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FIGURE 1. A in Distinguishing between three modern Ellobius species (Rodentia, Mammalia) and identification of fossil Ellobius from Kaldar Cave (Iran) using geometric morphometric analyses of the first lower molar
FIGURE 1. A) Occlusal surface of Ellobius right lower m1: triangle (T); buccal re-entrant angle (BRA); lingual reentrant angle (LRA); anterior cap (AC); posterior lobe (PL); B) Lingual view of left lower m1.
FIGURE 5 in Distinguishing between three modern Ellobius species (Rodentia, Mammalia) and identification of fossil Ellobius from Kaldar Cave (Iran) using geometric morphometric analyses of the first lower molar
FIGURE 5. Principal component analysis on the normalized landmarks and sliding semilandmarks and shape configuration at the extreme ends of the two first PCs.
FIGURE 7 in Distinguishing between three modern Ellobius species (Rodentia, Mammalia) and identification of fossil Ellobius from Kaldar Cave (Iran) using geometric morphometric analyses of the first lower molar
FIGURE 7. Morphological differences between Ellobius fuscocapillus (left) and Ellobius lutescens (right). Arrows depict the displacements between corresponding landmarks in the reference (dots) and Ellobius lutescens as target specimens.
Fig. 2 in Species identification of Middle Eastern blowflies (Diptera: Calliphoridae) of forensic importance
Fig. 2 The Middle Eastern blowflies of forensic importance. a Ch. putoria, anterior part of body, dorsal view. b Ch. putoria, distal part of female abdomen, postero-dorsal view. c Ch. albiceps, anterior part of body, dorsal view. d Ch. albiceps, distal part of female abdomen, posterodorsal view. e Ch. albiceps, head, antennae. f Ch. rufifacies, head, antennae. g Ch. rufifacies, anterior part of thorax, lateral view. h P. terraenovae, thorax, lateral view. i C. mortuorum, thorax, dorsal view. j C. mortuorum, posterior part of abdomen, male genital apparatus. k C. vicina, thorax, dorsal view. l C. vicina, head, lateral view. m C. vomitoria, head, lateral view. n H. pulchra, posterior part of thorax, lateral view. o H. ligurriens, head, antennae. p H. pulchra, head, antennae. acr set acrostichal setae, ant spir anterior spiracle, cer cercus, cr crevice/incision, gen dil genal dilation, III ant third antennal segment, kat ter katatergite, low cal lower calypter, mr band marginal band, p ep proepimeral seta, ps g postgena, sur surstylus, th thorax, up upper calypter, V ter / Vth fifth tergite
Fig. 1 in Species identification of Middle Eastern blowflies (Diptera: Calliphoridae) of forensic importance
Fig. 1 The Middle Eastern blowflies of forensic importance. a Ch. albiceps, basal part of wing, stem vein. b C. vicina, thorax, upper, and lower calypters. c L. caesar, thorax, upper, and lower calypters. d Ch. albiceps, thorax, lateral view. e P. regina, thorax, lateral view. f Ch. pinguis, head, lateral view. g Ch. phaonis, thorax, upper, and lower calypters. h Ch. pinguis, thorax, upper, and lower calypters. i Ch. megacephala, thorax, lateral. j Ch. marginalis, wing. k Ch. nigripes, thorax, lateral view. ant spir anterior spiracle, gen dil genal dilation, gr amp great ampulla, kat set katepisternal setae, low cal lower calypter, ps g postgena, up cal upper calypter
Fig. 3 in Species identification of Middle Eastern blowflies (Diptera: Calliphoridae) of forensic importance
Fig. 3 The Middle Eastern blowflies of forensic importance. a L. sericata, thorax, dorsal view. b L. cuprina, thorax, dorsal view. c L. sericata, head, posterior view. d L. cuprina, head, posterior view. e L. illustris, base of wing, ventral view. f L. silvarum, head, lateral view. g L. ampullacea, head, lateral view. h L. illustris, posterior part of thorax, lateral view. i L. ampullacea, posterior part of thorax, lateral view. j L. ampullacea, upper and lower calypters, lateral view. k L. porphyrina, upper, and lower calypters, lateral view. l L. papuensis, upper and lower calypters, lateral view. m L. caesar, posterior part of abdomen, male genital apparatus. n L. caesar, ovipositor, VIth tergite, lateral view. o L. illustris, posterior part of abdomen, male genital apparatus. p L. illustris, ovipositor, VIth tergite, lateral view. bas basicosta, cer cercus, cox str coxopleural streak, ep epandrium, h cal humeral callus, in ver inner vertical seta, kat ter katatergite, low cal lower calypter, mr band marginal band, ntl notopleuron, pal palpus, sb scl subcostal sclerite, sur surstylus, up cal upper calypter, VI ter sixth tergite
Fig. 1. Study area and surrounding intertidal habitats. A in Two new species of Perinereis Kinberg, 1865 (Annelida: Nereididae) from the rocky shore of Maharashtra, India, including notes and an identification key to Group 1
Fig. 1. Study area and surrounding intertidal habitats. A. Coastal region of Maharashtra (western India) and collecting localities. B. Aerial view of the rocky intertidal habitat of the study area. C. Intertidal area with rocks covered with seaweed. D. Close-up view of the intertidal area with rocks covered with seaweed and oyster shells. E. Scraped-out seabed (oyster shells, algae, and sediment), burrows of polychaetes and other small invertebrates can be seen. F. Close-up view of burrowing nereidid dwelling among the seabed. Red arrows point to burrowing worms. Scale bars: B = 20 m; C = 1 m; D = 50 cm; E–F = 3 cm.
