by Wan-Yi Zhao from Hekou, Yunnan, China E by Wan-Yi Zhao rom Wawushan, Sichuan, China).
Figure 6 from: Wang L-H, Liu S, Tang Y-J, Chen Y-P, Wu J, Li J-L (2020) Using the combined gene approach and multiple analytical methods to improve the phylogeny and classification of Bombus (Hymenoptera, Apidae) in China. ZooKeys 1007: 1-21. https://doi.org/10.3897/zookeys.1007.34105
Figure 6 Phylogenetic relationships of the subgenera of Bombus from the Bayesian Inference tree (Fig. 2); nearly all of them are well supported by posterior probabilities.
Figure 4 from: Wang L-H, Liu S, Tang Y-J, Chen Y-P, Wu J, Li J-L (2020) Using the combined gene approach and multiple analytical methods to improve the phylogeny and classification of Bombus (Hymenoptera, Apidae) in China. ZooKeys 1007: 1-21. https://doi.org/10.3897/zookeys.1007.34105
Figure 4 Estimated phylogeny of the same samples using both new sequences and sequences from Cameron et al. (2007), based on five combined gene sequences (mitochondrial gene 16S rRNA, nuclear genes Opsin, ArgK, EF-1α, and PEPCK) analyzed by Maximum Likelihood. Values on the branches are the bootstrap values, (C) represents Cameron et al.'s species, and "BG" represents our species. The bold font indicates species from both datasets that did not cluster together into monophyletic clades.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.