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Fig. 6 in Early ontogenetic growth stages of Middle Ordovician orthoceratoid cephalopods from Bohemia

Fig. 6. Apical and juvenile shell parts of orthoceratid cephalopods; Middle Ordovician, Darriwilian Stage, Šárka and Dobrotivá formations, Czech Republic. A. Bactroceras sandbergeri (Barrande, 1867), MWB S 06823, Volduchy, third phragmocone chamber (estimated based on shell diameter) and adjacent part of body chamber. B. Orthoceratida indet. sp. 4, MWB S 06827, Volduchy, counterpart of initial chamber and adjacent part of phragmocone and one corroded phragmocone septum; note longitudinal striae. C. Orthoceratida indet sp. 5, NM L 59872, Malé Přílepy, counterpart (C1), latext cast C2); note longitudinal striae.

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Fig. 3 in Early ontogenetic growth stages of Middle Ordovician orthoceratoid cephalopods from Bohemia

Fig. 3. Apical shell of the orthoceratoid Bactroceras sandbergeri (Barrande, 1867); Middle Ordovician, lower Darriwilian Stage, Šárka Formation, Czech Republic. A. MWB S 06761, Mýto-Svatoštěpánský rybník, latex cast of one of counterparts in lateral view, note fine, obliquely transverse surface ornamentation. B. MWB S 06762, Mýto-Svatoštěpánský rybník, counterpart (B1) and its latex cast (B2), in lateral view (initial chamber bent towards dorsum). C. MWB S 06763, Rokycany-Díly, internal mould in lateral view, single (adoralmost) phragmocone chamber showing ventrally situated siphuncle (C1), latex cast of the second counterpart (C2).

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Fig. 2 in Early ontogenetic growth stages of Middle Ordovician orthoceratoid cephalopods from Bohemia

Fig. 2. Apical shell parts of the orthoceratoid Bactroceras sandbergeri (Barrande, 1867), Middle Ordovician, lower Darriwilian Stage, Šárka Formation, Czech Republic. A. MWB S 06759, Rokycany-Díly, internal mould in ventral view (A1), with accompanying trilobite Ormatops sp., brachiopod Euorthisina sp., and indeterminate hyolith; detail (A2), note the decrease of apical angle at second phragmocone chamber; latex cast of counterpart in ventral view (A3). B. MWB S 06764, Těškov, internal mould in lateral view, venter on right hand-side (initial chamber bent towards dorsum), initial and second phragmocone chamber preserved as counterpart. C. MWB S 06760, Těškov, latex casts of both sides of counterparts (C1, C2), note suspicious surface structures. D. NM L 59577, Praha-Hanspaulka, latex cast of counterpart.

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Fig. 1 in Early ontogenetic growth stages of Middle Ordovician orthoceratoid cephalopods from Bohemia

Fig. 1. Position of Ordovician rocks of the Prague Basin within the Bohemian Massif and the localities from which the herein studied specimens originate see the text below). 1, Praha-Šárka cihelna (brickyard); 2, Praha-Šárka; 3, Praha-Hanspaulka; 4, Malé Přílepy; 5, Lhotka u Berouna; 6, Těškov; 7, MýtoSvatoštěpánský rybník; 8, Rokycany-Díly; 9, Volduchy. Adapted after Manda (2008).

opencc-by-4.0May 2020View details →
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Fig. 14 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 14. Skeletal reconstruction of MSF 15.8B., preserved elements highlighted in white, grey elements restored following adult Plateosaurus skeletons SMNS 13200 (von Huene 1926) and GPIT 1 (Mallison 2010a, b).

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Fig. 11 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 11. Femur, tibia, fibula, and proximal tarsus of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Left femur, MSF 15.8.565, in medial (A1), anterior (A2), lateral (A3), posterior (A4), proximal (A5), and distal (A6) views. B. Right femur, MSF 15.8.380, in lateral (B1), anterior (B2), and proximal (B3) views (note different effects of compaction). C. Left tibia, MSF 15.8.381, in anterior (C1), lateral (C2), medial (C3), proximal (C4), and distal (C5) views. D. Left fibula, MSF 15.8.518, in lateral (D1) and medial (D2) views. E. Right calcaneum, MSF 15.8.469, in proximal view. F. Right astragalus, MSF 15.8.585, in proximal (F1) and anterior (F2) views. G. Left astragalus, MSF 15.8.420, in proximal (G1) and anterior (G2) views.

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Fig. 10 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 10. Pelvic girdle of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Left ilium, MSF 15.8.717, in lateral (A1) and medial (A2) views. B. Right ilium, MSF 15.8.486, in lateral (B1) and medial (B2) views (note differences due to effects of compaction). C. Right pubis, MSF 15.8.383, in lateral (C1) and anterior (C2) views. D. Articulated ischia, MSF 15.8.421, in posterior (D1) and right lateral (D2) views.

