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Figure 72 in Morphology analysis supports presence of more than one species in the "Euscorpius carpathicus" complex (Scorpiones: Euscorpiidae)
Figure 72: Morphometric ratio: pedipalp length/metasoma length. See Fig 70 for definition of other terms.
Figure 72 in The systematic position of the scorpion genera Heteroscorpion Birula, 1903 and Urodacus Peters, 1861 (Scorpiones: Scorpionoidea)
Figure 72: Phylogenies based on Stockwell (1989), Prendini (2000), and the results of our analysis for superfamily Scorpionoidea showing familes and subfamilies. Family-group names are those established in this paper and not necessarily levels used by other authors. For Prendini's (2000: Fig. 2) phylogeny, overall support data is CI/RI = 0.55/0.92, and bootstrap results are shown below the branches and are based on a single sequence of 10,000 pseudoreplicates. For the results of our analysis, all nodes are supported by all (100 %) 992 MPTs. Overall support data for our analysis: CI/RI/G-Fit = 0.6189/0.9310/-93.355; bootstrap values are indicated below the branches and represent the mean value of three 1,000 pseudoreplicate sequences.
Fig. 72 in The Spider Subfamily Amaurobioidinae (Araneae, Anyphaenidae): A Phylogenetic Revision At The Generic Level
Fig. 72. Arachosia praesignis (Keyserling), male copulatory bulb, apical view (Buenos Aires, Hudson, 12.IX.1984). Scale bar = 0.2 mm.
Figures 71–72 in New genera of melikertine bees with facial modifications in Baltic amber (Hymenoptera: Apidae)
Figures 71–72. Holotype female of Ctenoplectrella eocenica (Michez & Nel), new combination, in Eocene Oise amber (PA 3190 1/17). 71. Lateral view. 72. Ventral view. Photographs courtesy of Muséum National d'Histoire Naturelle (accepit a A. Nel and O. Béthoux).
FIGURE 72 in The Cave Fauna of California
FIGURE 72 (top left). Ceuthophilus sp, Rhaphidophoridae, about 20 mm, cave cricket, trogloxene, Lava Beds National Monument. JK and ST. FIGURE 73 (top right). Tropidischia xanthostoma, about 30 mm, trogloxene, rhaphidophorid cricket, Crystal Sequoia Cave, Tulare Co., Sequoia National Park. JK. FIGURE 74 (center left). Grylloblatta n. sp. 3, 12–20 mm, Notoptera, is known only from Lilburn Cave and Mays Cave, Tulare Co., the farthest south of any icecrawler. JK. FIGURE 75 (center right). Trechus sp., 4 mm, Carabidae, Trechinae, Trechini, troglophile or trogloxene beetle, Empire Cave, Santa Cruz Co. JML. FIGURE 76 (bottom left). Ant-like litter beetle or mold beetle, 5–6 mm, Staphylinidae, Pselaphinae, Yosemite National Park. JK. FIGURE 77 (bottom left). Ptomaphagus nevadicus, 6–7 mm, a round fungus beetle, Leiodidae, McLean's Cave, Tuolumne Co. WRE. Photographers:William R. Elliott, Jean Krejca, Joel M. Ledford, Steve Taylor.
Supplementary file 72 in Methylphenidate for attention deficit hyperactivity disorder (ADHD) in children and adolescents - assessment of possible adverse events in non-randomised studies
<p>Supplementary file 72: Proportion of participants on methylphenidate with chest pain</p>
Figs 62–72 in A new leafhopper genus with two new species related to Masiripius Dlabola, 1981 (Hemiptera, Deltocephalinae, Cicadellidae, Opsiini)
Figs 62–72. Oshaibahus zizyphi (Bergevin, 1922) gen. et comb. nov. 62. Aedeagus dorsal view. 63. Aedeagus lateral view. 64. Style. 65. Connective. 66. Ventral view of pygofer. 67. Lateral view of pygofer. 68. Subgenital plate. 69. Valve. 70. ♀ 7th sternite. 71–72. ♀ ovipositor.
