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Fig. 4 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 4. Adeonella jahanai sp. nov. A. Holotype colony with narrow branches (NSMT-Te1050, Okinawa). B. Young autozooids at distal end of branch, showing primary orifices NSMT-Te889. C. Autozooids with elongate frontal avicularia (NSMT-Te889, Okinawa). D. Young autozooids with a single triangular avicularium abutting the proximal margin of the peristome (NSMT-Te889, Okinawa). A = optical photograph; B–D = SEM images. Scale bars: A = 1 cm; B–D = 100 μm.
Fig. 10. Interior frontal shield. A in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 10. Interior frontal shield. A. Adeonellopsis japonica (Ortmann, 1890) (NSMT-Te1052). B. A. parvirostrum sp. nov. (NSMT-Te807). Arrowheads indicate ring scar. SEM images. Scale bars: A = 50 μm; B = 25 μm.
Fig. 6 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 6. Adeonellopsis arculifera (Canu & Bassler, 1929). A. Colonies collected SW of Yakushima Island (NSMT-Te789). B. Branch showing crenulate periphery (NSMT-Te781). C. Enlargement of bifurcation showing autozooids with oblique avicularium and single small spiramen (NSMT-Te781). D. Young autozooids showing peristomial rim and single small spiramen (NSMT-Te781). E. Old part of branch, showing various stages in formation of kenozooids (NSMT-Te781). F. Old part of branch, showing autozooids with depression containing avicularium and spiramen (NSMT-Te781). A = optical photograph; B–F = SEM images. Scale bars: A = 5 mm; B = 1 mm; C–D = 300 μm; E = 500 μm; F = 250 μm.
Fig. 9 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 9. Adeonellopsis japonica (Ortmann, 1890). A. Colony collected at Albatross Station D, off Oahu Island, Hawaii (USNM 271601). B. Autozooids of Hawaii specimen, showing suboral avicularia and biporous spiramen (USNM 271601, Hawaii). C. Autozooids and lateral vicarious avicularia at a branch bifurcation (USNM 271601 paper box, Hawaii). D. Enlargement of lateral vicarious avicularia at branch bifurcation (USNM 271601 paper box, Hawaii). A = optical photograph; B–D = photomicrographs. Scale bars: A = 5 mm; B, D = 300 μm; C = 500 μm.
Fig. 3 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 3. Adeonella cf. lichenoides (Lamarck, 1816). A. Gonozooids at branch bifurcation (NSMT-Bry R 365, Sagami Sea). B. Kenozooids with numerous frontal avicularia (NSMT-BryR360, Sagami Sea). C. Autozooids with numerous frontal avicularia (NSMT-TeS14, Sagami Sea). SEM images. Scale bars: A, C = 200 μm; B = 100 μm.
Fig. 2 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 2. Adeonella cf. lichenoides (Lamarck, 1816). A. Large, robust branching colony in Showa Emperor Collection (NSMT-BryR299, Sagami Sea). B. Distal end of branch, showing vicarious avicularia associated with a branch bifurcation (NSMT-BryR297, Sagami Sea). C. Autozooids (NSMT-BryR359, Sagami Sea). D–E. Two types of lanceolate avicularia near branch bifurcations. D. Short type (NSMT- BryR297). E. Long type (NSMT-BryR359, Sagami Sea). A = optical photograph; B–E = SEM images. Scale bars: A = 2 cm; B = 500 μm; C–E = 200 μm.
Fig. 5 in Diversity and distribution of adeonid bryozoans (Cheilostomata: Adeonidae) in Japanese waters
Fig. 5. Adeonella jahanai sp. nov. A. Branch bifurcation lacking vicarious avicularaia (NSMT- Te889, Okinawa). B. Branch bifurcation with vicarious avicularium (NSMT-Te749, off Yakushima). C. Vicarious avicularia on side of branch (NSMT-Te889, Okinawa). D. Old part of branch showing autozooids and kenozooids (NSMT-Te889, Okinawa). E. Gonozooids at periphery of branch (NSMT- Te889, Okinawa). F. Gonozooid at periphery of branch (NSMT-Te889, Okinawa). SEM images. Scale bars: A– D = 200 μm; E = 300 μm; F = 100 μm.
