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FIGURE 3 in Thalictrum virgatum var. obtusifolium (Ranunculaceae), a new synonym of T. virgatum, with the new record of the morphologically similar Himalayan species T. secundum for China
FIGURE 3. Selected specimens of Thalictrum virgatum from northwestern Yunnan, China. A. Binchuan, F. Ducloux 7079 (P). B. Eryuan, J.M. Delavay s.n. (P). C. Ninglang, Y.F. Han et al. 81-1073 (PE). D. Shangri-la (previously known as Zhongdian), Q.E. Yang & Q. Yuan 2112 (PE).
FIGURE 8 in Thalictrum virgatum var. obtusifolium (Ranunculaceae), a new synonym of T. virgatum, with the new record of the morphologically similar Himalayan species T. secundum for China
FIGURE 8. Thalictrum secundum in the wild (Gyirong in southern Xizang, China). A. Habitat. B. Habit. C. Roots. D. Portion of stem. E. Leaves (left: adaxial side; right: abaxial side). F. Leaflets (left: adaxial side; right: abaxial side). G. Flowers. H. Sepals (adxial side). I. Stamens. J. Carpels. K. Aggregate fruit. L. Achenes (immature). A, B, E, K, L: photographed by Y.P. Zeng; C, D, G‒J: photographed by H.B. Ding; F: photographed by H.H. Xi.
GiCCS: A German in-Context Conversational Similarity Benchmark
<p>We introduce GiCCS, a first conversational STS evaluation benchmark for German. We collected the similarity annotations for GiCCS using best-worst scaling and presenting the target items in context, in order to obtain highly-reliable context-dependent similarity scores. In our paper, we present benchmarking experiments for evaluating LMs on capturing the similarity of utterances. Results<br> suggest that pretraining LMs on conversational data and providing conversational context can be useful for capturing similarity of utterances in dialogues. GiCCS will be publicly available to encourage benchmarking of conversational LMs.</p>
Textless Speech-to-Music Retrieval Using Emotion Similarity (Pretrained Model)
<p>- github: https://github.com/SeungHeonDoh/speech-to-music <br> - Demo : https://seungheondoh.github.io/speech-to-music-demo/<br> - ArXiv : update soon</p>
Coenogonium nimisii – a new isidiate epiphytic lichen similar to Porina rosei
<p>Final concatenated (ITS+mtSSU) mycobiont and rbcL photobiont alignments used in analyses of the paper.</p>
Data and code related to the manuscript "Perceptual stability reflected in neuronal pattern similarities in human visual cortex" (Broday-Dvir et al.)
<p>This data set contains intracranial EEG data, analysis code and results associated with the manuscript "<strong>Perceptual stability reflected in neuronal pattern similarities in human visual cortex". </strong></p> <p>The code is written in Matlab R2019b. Matlab's Signal Processing Toolbox is required. </p> <p>Files ending with ".mat" are the data files, ".m" files are the associated scripts.</p> <p>Additional open-source toolboxes required to run the codes:</p> <ul> <li><strong>Mass Univariate ERP Toolbox</strong> (<a href="https://openwetware.org/wiki/Mass_Univariate_ERP_Toolbox">https://openwetware.org/wiki/Mass_Univariate_ERP_Toolbox</a>), version: "dmgroppe-Mass_Univariate_ERP_Toolbox-d1e60d4". D. M. Groppe, T. P. Urbach, M. Kutas, Mass univariate analysis of event-related brain potentials/fields I: A critical tutorial review. <em>Psychophysiology</em>. <strong>48</strong>, 1711–1725 (2011).</li> <li><strong>DRtoolbox </strong>(https://lvdmaaten.github.io/drtoolbox/), version: 0.8.1b. L.J.P. van der Maaten, E.O. Postma, and H.J. van den Herik. <strong>Dimensionality Reduction: A Comparative Review</strong>. Tilburg University Technical Report, TiCC-TR 2009-005, 2009.</li> </ul> <p> </p>
FIGURE 2 in Characterization of leaf morphology of three species of Eremanthus (Vernonieae, Asteraceae): Untangling similar species
FIGURE 2. External morphological characteristics of the leaves of Eremanthus erythropappus (A, D, G, J, M and P), E. incanus (B, E, H, K, N and Q) and E. glomerulatus (C, F, I, L, O and R). A–C. Whole leaf. D–F. Petiole. G-I. Leaf base. J–L. Leaf apex. M–O. Adaxial surface of the leaf. P–R. Abaxial surface of the leaf.
