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421 results for “195”
Data and R codes from: Exploring the effect of 195 years-old locks on species movement: Landscape genetics of painted turtles in the Rideau Canal, Canada
<p>Aquatic systems have been extensively altered by human structures (e.g., construction of dams/canals) and these have major impacts on the connectivity of wildlife populations through the loss and isolation of suitable habitats. Habitat loss and isolation affect gene flow and influence the persistence of populations in time and space by restricting movements. Isolation can result in higher inbreeding, lower genetic diversity, and greater genetic structure, which may render populations more vulnerable to environmental changes, and thus to extinction. Given the ubiquity and the persistence of dams and canals in space and time, it is crucial to understand their effects on the population genetics of aquatic species. Here, we documented the genetic diversity and structure of painted turtle (<em>Chrysemys picta</em>) populations in the Rideau Canal, Ontario, Canada. More specifically, we used 13 microsatellites to evaluate the influence of locks on genetic variation in 822 painted turtles from 22 sites evenly distributed along the 202-km canal. Overall, we found low, but significant, genetic differentiation suggesting that some dispersal is occurring throughout the canal. In addition, we showed that locks contribute to the genetic differentiation observed in the system. Clustering analysis revealed two distinct genetic groups whose boundary is associated with a series of six locks. Our results illustrate how artificial waterways, such as canal systems, can influence population genetic structure. We highlight the importance of adopting management plans that can mitigate the impacts of human infrastructure and preserve gene flow across the landscape to maintain viable populations.</p>
195 original studies of non-coding RNAs in sarcoma
<p><strong>Background</strong>: Sarcomas comprise approximately 1% of all human malignancies, and treatment resistance is one of the main reasons for poor prognosis. Accumulating evidence suggests that non-coding RNAs, including microRNAs, long non-coding RNAs, and circular RNAs, are important molecules involved in the crosstalk between resistance to chemotherapy, targeted therapy, and radiotherapy via various pathways.</p> <p><strong>Methods</strong>: We searched PubMed (MEDLINE) databases for articles on non-coding RNAs relevant to sarcoma from inception to November 30, 2021. Studies investigating the roles of host-derived microRNAs, long non-coding RNAs, and circular RNAs in sarcoma were included. Data on the roles of ncRNAs in therapeutic regulation and their applicability as biomarkers of sarcomas were extracted. Two independent researchers assessed the quality of the studies using modified guidelines from the Systematic Review Center for Laboratory Animal Experimentation (SYRCLE), a tool based on the Cochrane Collaboration Risk of Bias tool.</p> <p><strong>Results</strong>: Observational studies revealed ectopic expression of non-coding RNAs in sarcoma patients with different responses to antitumor treatments. Experimental studies have confirmed crosstalk between cellular pathways pertinent to chemotherapy, targeted therapy, and radiotherapy resistance. Of the included studies, the SYRCLE scores ranged from 3 to 6 (average score = 4.51). This finding suggested a moderate risk of bias. Of the ten articles that investigated non-coding RNAs as biomarkers, none included a validation cohort. Selective reporting of the sensitivity, specificity, and receiver operating curves was common.</p> <p><strong>Conclusion</strong>: Although non-coding RNAs appear to be good candidates as biomarkers and therapeutics for sarcoma, their differential expression across tissues complicates their application. Further investigation of the potential for inhibition or activation of these regulatory molecules to reverse treatment resistance may be useful.</p>
MAP 195 in Diversity and Distribution of the Amphibians and Terrestrial Reptiles of Angola Atlas of Historical and Bibliographic Records (1840-2017)
MAP 195. Distribution of Acontias kgalagadi in Angola.
Figs. 181–195. Antennal clubs. 181. Plocamocera confrater. 182. P. procera. 183. P in Classification, Natural History, And Evolution Of The Epiphloeinae (Coleoptera: Cleridae). Part Ii. The Genera Chaetophloeus Opitz And Plocamocera Spinola
Figs. 181–195. Antennal clubs. 181. Plocamocera confrater. 182. P. procera. 183. P. manausensis.
STR genotypes of 195 black grouse individuals
<p>The data file contains the individual genotypes of 195 black grouse (Lyrurus tetrix) individuals, genotyped at 9 STR (microsatellite) loci.</p> <p>The data is curated into 10 subpopulations as decribed in the accompanied publication.</p> <p>The data is uploaded in the commonly used genepop file format.</p>
STR genotypes of 195 black grouse individuals
Open the record for dataset details and reuse information.
195 original studies of non-coding RNAs in sarcoma
Open the record for dataset details and reuse information.
FIGURES 195–200 in Family groups of Diopsoidea and Nerioidea (Diptera: Schizophora) - Definition, history and relationships
FIGURES 195–200. Fergusonina sp. (Fergusoninidae), male terminalia; 195: left lateral; 196: external genitalia, posterior; 197: same, anterior; 198: internal genitalia, ventral; 199: detail of phallus; 200: internal genitalia, left lateral.
FIGURES 194–202. Hecalusina unispinosa. 194–195 in The Chinese Hecalina (Hemiptera: Cicadellidae: Deltocephalinae: Hecalini) with descriptions of a new genus and seven new species
FIGURES 194–202. Hecalusina unispinosa. 194–195, aedeagus, lateral and ventral views; 196, left style, dorsal view; 197, connective, dorsal view; 198, male 3rd abdominal sternal apodeme; 199, distal portion of pygofer side, inner view; 200, male pygofer, subgenital plate, and abdominal segments X–XI, lateral view; 201, subgenital plate; 202, distal portion of plate. asa=abdominal sternal apodeme, at=abdominal tergite, as=abdominal segment.