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Fig. 9 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 9. Manus of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Left mc I (MSF 15.8.2032). B. Left mc II (MSF 15.8.480). C. Left mc IIII (MSF 15.8.668). D. Left mc IV (MSF 15.8.2033). E. Left mc V (MSF 15.8.597). In palmar (medial) (A1–E1) and dorsal (lateral) (A2–E2) views. F. Left p V-1 (MSF 15.8.671). G. Left p IV-1 (MSF 15.8.2014) and p IV-2 (MSF 15.8.2015). H. Left p III-1 (MSF 15.8.1077). I. Left p III-2 (MSF 15.8.677). J. Left p III-3 (MSF 15.8.481). In dorsal (lateral) view (F–J). K. Left u III (MSF 15.8.2018), in dorsal (lateral) (K1) and anterior (preaxial) (K2) views. L. Left p II-1 (MSF 15.8.489). M. Left p II-2 (MSF 15.8.477) in dorsal (lateral) view (L, M). N. Left u II (MSF 15.8.2017), in dorsal (lateral) (N1) and anterior (preaxial) (N2) views. O. Left p I-1 (MSF 15.8.467), in dorsal (lateral) view. P. Left u I (MSF 15.8.2016), in dorsal (lateral) (P1) and anterior (preaxial) (P2) views. Q. Right distal carpal I (MSF 15.8.2013). R. Right distal carpal II (MSF 15.8.406). In proximal view (Q, R).

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Fig. 7 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 7. Pectoral girdle of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Left scapula, MSF 15.8.55. B. Right scapula, MSF 15.8.870. C. Left coracoid, MSF 15.8.552. D. Right coracoid, MSF 15.8.1035. All in lateral (external) views.

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Fig. 4 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 4. Middle and posterior dorsal vertebrae of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Dorsal vertebra 6, MSF 15.8.654 (neural arch) and MSF 15.8.906 (centrum), in left lateral (A1), dorsal (A2), ventral (A3), anterior (A4), and posterior (A5) views. B. Dorsal vertebra 7, MSF 15.8.1076 (neural arch) and MSF 15.8.437 (centrum), in left lateral (B1), dorsal (B2), ventral (B3), anterior (B4), and posterior (B5) views. C. Dorsal vertebra 8, MSF 15.8.885, in left lateral (C1), dorsal (C2), ventral (C3), anterior (C4), and posterior (C5) views. D. Dorsal vertebrae 9 or 10, MSF 15.8.728 (neural arch) and MSF 15.8.679 (centrum), in left lateral (D1), dorsal (D2), ventral (D3), anterior (D4), and posterior (D5) views. E. Dorsal vertebra 12, MSF 15.8.468 (neural arch) and MSF 15.8.2007 (centrum), in left lateral (E1), dorsal (E2), ventral (E3), anterior (E4), and posterior (E5) views. Scale bars 10 mm.

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Fig. 8 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 8. Humerus and antebrachium of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Right humerus, MSF 15.8.825, in lateral (A1), anterior (A2), medial (A3), and posterior (A4) views. B. Left humerus, MSF 15.8.520, in lateral (B1) and anterior (B2) views (note effects of compaction). C. Left radius, MSF 15.8.526 and ulna, MSF 15.8.525, in lateral view (C1) and left ulna, in anterior view with radius not shown (C2). D. Right radius, MSF 15.8.680, in lateral view.

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Fig. 3 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 3. Anterior dorsal vertebrae of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Centrum of?dorsal vertebra 1, MSF 15.8.2003, in left lateral view. B. Dorsal vertebra 2, MSF 15.8.908 (neural arch) and MSF 15.8.978 (centrum), in left lateral (B1), dorsal (B2), ventral (B3), anterior (B4), and posterior (B5) views. C. Dorsal vertebra 3, MSF 15.8.2004 (neural arch) and MSF 15.8.2005 (centrum), in left lateral (C1), dorsal (C2), ventral (C3), anterior (C4), and posterior (C5) views. D. Dorsal vertebra 4, MSF 15.8.477, in left lateral (D1), dorsal (D2), ventral (D3), anterior (D4), and posterior (D5) views. E. Dorsal vertebra 5, MSF 15.8.2006, in left lateral (E1), dorsal (E2), ventral (E3), anterior (E4), and posterior (E5) views. Centra are only depicted in lateral view. Scale bars 10 mm.

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Fig. 13 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 13. Comparative plot of zygapophyseal lengths of Plateosaurus neural arches. Note size difference between large juvenile (MSF 15.8B.) and adult neural arches described by Hofmann and Sander (2014).

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Fig. 12 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 12. Pes of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Left pes, MSF 15.8.2019, in dorsal (A1) and medial (A2) views. B. Distal tarsal III or IV, MSF 15.8.823, in distal view. C. Right metatarsal V, MSF 15.8.826, in dorsal anterior) view.

