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Figure 7 from: Kurina O, Mantič M, Ševčík J (2017) A remarkable new genus of Keroplatidae (Insecta, Diptera) from the Afrotropical region, with DNA sequence data. African Invertebrates 58(1): 93-105. https://doi.org/10.3897/afrinvertebr.58.12655
Figure 7 - Kibaleana apicospinosa sp. n., male terminalia. A Dorsal view B Tergite IX and cerci, dorsal view C Tergite IX, cerci and hypoproct, ventral view D Male terminalia, dorsal view, tergite IX detached E Aedeagal complex, dorsal view F Medial part of gonocoxite, ventral view G Basal part of gonostylus, dorsal view H Apical part of gonostylus, ventral view. Abbreviations: aed = aedeagus; aed ap = aedeagal apodeme; cer = cercus; ej ap = ejaculatory apodeme; gc = gonocoxite; gc ap = gonocoxal apodeme; gc vmp = ventromedial process of gonocoxite; gst = gonostylus; gst bp = basal process of gonostylus; hyp = hypoproct; par = paramere; par ap = parameral apodeme; tg 9 = tergite IX.
Figure 4 from: Kurina O, Mantič M, Ševčík J (2017) A remarkable new genus of Keroplatidae (Insecta, Diptera) from the Afrotropical region, with DNA sequence data. African Invertebrates 58(1): 93-105. https://doi.org/10.3897/afrinvertebr.58.12655
Figure 4 - Kibaleana apicospinosa sp. n., male. A Head, frontal view B Compound eye, closer view C Head, frontal view D Maxillary palpus, posterior view. Abbreviations: clyp = clypeus; eye = compound eye; fc = face; flgm = flagellomeres; fr = frons; lbl = labellum; lin = lingua; l oc = lateral ocellus; m oc = medial ocellus; ped = pedicel; plp = segments of maxillary palpus; scp = scape.
Figure 6 from: Kurina O, Mantič M, Ševčík J (2017) A remarkable new genus of Keroplatidae (Insecta, Diptera) from the Afrotropical region, with DNA sequence data. African Invertebrates 58(1): 93-105. https://doi.org/10.3897/afrinvertebr.58.12655
Figure 6 - Kibaleana apicospinosa sp. n., apical part of tibia and basal part of first tarsal segment, male. A Fore leg B Mid leg C Hind leg D Fore leg, closer view. Abbreviations: acmb = apical comb of setae; t = fore, mid and hind tibiae.
Figure 3 from: Kurina O, Mantič M, Ševčík J (2017) A remarkable new genus of Keroplatidae (Insecta, Diptera) from the Afrotropical region, with DNA sequence data. African Invertebrates 58(1): 93-105. https://doi.org/10.3897/afrinvertebr.58.12655
Figure 3 - Kibaleana apicospinosa sp. n., male. A General habitus, lateral view B Head and thorax, lateral view C Fourth segment of flagellum, lateral view D Head, lateral view E Claw, lateral view F Claw, dorsal view. Abbreviations: abd = abdomen; anepst = anepisternum; anepm = anepimeron; aprnt = antepronotum; cx = coxa; eye = compound eye; flgm = flagellar segment; fr = frons; hlt = halter; ltg = laterotergite; mtepst = metepisternum; mtg = mediotergite; mx plp = maxillary palpus; oc tr = ocellar triangle; ped = pedicel; png = postgena; preepst 2 = preepisternum 2; sc = scutum; scp = scape; vrt = vertex; wg = wing.
Figure 5 from: Kurina O, Mantič M, Ševčík J (2017) A remarkable new genus of Keroplatidae (Insecta, Diptera) from the Afrotropical region, with DNA sequence data. African Invertebrates 58(1): 93-105. https://doi.org/10.3897/afrinvertebr.58.12655
Figure 5 - Kibaleana apicospinosa sp. n., male. A Wing, dorsal view B Head and thorax, dorsal view. Abbreviations: A = anal vein; acr s = acrostichal setae; C = costal vein; Cu = branches of cubitus; dc s = dorsocentral setae; h = humeral vein; l s = lateral setae; M = branches of media; m-cu = medio-cibital crossvein; mtg = mediotergite; R = branches of radius; r-m = radio-medial crossvein; Sc = subcostal vein; sc = scutum; sctl = scutellum; tb = basal transversal.
RNA sequencing data of gene expression of human chondrocytes cultured at 33℃ or 37 ℃
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Reanalysis of Single-Cell Sequencing Data from Healthy and Periodontitis Patients: Characterization of Oral Epithelial Cells
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Sequencing data
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Fig. 4 in Morphology and Sequence Data of Mexican Populations of the Ciliate Parasite of Marine Fishes Trichodina rectuncinata (Ciliophora: Trichodinidae)
Fig. 4. Maximum likelihood of sequences of the 18S gene of trichodinids of the genus Trichodina and Trichodinella, emphasizing on Trichodina rectuncinata. Numbers near internal nodes show the bootstrap values. Codes: ♦ Cuatunalco; * Zihuatanejo; ● San Carlos.