72 white matter bundles segmented by 7 different methods in one HCP subject
<p>This dataset contains segmentations of 72 white matter tracts from 7 different automatic segmentation methods for one subject (623844) from the Human Connectome Project (HCP) young adult dataset (https://www.humanconnectome.org/study/hcp-young-adult). Segmentations are given for the original HCP data ("HCP Quality") and for a downsampled version of the HCP data with reduced resolution (2.5mm isotrop) and less gradients (32x b=1000mm/s^2) ("Clinical Quality").</p> <p>The data is part of the following project: https://github.com/MIC-DKFZ/TractSeg/<br> If you use the data please cite the paper mentioned on the project page.</p> <p>Each file is 4D nifti image. The 4th dimension determines the bundle:</p> <p>1: AF_left (Arcuate fascicle)<br> 2: AF_right<br> 3: ATR_left (Anterior Thalamic Radiation)<br> 4: ATR_right<br> 5: CA (Commissure Anterior)<br> 6: CC_1 (Rostrum)<br> 7: CC_2 (Genu)<br> 8: CC_3 (Rostral body (Premotor))<br> 9: CC_4 (Anterior midbody (Primary Motor))<br> 10: CC_5 (Posterior midbody (Primary Somatosensory))<br> 11: CC_6 (Isthmus)<br> 12: CC_7 (Splenium)<br> 13: CG_left (Cingulum left)<br> 14: CG_right <br> 15: CST_left (Corticospinal tract<br> 16: CST_right <br> 17: MLF_left (Middle longitudinal fascicle)<br> 18: MLF_right<br> 19: FPT_left (Fronto-pontine tract)<br> 20: FPT_right <br> 21: FX_left (Fornix)<br> 22: FX_right<br> 23: ICP_left (Inferior cerebellar peduncle)<br> 24: ICP_right <br> 25: IFO_left (Inferior occipito-frontal fascicle) <br> 26: IFO_right<br> 27: ILF_left (Inferior longitudinal fascicle) <br> 28: ILF_right <br> 29: MCP (Middle cerebellar peduncle)<br> 30: OR_left (Optic radiation) <br> 31: OR_right<br> 32: POPT_left (Parieto‐occipital pontine)<br> 33: POPT_right <br> 34: SCP_left (Superior cerebellar peduncle)<br> 35: SCP_right <br> 36: SLF_I_left (Superior longitudinal fascicle I)<br> 37: SLF_I_right <br> 38: SLF_II_left (Superior longitudinal fascicle II)<br> 39: SLF_II_right<br> 40: SLF_III_left (Superior longitudinal fascicle III)<br> 41: SLF_III_right <br> 42: STR_left (Superior Thalamic Radiation)<br> 43: STR_right <br> 44: UF_left (Uncinate fascicle) <br> 45: UF_right <br> 46: CC (Corpus Callosum - all)<br> 47: T_PREF_left (Thalamo-prefrontal)<br> 48: T_PREF_right <br> 49: T_PREM_left (Thalamo-premotor)<br> 50: T_PREM_right <br> 51: T_PREC_left (Thalamo-precentral)<br> 52: T_PREC_right <br> 53: T_POSTC_left (Thalamo-postcentral)<br> 54: T_POSTC_right <br> 55: T_PAR_left (Thalamo-parietal)<br> 56: T_PAR_right <br> 57: T_OCC_left (Thalamo-occipital)<br> 58: T_OCC_right <br> 59: ST_FO_left (Striato-fronto-orbital)<br> 60: ST_FO_right <br> 61: ST_PREF_left (Striato-prefrontal)<br> 62: ST_PREF_right <br> 63: ST_PREM_left (Striato-premotor)<br> 64: ST_PREM_right <br> 65: ST_PREC_left (Striato-precentral)<br> 66: ST_PREC_right <br> 67: ST_POSTC_left (Striato-postcentral)<br> 68: ST_POSTC_right<br> 69: ST_PAR_left (Striato-parietal)<br> 70: ST_PAR_right <br> 71: ST_OCC_left (Striato-occipital)<br> 72: ST_OCC_right</p>
Figs 72-76 in West African pholcid spiders: an overview, with descriptions of five new species (Araneae, Pholcidae)
Figs 72-76. Leptopholcus kintampo sp. nov. 72-73. Left ♂ palp, prolateral and retrolateral views. 74. ♂ chelicerae, frontal view. 75-76. Cleared ♀ genitalia, ventral and dorsal views. Scale lines: 72-73 = 0.5 mm; 74-76 = 0.3 mm.
Figs 72–73 in Revision of the enigmatic Southeast Asian spider genus Savarna (Araneae, Pholcidae)
Figs 72–73. Savarna tessellata (Simon, 1901). Cleared female genitalia, ventral and dorsal views. Scale bar: 0.5 mm.
Wings: 68, Loew system for wing cells (Mydas lividus Curran); 69, Comstock Needham system for wing veins tNernomouiae pantherinus Gerstaecker); 70, Apiophora paulseni Philippi, a: open 2nd submarginal cell; b: reduced size of axillary lobe; 71., Mitrodetus sp.; 72 Pseudonomoneura sp. in The American Genera of Mydidae (Diptera), with the Description of three new Genera and two new Species
Wings: 68, Loew system for wing cells (Mydas lividus Curran); 69, Comstock Needham system for wing veins tNernomouiae pantherinus Gerstaecker); 70, Apiophora paulseni Philippi, a: open 2nd submarginal cell; b: reduced size of axillary lobe; 71., Mitrodetus sp.; 72 Pseudonomoneura sp.