Standard Distributions of Blood Tests for Public Use
<p>This dataset is the distribution parameters obtained by approximating the distribution of blood test values taken from inpatients in a Japanese hospital by a lognormal distribution or an exponential distribution. </p> <p>The parameters P1, P2 and P3 of the lognormal distribution are used in the following equation.<br> P1*exp(-(ln(x/P2)/P3)^2)</p> <p>The parameters P1 and P2 of the exponential distribution are used in the following.<br> P1*exp(-P2*x)</p> <p>This file is CSV with UTF-8 charset, and the columns are as follows.</p> <p>---<br> Test name<br> Test name in Japanese<br> Unit of the value<br> Distribution type (LogNormal or Exp)<br> P1<br> P2<br> P3<br> P1 Error(1sigma)<br> P2 Error(1sigma)<br> P3 Error(1sigma)<br> Number of data points used to make this distribution<br> Bin width used to make the distribution<br> ---</p> <p>Any researchers can use this dataset without privacy issues.<br> CC BY-NC 4.0<br> </p>
Fig. 8A-J in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 8A-J. Synurella ambulans (F. Müller, 1846), ♀, 4.0 mm, FENU X34906/Cr-1406, KF. A. Lateralia. B. Antenna 2. C. Pereopod 5. D. Pereopod 6. E. Pereopod 7. F. Epimera 1-3. G. Uropod 1. H. Uropod 2. I. Uropod 3. J. Telson. Scale bars 0.2 mm.
Fig. 5A-E in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 5A-E. Synurella ambulans (F. Müller, 1846), Ƌ, 4.5 mm, FENU X34906/Cr-1406, MO. A. Pereopod 3. B. Pereopod 4. C. Pereopod 5. D. Pereopod 6. E. Pereopod 7. Scale bars 0.2 mm.
Fig. 3A-B in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 3A-B. Synurella ambulans (F. Müller, 1846), Ƌ, 4.5 mm, FENU X34906/Cr-1406, MO. A. Gnathopod 1. B. Gnathopod 2. Scale bars 0.2 mm.
Fig. 6A-H in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 6A-H. Synurella ambulans (F. Müller, 1846), Ƌ, 4.5 mm, FENU X34906/Cr-1406, MO. A. Pleopod 1. B. Pleopod 2. C. Pleopod 3. D. Epimera 1-3. E. Uropod 1. F. Uropod 2. G. Uropod 3. H. Telson. Scale bars 0.2 mm.
Fig. 4A-L in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 4A-L. Synurella ambulans (F. Müller, 1846), Ƌ, 4.5 mm, FENU X34906/Cr-1406, MO. A. Antenna 1. B. Antenna 2. C. Maxilla 1. D. Maxilla 2. E. Lower lip. F. Left mandible. G. Right mandible. H. Upper lip. I. Maxilliped. J. Maxilliped, inner plate. K. Maxilliped, outer plate. L. Distal part of maxilliped palp, female, 6.0 mm, FENU X34906/Cr-1406, PP. Scale bars 0.2 mm.
Fig. 2A-C in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 2A-C. Synurella ambulans (F. Müller, 1846). A. Yellow spot on the dorsal surface of the head of live specimens (front and left side), MO. B. Ƌ, 4.2 mm, FENU X34906/Cr-1406, KF. C. ♀, 5.5 mm, FENU X34906/Cr-1406, BN, left side (preserved specimens).
Fig. 1 in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 1. Map indicating the geographic distribution of Synurella ambulans (F. Müller, 1846) in western Russia. Legend: "empty" springs display undisturbed springs with a rich crenophilous fauna without S. ambulans. Literature data: Borutzky (1929), Chertoprud (2006a, 2006b). Source: Blank Mapping Tools, Moscow (2009).
Fig. 7A-B in Taxonomy of the spring dwelling amphipod Synurella ambulans (Crustacea: Crangonyctidae) in West Russia: with notes on its distribution and ecology
Fig. 7A-B. Synurella ambulans (F. Müller, 1846), ♀, 4.0 mm, FENU X34906/Cr-1406, KF. A. Gnathopod 1. B. Gnathopod 2. Scale bars 0.2 mm.
Fig. 45. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)
Fig. 45. Distribution maps. A–B. Neoromicia somalica (Thomas, 1901). C–D. Neoromicia tenuipinnis (Peters, 1872). E–F. Neoromicia zuluensis (Roberts, 1924). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.
Fig. 42. Distribution maps. A–B. Laephotis angolensis Monard, 1935. C–D. Laephotis botswanae Setzer, 1971. E–F in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)
Fig. 42. Distribution maps. A–B. Laephotis angolensis Monard, 1935. C–D. Laephotis botswanae Setzer, 1971. E–F. Mimetillus moloneyi (Thomas, 1891). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.
Fig. 41. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)
Fig. 41. Distribution maps. A–B. Hypsugo crassulus (Thomas, 1904). C–D. Hypsugo cf. eisentrauti (Hill, 1968). E–F. Hypsugo musciculus (Thomas, 1913). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.
Fig. 38. Distribution maps. A–B. Glauconycteris alboguttata J.A. Allen, 1917. C–D in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)
Fig. 38. Distribution maps. A–B. Glauconycteris alboguttata J.A. Allen, 1917. C–D. Glauconycteris argentata (Dobson, 1875). E–F. Glauconycteris beatrix Thomas, 1901. A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.
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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.