FIGURE 1 in Characterization of leaf morphology of three species of Eremanthus (Vernonieae, Asteraceae): Untangling similar species
FIGURE 1. Location of the two collection areas: A. Map of Brazil indicating the region of the collection area in the state of Minas Gerais, B. Ecological Park Quedas do Rio Bonito (21º20'57.96" S and 44º59'18.80" W), C. Boqueir"o Reserve (21º19'45.58 "S and 44º58'21.62" W).
FIGURE 3 in Characterization of leaf morphology of three species of Eremanthus (Vernonieae, Asteraceae): Untangling similar species
FIGURE 3. Photomicrographs of the leaves of Eremanthus erythropappus (A, D and G), E. incanus (B, E and H) and E. glomerulatus (C, F and I): A–C. Cross section of the mesophyll. D–I. Cross section of the central rib. Abbreviations: EpAd = Adaxial Epidermis; EpAb = Abaxial Epidermis; PP = palisade parenchyma; PE = spongy parenchyma; FV = vascular bundle; Est = Stomata; Tt = Tector trichome; Col = Collenchyma; Esc = Sclereide. Scale bars: 100μm.
FIGURE 4 in Characterization of leaf morphology of three species of Eremanthus (Vernonieae, Asteraceae): Untangling similar species
FIGURE 4. Electromicrograph of the leaves of Eremanthus erythropappus (A and D), E. incanus (B and F) and E. glomerulatus (C and G): A–C. Adaxial surface of the leaf. D, F, G. Abaxial leaf surface. E. Detail of the non-glandular bladder-shaped trichome. Abbreviations: Tg = glandular trichome; Tt = Non-glandular trichome.
FIGURE 53 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 53. Alpheus euphrosyne De Man, 1897 complex in the northern and western Indian Ocean: A—Alpheus cf. mangalis sp. nov. (upper row) and A. euphrosyne (lower row) from an estuary near Kochi, India; B, C—Alpheus cf. eurydactylus De Man, 1920, ovigerious female (cl indet.) from Kochi, India (RMNH.Crus.D.49749), lateral view (B) and pleon and tail fan, dorsal view; D, E—Alpheus sp. euphrosyne complex (?), female photographed in situ in a mangrove at Watamu, Kenya. Photographs courtesy of Mahadevan Harikrishnan (A), Juan C. Miquel (B, C) and Dawn Goebbels (D, E).
FIGURE 51 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 51. Distributional maps for species of Alpheus treated in this study: A—A. eurphrosyne De Man, 1897; B—A. eurydactylus De Man, 1920; C—A. richardsoni Yaldwyn, 1971; D—A. microrhynchus De Man, 1897; E—A. cyanoteles Yeo & Ng, 1996; F—A. nomurai sp. nov.
FIGURE 52 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 52. Distributional maps for species of Alpheus treated in this study: A—A. takla sp. nov.; B—A. mangalis sp. nov. and A. cf. mangalis sp. nov.; C—A. songkla Banner & Banner, 1966 and A. cf. songkla (see text); D—A. paludicola Kemp, 1915, A. nipa Banner & Banner, 1985 and A. bunburius Banner & Banner, 1982; E—A. pontederiae de Rochebrune, 1883; F—A. firmus Kim & Abele, 1988 and A. cf. firmus (see text).
FIGURE 47 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 47. Alpheus pontederiae de Rochebrune, 1883: female (cl indet.) from Orinoco Delta, Venezuela (MZUSP) [A–E]; male (cl indet.) from the same locality (MZUSP) [F–H]; A—frontal region, dorsal view; B, F—major (left) cheliped, mesial view; C—same, lateral view; D—same, chela fingers opened, mesial view; E—minor (right) cheliped, mesial view; G—minor (right) cheliped, lateral view; H, same, chela, dorsal view.