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Fig. 5 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 5. Sacral and caudal vertebrae of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Sacral neural arch, MSF 15.8.558, in left lateral (A1), dorsal (A2), ventral (A3), anterior (A4), and posterior (A5) views. B. Anterior caudal neural arch, MSF 15.8.889, in left lateral view. C. Mid-caudal neural arch, MSF 15.8.972, in left lateral (C1), anterior (C2), and posterior (C3) views. D. Mid-caudal neural arch, MSF 15.8.476, in left lateral view (note fused transverse process). E. Distal caudal vertebra, MSF 15.8.371 (note closed neurocentral suture), in left lateral view. F. Proximal caudal centrum, MSF 15.8.2008, in lateral view. G. Proximal caudal centrum, MSF 15.8.488, in lateral (G1) and ventral (G2) views. H. Proximal caudal centrum, MSF 15.8.975, in lateral view. I. Mid-caudal centrum, MSF 15.8.1058, in lateral view. Scale bars 10 mm.

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Fig. 2 in Postcranial osteology of the first early-stage juvenile skeleton of Plateosaurus trossingensis from the Norian of Frick, Switzerland

Fig. 2. Cervical vertebrae of juvenile Plateosaurus cf. trossingensis Fraas, 1913 skeleton MSF 15.8B. from the Norian of Frick, Switzerland. A. Cervical vertebra 2 (axis), MSF 15.8.2001, in left lateral (A1), dorsal (A2), anterior (A3), posterior (A4), and ventral (A5) views. B. Cervical vertebra 3, MSF 15.8.669 (neural arch) and MSF 15.8.936 (centrum), in left lateral (B1), dorsal (B2), anterior (B3), posterior (B4), and ventral (B5) views, C. Cervical vertebra 4, MSF 15.8.1032 (neural arch) and MSF 15.8.979 (centrum), in left lateral (C1), dorsal (C2), anterior (C3), posterior (C4), and ventral (C5) views. D. Cervical vertebra 6, MSF 15.8.2002 (neural arch) and MSF 15.8.592 (centrum), in left lateral (D1), dorsal (D2), ventral (D3), anterior (D4), and posterior (D5) views. E. Cervical vertebra 9, MSF 15.8.671 (neural arch) and MSF 15.8.905 (centrum), in left lateral (E1), dorsal (E2), ventral (E3), anterior (E4), and posterior (E5) views. F. Cervical vertebra 1 (atlas), MSF 15.8.2000, in?anterior view. Centra are omitted in ventral view to show neural arch. Scale bars 10 mm.

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Figure. Litsea anamalayana Robi & Udayan, sp. nov. A, Flowering twig; B, twig with unopened umbels; C, brachyblast with opened umbels; D, female flowers (close-up); E, tepals; F, outer eglandular staminodes and inner glandular staminodes; G, gynoecium; H, early stage of fruit setting; I, mature fruits. Photographs: A. J. Robi. in LITSEA ANAMALAYANA (LAURACEAE) A NEW SPECIES FROM NELLIYAMPATHY HILLS, INDIA.

Figure. Litsea anamalayana Robi & Udayan, sp. nov. A, Flowering twig; B, twig with unopened umbels; C, brachyblast with opened umbels; D, female flowers (close-up); E, tepals; F, outer eglandular staminodes and inner glandular staminodes; G, gynoecium; H, early stage of fruit setting; I, mature fruits. Photographs: A. J. Robi.

opencc-by-4.0Nov 2021View details →
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Preprints Servers as a Hub for Early-Stage Research Outputs

<p>Data for &quot;Preprints as a Hub for Early-Stage Research Outputs&quot;</p> <p>This data set contains three documents results from a survey focused on how&nbsp;<br> preprint servers relate to open science. See http://researchpreprints.com/2017/12/18/a-short-research-project-where-do-preprints-fit-in/<br> for the research plan.</p> <p>&nbsp;- submission systems and websites.xlsx</p> <p>A check of submission pages for preprint servers. Opportunities to link to other early-stage<br> research outputs were recorded. Information displayed on websites was also checked on an&nbsp;<br> ad hoc basis.</p> <p>&nbsp;- preprint abstracts.xlsx<br> &nbsp;<br> A check of 25 or 50 preprints for selected preprint servers, to see what information linking<br> to other early-stage research outputs was visible.</p> <p>&nbsp;- preprint operator survey<br> &nbsp;<br> Individual responses from a survey of those operating preprint servers. Names and email addresses<br> were collected but are not reported.</p>

opencc-by-4.0Mar 2018View details →
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Ultrasound Vevo 2100 data on ascending and abdominal aneurysms in ApoE-deficient mice - baseline and early stage

<p>This dataset contains raw data of ultrasound measurements taken of the ascending and abdominal aorta of Ang II-infused mice. Data were taken at baseline (prior to pump implantation) and at an early stage of disease development. Data can be openend with the Vevo 2100 analysis software provided by Fujifilm.</p> <p>&nbsp;</p> <p>&nbsp;</p>

opencc-by-4.0Apr 2019View details →
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Figure 8 in Is there a chance for conservation breeding? Ex situ management, reproduction, and early life stages of the Harlequin toad Atelopus flavescens Duméril & Bibron, 1841 (Amphibia: Anura: Bufonidae)

Figure 8. Individual recognition of a male Atelopus flavescens based on color pattern, but note the change in color (photographs taken 12 July 2009 and 31 July 2011, respectively). Photographs by D. Karbe.

opencc-by-4.0Aug 2012View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record