FIGURES 195–197 in Illustrated key to genera and catalogue of Mymaridae (Hymenoptera) in America north of Mexico
FIGURES 195–197. Camptoptera sp., metasoma. 195, dorsal; 196, genitalia seen through gaster; 197, lateral. Scale bars=100 μm.
IO Islamic 195. Rauḍât-aljannât, History and Topography of the Province and City of Harât
<p>IO Islamic 195. Rauḍât-aljannât, History and Topography of the Province and City of Harât</p>
FIGS. 194–197. Complicatella spp. Figs. 194, 195. Complicatella pectenifera. Fig. 194. Anterior gonopods, posterior view. Fig. 195. Left posterior gonopod coxite, posterior view. Figs. 196, 197. Complicatella neili. Fig. 196. Anterior gonopods, posterior view. Fig. 197 in The millipede family Conotylidae in northwestern North America, with a complete bibliography of the family (Diplopoda, Chordeumatida, Heterochordeumatidea, Conotyloidea)
FIGS. 194–197. Complicatella spp. Figs. 194, 195. Complicatella pectenifera. Fig. 194. Anterior gonopods, posterior view. Fig. 195. Left posterior gonopod coxite, posterior view. Figs. 196, 197. Complicatella neili. Fig. 196. Anterior gonopods, posterior view. Fig. 197. Left posterior gonopod coxite, posterior view.
finals_2020_11_195
Log and boot files of game 195
FIGS. 194–195 Bibio lignarius FIG. 194 in A Revision of fossil Bibionidae (Insecta: Diptera) from the Oligocene of Germany
FIGS. 194–195 Bibio lignarius FIG. 194. Female, wing. Holotype of Bibio lignarius Germar. STIPB A-601. FIG. 195. Female, head and thorax. Holotype of Bibio lignarius Germar. STIPB A-601. FIG. 196. Bibio pannosus, female. Holotype of Bibio pannosus Heyden & Heyden. NMHUK In 58815.
FIGURE 195. A, B, C, D in Generic relationships of New World Jerusalem crickets (Orthoptera: Stenopelmatoidea:Stenopelmatinae), including all known species of Stenopelmatus
FIGURE 195. A, B, C, D, adult female Puebla, showing face with furrow, rear leg tibia with 5 inner and 3 outer spines.
FIGURES 195–202. Chthonius horridus Beier, 1934 in The Italian species of the Chthonius ischnocheles group (Arachnida, Pseudoscorpiones, Chthoniidae), with reference to neighbouring countries
FIGURES 195–202. Chthonius horridus Beier, 1934, mine of Passobreve, 14.IV.2001 (Sagliano Micca, Biella). 195, male, right chela, antiaxial view; 196, male, detail of fingers at the chelal tip, antiaxial view; 197, male, detail of fingers at level of trichobothria est-it and st-t, antiaxial view; 198, male, detail of teeth at level of trichobothrium sb, antiaxial view; 199, female, right chela, antiaxial view; 200, female, detail of fingers at the chelal tip, antiaxial view; 201, female, detail of fingers at level of trichobothria st-t, antiaxial view; 202, female, detail of teeth at level of trichobothrium sb, antiaxial view.
FIGURES 191–195 in A revision of the species of the pseudoscorpion subgenus Chthonius (Ephippiochthonius) (Arachnida, Pseudoscorpiones, Chthoniidae) from Italy and neighbouring areas
FIGURES 191–195. Chthonius (E.) sardous Gardini, 2008. 191, male holotype, anterior margin and anterolateral portion of carapace; 192, id., right chelicera; 193, female paratype (Sardinia, Iglesias, Grotta del Cancello), fingers of left chelicera; 194, male holotype, left chela, lateral view; 195, female paratype (Sardinia, Domusnovas, Grotta Rolfo), distal portion of left chelal fingers, lateral view (redrawn after Gardini 2008).
FIGURES 189–195 in Revision of the Palaearctic genus Gonaporus Ashmead, 1902 of spider wasps (Hymenoptera: Pompilidae)
FIGURES 189–195. Gonaporus spp., ♂, hind wing. 189. G. israelicus. 190. G. jaziratensis sp. nov. 191. G. mirabilis sp. nov. 192. G. omanicus.193. G. setitarsus sp. nov. 194. G. simulator sp. nov. 195. G. spinosissimus sp. nov.
FIGURES 195–200 in Review of the Blastobasinae of Costa Rica (Lepidoptera: Gelechioidea: Blastobasidae)
FIGURES 195–200. Male genitalia of Blastobasinae. 195–196, Hypatopa verax (slide 2265). 197–198, Hypatopa tapadulcea Adamski, 1999 (slide 2069). 199–200, Hypatopa mora (slide 2567).
FIGURES 195–198 in Review of Gonatocerus (Hymenoptera: Mymaridae) in the Palaearctic region, with notes on extralimital distributions
FIGURES 195–198. Gonatocerus (Lymaenon) ucri Ƥ (paratype): 195, antenna; 196, mesosoma and metasoma; 197, dorsellum and propodeum; 198, fore wing.
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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.