Fig. 72 in Revision of the Afrotropical Asobara Foerster, 1863 (Hymenoptera: Braconidae: Alysiinae), with the descriptions of twenty five new species
Fig. 72. Asobara vanharteni van Achterberg, sp. nov., ♀, holotype (RMNH). A. Habitus, lateral view. B. Head and mesosoma, lateral view. C. Mandible. D. Antenna. E. Head, front view. F. Head and mesoscutum, dorsal view.
Fig. 72 in Revision of the Afrotropical Asobara Foerster, 1863 (Hymenoptera: Braconidae: Alysiinae), with the descriptions of twenty five new species
Fig. 72. Asobara vanharteni van Achterberg, sp. nov., ♀, holotype (RMNH). A. Habitus, lateral view. B. Head and mesosoma, lateral view. C. Mandible. D. Antenna. E. Head, front view. F. Head and mesoscutum, dorsal view.
Figs 62–72 in Review of Aphidiinae parasitoids (Hymenoptera: Braconidae) of the Middle East and North Africa: key to species and host associations
Figs 62–72. Antenna (♀): 62. Toxares deltiger. 63. Trioxys asiaticus. 64. Trioxys cirsii. 65. Trioxys complanatus. 66. Trioxys curvicaudus. 67. Trioxys metacarpalis. 68. Trioxys moshei. 69. Trioxys pallidus. 70. Trioxys pannonicus. 71. Trioxys pappi. 72. Trioxys tanaceticola.
Figures 72–75 in Stingless bees in Miocene amber of southeastern China (Hymenoptera: Apidae)
Figures 72–75. Faces of workers of African genera. 72. Liotrigona (Liotrigona) mahafalya Brooks & Michener. 73. L. (Cleptotrigona) cubiceps (Friese). 74. Hypotrigona gribodoi (Magreti). 75. Dactylurina schmidti (Stadelmann).
Fig. 72 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 72. The holotype skull of ''Protitan'' minor (AMNH 26416). (A) Ventral view (note that the canines have been lost since Granger and Gregory [1943]), (B) right molars, (C) left premolars, (D) lingual view of incisors, (E) labial view of right incisors.
Figures 71−72 in New data on Neotropical Carpenter-Moths of Subfamily Hypoptinae Neumoegen & Dyar, 1894 (Lepidoptera: Cossidae). II. A review of the genus Dolecta Herrich-Schäffer, [1854], with description of seventeen new species
Figures 71−72. Light traps (photo by Viktor Sinyaev): 71. Ecuador, Karchi province, rd Tulcan−El Chical, 2800 m; 72. Ecuador, Sucumbios El Playon, 3200 m.
Figures 72–77 in Descriptions of new Hypotrabala Holland, 1893 (Lepidoptera: Lasiocampidae: Lasiocampinae: Selenepherini) in the collections of the African Natural History Research Trust, with notes on allied genera and the description of a new genus
Figures 72–77. Male genitalia of Hypotrabala species, a: clasping apparatus, b: lateral view of phallus, c: eighth sternite, d: dorsal view of phallus (a, b, c to scale, d magnified). 72. H. obscura sp. n., holotype [LG 6331]. 73. H. giustii sp. n., holotype [LG 6295]. 74. Id., paratype [LG 6296]. 75. H. argenteoguttata (Aurivillius, 1909), Mozambique [LG 6322]. 76. H. tamsi sp. n., holotype [LG 6291]. 77. Id., paratype, Cameroon [LG 6290].
Fig. 72 in PHYLOGENETIC SYSTEMATICS OF DART-POISON FROGS AND THEIR RELATIVES (AMPHIBIA: ATHESPHATANURA: DENDROBATIDAE)
Fig. 72. Strict consensus of 25,872 most parsimonious trees of 46,520 steps: relationships among dendrobatids. Numbers above branches are Bremer support values. Numbers following terminal names are unique sample identifiers. Terminals without numbers or with alphanumeric identifiers (GenBank numbers) were not sequenced for the present study or Frost et al. (2006) and were taken from GenBank. Unidentified species taken from GenBank are labeled as originally published. Upper right inset shows entire cladogram and corresponding figure numbers, with present view in black.
Fig. 72 in EVOLUTION OF THE SIDE-NECKED TURTLES: THE FAMILIES BOTHREMYDIDAE, EURAXEMYDIDAE, AND ARARIPEMYDIDAE
Fig. 72. Cearachelys placidoi Gaffney, Campos, and Hirayama, 2001. THUg 1798. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior (from Gaffney, Campos, and Hirayama, 2001). [E. Heck, del.]
ScienceDex guides
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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.