Fig. 13 in Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico
Fig. 13 Schematic drawing modified from Southward et al. (2005) comparing the different body regions of a vestimentiferans, b Sclerolinum, and c frenulates. Abbreviations: cl = cephalic lobe; dlf = dorsolateral folds; dp = diaphragm; fp = forepart; mr = metameric region; ob = obturaculum; op = opisthosoma; te = tentacle; tr = trunk; ve = vestimentum
Fig. 9 in Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico
Fig. 9 Ultrastructure of pyriform glands of forepart a-e and trunk f. a Pyriform gland anterior to the frenulum b with cytoplasm containing amorphous secretion products (asterisk) and rER. c Pyriform gland posterior to the frenulum d with cytoplasm characterized by electrondark granules (asterisk) and Golgi complexes. e Detail of a pyriform
Fig. 8 in Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico
Fig. 8 Ultrastructure of body wall layer and nervous system. a Body wall of tentacle composed of vascularized epidermis and a single layer of longitudinal muscle cells; in between the basal matrix (arrowhead). b Detail of ventral ciliated field of the forepart showing neuropil of one cord of the bifurcated ventral nerve and small nerves (arrow head) in- nervating the ciliated cells. c Ciliated cells forming part of the dorsal furrow of a male specimen. d Ventral nerve cord and body wall layer of the posterior trunk region. Abbreviations: bc = bacteriocyte; bl = blood lacuna; cc = coelomic cavity; cf = ciliated field; cu = cuticle; ep = epidermis; mc = myocyte; ml = body wall muscle layer; mm = median mesentery; np = neuropil; vv ventral blood vessel
Fig. 6 in Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico
Fig. 6 Semithin section series of anterior trunk region with only a few bacteriocytes embedded within a non-symbiotic mesenchyme (a-b) and posterior trunk region with massive bacteriocyte tissue (c-d). a Lateral pyriform glands opening into epidermal papillae devoid of cuticular plaques; dorsal blood vessel clogged by the intravasal body. b Ventral and dorsal blood vessel connecting to blood lacunae (arrowhead); epidermis with papilla bearing cuticular plaque (double arrowhead). c Posterior end of the trophosome showing bacteriocytes
Fig. 5 in Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico
Fig. 5 Region of genital openings and muscles encircling the dorsal blood vessel (arrowhead) (LM). a Transverse section of female immediately posterior to the dorsal furrow showing the opening of a single oviduct (arrow). b Transverse section of a male at the end of the ciliated grooves showing the genital papillae and the openings of the
Fig. 3 Erythraeus phalangoides, adult. a Palp, medial view. b Crista metopica and eyes. c Dorsal opisthosomal setae. d in Towards resolving the double classification in Erythraeus (Actinotrichida: Erythraeidae): matching larvae with adults using 28S sequence data and experimental rearing
Fig. 3 Erythraeus phalangoides, adult. a Palp, medial view. b Crista metopica and eyes. c Dorsal opisthosomal setae. d Serratala on genu I. e Serratala on genu IV. f Diversity of serratalae on telofemora, genua, and tibiae of legs I–IV
Fig. 1 in Towards resolving the double classification in Erythraeus (Actinotrichida: Erythraeidae): matching larvae with adults using 28S sequence data and experimental rearing
Fig. 1 Majority-rule consensus from the non-clock Bayesian phylogenetic analysis of 28S from Erythraeus larvae and postlarval instars sampled in the field. Numbers above branches denote posterior probability values. The clusters of Erythraeus cinereus, E. regalis, E. sp. 1, and E. sp. 2 have both larvae (gray) and adults (black) included. Curteria episcopalis was used as outgroup to root the tree
Fig. 2 in Towards resolving the double classification in Erythraeus (Actinotrichida: Erythraeidae): matching larvae with adults using 28S sequence data and experimental rearing
Fig. 2 Ultrametric clock tree from Beast showing the maximum likelihood solution of the generalized mixed Yule coalescent model (GMYC). Red lines (thinner lines on the right side of the graph) indicate within-species branches, and black lines (thicker lines on the left side of the graph) represent between-species branches as inferred by the GMYC model
Fig. 3 in Morphology, microanatomy and sequence data of Sclerolinum contortum (Siboglindae, Annelida) of the Gulf of Mexico
Fig. 3 General morphology (LM). a Anterior end of the worm within the transparent and collapsed anterior part of the tube. b Forepart with dorsal furrow and frenulum consisting of cuticular plaques arranged in a row. c Frenulum of other specimen consisting of scattered cuticular
Figure 8 from: Tibpromma S, Hyde K, Bhat J, Mortimer P, Xu J, Promputtha I, Doilom M, Yang J, Tang A, Karunarathna S (2018) Identification of endophytic fungi from leaves of Pandanaceae based on their morphotypes and DNA sequence data from southern Thailand. MycoKeys 33: 25-67. https://doi.org/10.3897/mycokeys.33.23670
Figure 8 Cladosporium endophyticum (MFLU 18-0005, holotype). a Colony on MEA media b Mycelium masses c–e Conidia and conidiogenous cells f, g Conidia h Conidia and conidiogenous cells. Scale bars: 5 µm (b–h), 10 µm (h).
Figure 9 from: Tibpromma S, Hyde K, Bhat J, Mortimer P, Xu J, Promputtha I, Doilom M, Yang J, Tang A, Karunarathna S (2018) Identification of endophytic fungi from leaves of Pandanaceae based on their morphotypes and DNA sequence data from southern Thailand. MycoKeys 33: 25-67. https://doi.org/10.3897/mycokeys.33.23670
Figure 9 Phylogram generated from maximum likelihood analysis based on ITS, TEF1, SSU, LSU and RPB2 sequenced data. Maximum likelihood bootstrap values are given above/below the nodes. The newly generated sequences in red bold. The tree is rooted with Alternaria alternata and Pleospora herbarum.
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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.