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821 results for “Molecular Systematics”
Systematic assessment of blood-borne microRNAs highlights molecular profiles of endurance sport and carbohydrate uptake
GEO Series GSE133910. Homo sapiens. 90 samples. Type: Non-coding RNA profiling by array.
Figure 1 in The contribution of molecular data to our understanding of cephalopod evolution and systematics: a review
Figure 1. Relationships between molluscan classes as recovered by Smith et al. (2011).
Figure 3 in The contribution of molecular data to our understanding of cephalopod evolution and systematics: a review
Figure 3. Summary tree of phylogenetic relationships between higher taxa.
Figure 2 from: Talamas EJ, Bon M-C, Hoelmer KA, Buffington ML (2019) Molecular phylogeny of Trissolcus wasps (Hymenoptera, Scelionidae) associated with Halyomorpha halys (Hemiptera, Pentatomidae). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 201-217. https://doi.org/10.3897/jhr.73.39563
Figure 2 Phylogenetic tree, Bayesian analysis.
Figure 1 from: Talamas EJ, Bon M-C, Hoelmer KA, Buffington ML (2019) Molecular phylogeny of Trissolcus wasps (Hymenoptera, Scelionidae) associated with Halyomorpha halys (Hemiptera, Pentatomidae). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 201-217. https://doi.org/10.3897/jhr.73.39563
Figure 1 Phylogenetic tree, RaxML analysis.
Figure 3 from: Talamas EJ, Bon M-C, Hoelmer KA, Buffington ML (2019) Molecular phylogeny of Trissolcus wasps (Hymenoptera, Scelionidae) associated with Halyomorpha halys (Hemiptera, Pentatomidae). In: Talamas E (Eds) Advances in the Systematics of Platygastroidea II. Journal of Hymenoptera Research 73: 201-217. https://doi.org/10.3897/jhr.73.39563
Figure 3 Phylogenetic tree, PAUP* analysis.
Figure 5 from: Zheng L-P, Chen X-Y, Yang J-X (2016) Molecular systematics of the Labeonini inhabiting the karst regions in southwest China (Teleostei, Cypriniformes). ZooKeys 612: 133-148. https://doi.org/10.3897/zookeys.612.9085
Figure 5 - Ventral view of the mouth morphology. A Sinigarra napoensis B Garra micropulvinus.
Systematic analysis of purified astrocytes after spinal cord injury unveils lncRNA Zeb2os as a novel molecular target for astrogliosis [RNA-Seq]
GEO Series GSE153720. Mus musculus. 25 samples. Type: Expression profiling by high throughput sequencing.
Systematic reconstruction of molecular pathway signatures using scalable single-cell perturbation screens
GEO Series GSE281048. Homo sapiens. 4 samples. Type: Expression profiling by high throughput sequencing.
Systematic meta-analysis and replication of genome-wide expression studies identifies molecular pathways of Parkinson’s disease
GEO Series GSE24378. Homo sapiens. 17 samples. Type: Expression profiling by array.
FIGURE 1 in Molecular systematics and biogeography of the genus Zizina (Lepidoptera: Lycaenidae)
FIGURE 1. Geographical distribution of all four currently recognized species of Zizina. The specific classification follows Bridges (1988). Dots indicate the localities of the 181 samples used in this study. As for distribution, we cited the data of the collection in The Natural History Museum and other literatures (Ackery et al. 1996; Bascombe et al. 1999; Braby 2004; Chapman 1910; Chou 1994; Clark & Dickson 1971; Common & Waterhouse 1981; Corbet 1948; Corbet & Pendlebury 1956, 1992; D'Abrera 1978, 1980, 1986; Duke et al. 1999; Ek-Amnuay 2006; Evans 1932; Fermon et al. 2001; Fox et al. 1965; Fukuda et al. 1986; Gibbs 1980; Khatri 2004; Kielland 1990; Kim 2002; Kinyon 2003; Koiwaya 1989; Larsen 1984, 1989, 1996, 2005; Leech 1892-1894; Monastyrskii & Devyatkin 2003; Osada 1999; Parsons 1999; Pinratana 1981; Pringle et al. 1994; Seitz 1927; Seki et al. 1991; Shirôzu 1960; Smith 1989; Stempffer 1967; Takanami 1986; Tennent 2002; Vane-Wright & de Jong 2003; Wang & Fan 2002; Williams 1989).