Fig. 3 in Two new species of Perinereis Kinberg, 1865 (Annelida: Nereididae) from the rocky shore of Maharashtra, India, including notes and an identification key to Group 1
Fig. 3. Perinereis misrai sp. nov. from Mumbai, Maharashtra, India. A–C, F–N. Holotype (MSUBZL-AN-PCh-06), atoke. D–E. Paratype (ZSI-WRC ANN/27), atoke. A. Whole body in dorsal view. B. Anterior end and everted proboscis in dorsal view. C. Everted proboscis in ventral view. D. Left jaw in ventral view, arrows pointing to inner canals. E. Paired oesophageal caeca (arrows) in dorsal view. F–J. Parapodia in anterior view; numbers refer to the chaetiger. K. Heterogomph spiniger from neuropodial subacicular fascicle (chaetiger 25). L. Heterogomph falciger from neuropodial subacicular fascicle (chaetiger 61). M. Heterogomph falciger from neuropodial supracicular fascicle (chaetiger 61). Scale bars: A = 9 mm; B = 0.45 mm; C–D, N = 0.5 mm; E = 0.35 mm; F, J = 0.15 mm; G–I = 0.22 mm; K = 18 μm; L–M = 10 μm.
Fig. 2 in Two new species of Perinereis Kinberg, 1865 (Annelida: Nereididae) from the rocky shore of Maharashtra, India, including notes and an identification key to Group 1
Fig. 2. Perinereis malabarensis sp. nov. from Mumbai, Maharashtra, India. A–E, H–O. Holotype (MSUB-ZL-AN-PCh-04), atoke. F–G. Paratype (ZSI-WRC ANN/26), atoke. A. Whole body in dorsal view. B. Anterior end and everted proboscis in dorsal view. C. Maxillary ring of proboscis in ventral view. D. Oral ring of proboscis in ventral view. E. Oral ring of proboscis in dorsal view. F. Left jaw in ventral view, arrow pointing to inner canals. G. Paired oesophageal caeca (arrows) in dorsal view. H–L. Parapodia in anterior view (except I and K, in posterior view), numbers refer to the chaetiger. M. Homogomph spiniger from notopodia (chaetiger 50). N. Heterogomph falciger from neuropodial supracicular fascicle (chaetiger 50). O. Heterogomph falciger from neuropodial subacicular fascicle (chaetiger 50). Scale bars: A = 6 mm; B = 0.7 mm; C–D, F = 0.5 mm; E = 0.4 mm; G = 0.8 mm; H = 0.22 mm; I–L = 0.23 mm; M = 12 μm; N–O = 16 μm.
Figs 18–25 in Identification Of Central European Species Of Botanophila Lioy, 1864, Based On The Female Terminalia (Diptera: Anthomyiidae)
Figs 18–25. Oviscapts of Botanophila spp. (tergites and sternites): 18 = B. brunneilinea, 19 = B. discreta, 19a = cerci of B. discreta, 19b = cerci of B. striolata, 20 = B. varicolor, 21 = B. gnava, 22 = B. rupicapra, 23 = B. retusa, 24 = B. rubrifrons, 25 = B. helviana
Figs 26–29 in Identification Of Central European Species Of Botanophila Lioy, 1864, Based On The Female Terminalia (Diptera: Anthomyiidae)
Figs 26–29. Oviscapts of Botanophila spp. (tergites and sternites): 26 = B. gentianae, 27 = B. tuxeni, 28 = B. cordifrons, 29 = B. latifrons (lateral view)
Figs 9–17 in Identification Of Central European Species Of Botanophila Lioy, 1864, Based On The Female Terminalia (Diptera: Anthomyiidae)
Figs 9–17. Oviscapts of Botanophila spp. (tergites and sternites): 9 = B. hucketti, 10 = B. fugax, 11 = B. rubrigena, 12 = B. lactucaeformis, 13 = B. biciliaris, 14 = B. profuga, 15 = B. sericea, 16 = B.