FIGURE 49 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 49. Alpheus firmus Kim & Abele, 1988: female (cl indet.) [A] and male (cl indet.) [B] from Miraflores Locks, Panama Canal, Panama (specimens not deposited, see text); A, B—habitus, dorsal view. Photographs by the author.
FIGURE 46 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 46. Alpheus bunburius Banner & Banner, 1982: holotype, female (cl 13.7 mm) from Bunbury, Western Australia (WAM 271-65) [A–D]; A—third pereiopod, lateral view; B—same, propodus and dactylus, lateral view; C, D—same, dactylus in mesial [C] and dorsal [D] views (simple setae omitted in B–D). Alpheus richardsoni Yaldwyn, 1971: female (cl 9.5 mm) from Gold Coast, Queensland, Australia (OUMNH.ZC. 2009.09.16) [E–G]; E—third pereiopod, lateral view; F—same, distal part of propodus and dactylus, lateral view; G—same, dactylus, dorsal view (simple setae omitted in F, G).
FIGURE 45 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 45. Alpheus nipa Banner & Banner, 1985: paratype, male (cl indet., range: 6.2–7.5 mm) from off Medan, Sumatra, Indonesia (ZMUC CRU-7526); A—rostro-orbital region of carapace, dorsal view; B—frontal region, lateral view; C— ventromesial carina of first article of antennular peduncle, lateral view; D—antennal scaphocerite, dorsal view; E—third maxilliped, lateral view [arthrobranch not drawn]; F—same, detail of branchial structures on exopod, mesial view; G—major (right) cheliped, chela, mesial view; H—same, distal part of chela, fingers open, lateral view; I—second pleopod, appendices masculina and interna; J—right uropod, detail of distolateral angle, dorsal view.
FIGURE 43. Alpheus paludicola Kemp 1915 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 43. Alpheus paludicola Kemp 1915: paralectotype, male (cl 5.2 mm) from from Chilika Lake, India (NHM 1919.11.1.2) [A, C]; lectotype, male (cl 5.5 mm) from the same locality (NHM 1919.11.1.1) [B, D–H]; A—frontal region, dorsal view; B— same, lateral view; C—antennal scaphocerite (detached), dorsal view; D—major (left) cheliped, chela, carpus and distal part of merus, mesial view; E—same, lateral view; F—same, distal part of chela, fingers open, mesial view; G—minor (right) cheliped, lateral view (linea impressa omitted); H—same, chela, lateral view.
FIGURE 44 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 44. Alpheus nipa Banner & Banner, 1985: paratypes, males (cl 6.2–7.5 mm) from off Medan, Sumatra, Indonesia (ZMUC CRU-7526), detached chelipeds; A—major (right) cheliped, lateral view; B—same, mesial view; C—minor (right) cheliped, lateral view; D—same, dorsolateral view; E—same, mesial view.
FIGURE 40 in Revision of Alpheus euphrosyne De Man, 1897 and A. microrhynchus De Man, 1897, with description of three new species and taxonomic remarks on several other morphologically and ecologically similar snapping shrimps (Malacostraca: Decapoda: Alpheidae)
FIGURE 40. Alpheus mangalis sp. nov.: paratype, male (cl 9.8 mm) from Lim Chu Kang, Singapore (MNHN-IU-2018-5749) [A, B]; male (cl indet.) from Fannie Bay near Darwin, Northern Territory, Australia (NTM) [C]; male (cl 9.2 mm) from Lombok, Indonesia (OUMNH.ZC. 2019.06.65) [D, E]; A—frontal region and chelipeds, dorsal view; B—tail fan, dorsal view; C, D— habitus, dorsal view; E—major (left) chela, fingers opened, mesial view. Photographs by the author (A, B, D, E) and courtesy of Christopher J. Glasby (C).
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.