Figure 21 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 21. Diplomma serpentina (Stimpson, 1855). A, transverse section through foregut region, showing dorsoventral muscles (indicated by arrowheads); B, transverse section through intestinal region, showing dorsoventral muscles running outside lateral nerve cord (indicated by black arrowhead) and inside ovary (indicated by white arrowheads); C, transverse section through pyloric region – dorsoventral muscles were not evident in this individual; D, transverse section through foregut region, showing dorsoventral muscles (indicated by arrowheads) running outside lateral nerve cord and lateral blood vessel; E, transverse section through foregut region, showing dorsoventral muscles (indicated by arrowhead) running outside excretory tubule. A, B, paraneotype (ZIHU-3166); C, paraneotype (ZIHU-1356); D, E, paraneotype (UPLB- NHM 0488). Abbreviations: DE, dermis; EX, excretory collecting tubule; IC, intestinal caecum; LN, lateral nerve cord; LV, lateral blood vessel; OV, ovum; PA, parenchyma; PY, pylorus; RC, rhynchocoel; ST, stomach. Scale bars: A, B = 50 Mm; C, E = 30 Mm; D = 100 Mm.
Figure 11 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 11. Diplomma bothwellae comb. nov. (formerly Poseidonemertes bothwellae Gibson, 1982). Holotype (AM W.5890). Magnification of Figure 10 to show the dorsoventral muscle fibres (arrowed). Abbreviations: EP, epithelium; LN, lateral nerve cord; LV, lateral blood vessel; RC, rhynchocoel. Scale bar = 20 Mm.
Figure 17 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 17. Diplomma serpentina (Stimpson, 1855). A, drawing based on neotype, showing general appearance of body in life; B, C, D, enlargements of cephalic region in dorsal (B), ventral (C), and lateral (D) aspects. Scale bar [refers to (A) only] = 3 mm.
Figure 9 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 9. Diplomma bothwellae comb. nov. (formerly Poseidonemertes bothwellae Gibson, 1982). Holotype (AM W.5890). Transverse section through the anterior proboscis; arrows indicate the proboscis nerves. Scale bar = 20 Mm.
Figure 16 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 16. Diplomma serpentina (Stimpson, 1855). A, photograph of narcotized specimen taken in life; B, photograph of the same specimen as (A) before anaesthetization, showing natural shape of head; C, horizontal section through head, showing arrangement of outer portion of body-wall longitudinal musculature and its derivatives; D, horizontal section through head, showing arrangement of inner portion of body-wall longitudinal musculature contributing to proboscis insertion; E, sagittal section through head, showing cephalic retractor muscle fibre derived from inner portion of divided body-wall longitudinal muscle layer. A, B, E, UPLB-NHM 0489; C, D, ZIHU-1354. Abbreviations: AG, acidophilic cephalic gland; BG, basophilic cephalic gland; BR, brain; CO, cerebral organ; CR, cephalic retractor muscle; IL, inner portion of body-wall longitudinal musculature; OL, outer portion of body-wall longitudinal musculature; PI, proboscis insertion; PR, proboscis. Scale bars: A = 3 mm; C, D = 100 Mm; E = 50 Mm.
Figure 1 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 1. Collecting sites of Diplomma serpentina (Stimpson, 1855) in the present study. 1: Shimoda, where Yamaoka (2005) reported Paranemertes sp. that we regard as synonymous with D. serpentina. 2: Kushimoto, the type locality of Amphiporus insolitus Iwata, 1954a, a species that may be synonymous with D. serpentina.
Figure 25 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 25. Diplomma serpentina (Stimpson, 1855). A, B, transverse section through stomach, showing seemingly appendage-like appearance of the stomach (indicated by asterisk). A, B, neotype (ZIHU-1352). Abbreviations: LN, lateral nerve cord; PR, proboscis; RC, rhynchocoel; ST, stomach. Scale bars: A, B = 100 Mm.
Figure 6 in Systematics and phylogeny of the hoplonemertean genus Diplomma (Nemertea) based on molecular and morphological evidence
Figure 6. Diplomma albimarginata comb. nov. (formerly Paramphiporus albimarginatus Kirsteuer, 1965). Syntype (AMNH 277). Transverse section showing the dorsoventral muscle fibres running laterally to the lateral nerve cord (arrowed) in the stomach region. Abbreviations: EP, epithelium; EX, excretory collecting tubule; LN, lateral nerve cord; RC, rhynchocoel. Scale bar = 20 Mm.
FIGURE 4 in Systematic review of Myotis (Chiroptera, Vespertilionidae) from Chile based on molecular, morphological, and bioacoustic data
FIGURE 4. Dorsal (upper) and ventral (middle) and lateral skull views of Myotis arescens (USNM 319784), Myotis atacamensis (MVZ 116638), and Myotis chiloensis (FMNH 24029 [neotype]). Scale bar = 10 mm.
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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.