Figs 2–8 in Identification Of Central European Species Of Botanophila Lioy, 1864, Based On The Female Terminalia (Diptera: Anthomyiidae)
Figs 2–8. Oviscapts of Botanophila spp. (tergites and sternites): 2 = B. dissecta, 3 = B. phreonine, 4 = B. lobata, 5 = B. sanctimarci, 6 = B. monticola, 7 = B. seneciella, 8 = B. verticella
Fig. 1 in Identification Of Central European Species Of Botanophila Lioy, 1864, Based On The Female Terminalia (Diptera: Anthomyiidae)
Fig. 1. Oviscapt of Botanophila sp.: A = dorsal view; B = ventral view. Abbreviations: c – cerci, ep – epiproct, hy – hypoproct, st – sternite, tg – tergite
Fig. 2. – Dendrophorbium frezierifolium J in On the genus Dendrophorbium (Compositae) in Ecuador: a new species and identification key
Fig. 2. – Dendrophorbium frezierifolium J. Calvo & Á.J. Pérez. A. Habit; B. Stem; C. Adaxial leaf surface and detail of the indumentum; D. Abaxial leaf surface and detail of the indumentum; E. Capitula. [Photos: J. Calvo, near Urdaneta (Azuay)]
Supplementary Material for "Can ZooMS help assess species abundance in highly fragmented bone assemblages? Integrating morphological and proteomic identifications for the calculation of an adjusted ZooMS-eNISP"
<p><span>Supplementary Material for the article "Can ZooMS help assess species abundance in highly fragmented bone assemblages? Integrating morphological and proteomic identifications for the calculation of an adjusted ZooMS-eNISP" by Discamps et al., published in Palaeoanthropology.</span></p> <p><span>SI#1 Cassenade dataset (morphological and ZooMS identifications, sizes, masses, etc.) in RDS format.</span></p> <p><span>SI#2 Cassenade dataset (morphological and ZooMS identifications, sizes, masses, etc.) in CSV format.</span></p> <p><span>SI#3 R script used for making the figures and statistical tests</span></p>
Figure 2 in Molecular identification of Trichinella species by multiplex PCR: new insight for Trichinella murrelli
Figure 2. Electrophoretic profiles of Trichinella murrelli uniplex PCR amplifications.DNA from T. murrelli (isolate code ISS35) reference larvae was used. Lane L = 50 bp ladder. The genes targeted were the Expansion Segment V (ESV, lane 1), Internal Transcribed Spacer 1 II (ITS1 II, Lane 2), ITS1 III (lane 3), ITS2 IV (lane 4), and ITS2 V (lane 5).
Figure 3 in Molecular identification of Trichinella species by multiplex PCR: new insight for Trichinella murrelli
Figure 3. Alignment of the 256 bp fragment of ITS1 II of Trichinella murrelli obtained by uniplex PCR.BLAST analysis revealed 99.6% identity with different clones of T. murrelli, including clone 5 (Accession number KC006421).
Figure 1 in Molecular identification of Trichinella species by multiplex PCR: new insight for Trichinella murrelli
Figure 1. Electrophoretic profiles of Trichinella murrelli and T. britovi larva amplicons after multiplex PCR amplification.DNA extracts from 1 and 10 larvae of T. murrelli (isolate code ISS35) in lane 1 and lanes 2–4, respectively; and of T. britovi (isolate code ISS235) larva in lane 5. Lane L1 = 100 bp ladder.
Fig. 5 in Redescription of Dexiotricha colpidiopsis (Kahl, 1926) Jankowski, 1964 (Ciliophora, Oligohymenophorea) from a Hot Spring in Iceland with Identification Key for Dexiotricha species
Fig. 5. Dexiotricha species from live (A, D, F, G) and silver-stained specimens (B, C, E, H–L). (A–C) D. elliptica (from Fan et al. 2014). (D, E) D. tranquilla (from Augustin and Foissner 1992). (F) D. polystyla (from Foissner 1987). (G, H) D. granulosa (G from Behrend 1916; H from Fan et al. 2014). (I) D. media (from Peck 1974). (J, K) D. colpidiopsis (J from Fauré-Fremiet 1968; H from Jankowski 1964). (L) D. raikovi (from Jankowski 1964). Scale bars: 20 µm.
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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.