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113 results for “Form D”
Text-fig. 34. Synchrotron radiation X-ray tomographic microscopy (SRXTM, a–h) images of "Paisia-like follicle"; Catefica locality, Portugal. a–d) Volume rendering of follicles in lateral (a, c) and ventral (b, d) views showing the decurrent stigmatic region that extends from base of the follicle to the apex; note papillate zone forming a probable stigma along the full length of the ventral suture; e) Longitudinal section (volume rendering cut at orthoslice yz0326) near the base of the follicle showing two ovules with a striate-reticulate surface (asterisks); note transverse fibers lining the inner follicle wall and large cells of the mesocarp; f) Transverse section (volume rendering cut at orthoslice xy2475) of follicle showing two rows of ovules borne on placentae on either side of the ventral suture (asterisks); note also the pronounced and densely-spaced papillae around the ventral suture; g) Transverse section (orthoslice xy1988) of follicle showing two ventral vascular bundles and one dorsal bundle (arrows) and ovules/seeds borne on two placentae, one on either side of the ventral suture; note the remains of the small thin-walled cells of the outer epidermis that cover the thicker-walled cells of the mesocarp; h) Transverse section (orthoslice xy2860) of follicle showing two ventral bundles and one dorsal bundle (arrows) and ovules/seeds in two rows on the placentae, one on either side of the ventral suture; note the remains of small epidermal cells and the large rounded cells of the mesocarp with thicker walls. Specimens, Catefica 49-S174916 (a, b), Catefica 49-S174917 (c–f, h), Catefica 50-S171525 (g). Scale bars = 300 Μm (a–d), 100 Μm (e–h). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms
Text-fig. 34. Synchrotron radiation X-ray tomographic microscopy (SRXTM, a–h) images of "Paisia-like follicle"; Catefica locality, Portugal. a–d) Volume rendering of follicles in lateral (a, c) and ventral (b, d) views showing the decurrent stigmatic region that extends from base of the follicle to the apex; note papillate zone forming a probable stigma along the full length of the ventral suture; e) Longitudinal section (volume rendering cut at orthoslice yz0326) near the base of the follicle showing two ovules with a striate-reticulate surface (asterisks); note transverse fibers lining the inner follicle wall and large cells of the mesocarp; f) Transverse section (volume rendering cut at orthoslice xy2475) of follicle showing two rows of ovules borne on placentae on either side of the ventral suture (asterisks); note also the pronounced and densely-spaced papillae around the ventral suture; g) Transverse section (orthoslice xy1988) of follicle showing two ventral vascular bundles and one dorsal bundle (arrows) and ovules/seeds borne on two placentae, one on either side of the ventral suture; note the remains of the small thin-walled cells of the outer epidermis that cover the thicker-walled cells of the mesocarp; h) Transverse section (orthoslice xy2860) of follicle showing two ventral bundles and one dorsal bundle (arrows) and ovules/seeds in two rows on the placentae, one on either side of the ventral suture; note the remains of small epidermal cells and the large rounded cells of the mesocarp with thicker walls. Specimens, Catefica 49-S174916 (a, b), Catefica 49-S174917 (c–f, h), Catefica 50-S171525 (g). Scale bars = 300 Μm (a–d), 100 Μm (e–h).
Supplementary material 2 from: Malek-Hosseini MJ, Flot J-F, Fatemi Y, Babolimoakher H, Kuntner M, Diripasko OA, Jelić D, Bogutskaya NG (2023) The first record of a stygobiotic form of Garra rufa (Heckel, 1843), sympatric with Garra tashanensis Mousavi-Sabet, Vatandoust, Fatemi & Eagderi, 2016 (Teleostei, Cyprinidae), in Iranian subterranean waters. Subterranean Biology 46: 97-127. https://doi.org/10.3897/subtbiol.46.108396
Alignment S1
Supplementary material 1 from: Malek-Hosseini MJ, Flot J-F, Fatemi Y, Babolimoakher H, Kuntner M, Diripasko OA, Jelić D, Bogutskaya NG (2023) The first record of a stygobiotic form of Garra rufa (Heckel, 1843), sympatric with Garra tashanensis Mousavi-Sabet, Vatandoust, Fatemi & Eagderi, 2016 (Teleostei, Cyprinidae), in Iranian subterranean waters. Subterranean Biology 46: 97-127. https://doi.org/10.3897/subtbiol.46.108396
GenBank accession numbers for COI (codes in bold are our original sequences)
Figure 1 from: Shulyak N, Liushuk K, Semeniuk O, Yarema N, Uglyar T, Popovych D, Sverstiuk A, Ciciura R, Logoyda L (2022) Study of the dissolution kinetics of drugs in solid dosage form with lisinopril and atorvastatin and intestinal permeability to assess their equivalence in vitro. Pharmacia 69(1): 61-67. https://doi.org/10.3897/pharmacia.69.e77319
Figure 1 Typical multiple reaction monitoring chromatograms of atorvastatin.
Figure 2 from: Shulyak N, Liushuk K, Semeniuk O, Yarema N, Uglyar T, Popovych D, Sverstiuk A, Ciciura R, Logoyda L (2022) Study of the dissolution kinetics of drugs in solid dosage form with lisinopril and atorvastatin and intestinal permeability to assess their equivalence in vitro. Pharmacia 69(1): 61-67. https://doi.org/10.3897/pharmacia.69.e77319
Figure 2 Typical multiple reaction monitoring chromatograms of lisinopril.
Figure 6 from: Crowther A, Fautin D, Wallace C (2011) Stylobates birtlesi sp. n., a new species of carcinoecium-forming sea anemone (Cnidaria, Actiniaria, Actiniidae) from eastern Australia. ZooKeys 89: 33-48. https://doi.org/10.3897/zookeys.89.825
Figure 6 - Distribution of species of Stylobates.
Figure 2 from: Crowther A, Fautin D, Wallace C (2011) Stylobates birtlesi sp. n., a new species of carcinoecium-forming sea anemone (Cnidaria, Actiniaria, Actiniidae) from eastern Australia. ZooKeys 89: 33-48. https://doi.org/10.3897/zookeys.89.825
Figure 2 - Longitudinal section through tentacle of Stylobates birtlesi sp. n. paratype MTQ G57580.
X-Ray diffraction images from a crystal of the NTD domain of D. radiodurans DdrC - Crystal form xMJ7102
<p>Dimer of the N-terminal domain (NTD) of DNA-Damage Response Protein C (DdrC) from Deinococcus radiodurans. Crystal Form xMJ7102</p>
The Effect of Vitamin D Sublingual Spray on Vitamin D3 Levels in the Blood Compared to Other Forms of Vitamin D3
ClinicalTrials.gov study NCT06142136. IPD Sharing: NO. Countries: 1. Publications: 0.
Colon, rectum and rectal tumor organoids. Effects of calcitriol (active form of Vitamin D) treatment
GEO Series GSE143782. Homo sapiens. 36 samples. Type: Expression profiling by high throughput sequencing.
Active forms of vitamin D as preventive and therapeutic agents in cutaneous melanoma: review and perspective
GEO Series GSE248660. Homo sapiens. 10 samples. Type: Expression profiling by high throughput sequencing.
FIGURE 1. Stage I. A in Larval development of the shrimp Hippolyte sapphica d'Udekem d'Acoz, 1993 forma A and B (Decapoda: Caridea: Hippolytidae) reared in the laboratory, confirmation of the conspecific status of the two forms
FIGURE 1. Stage I. A. Whole specimen; B. Telson; C. Antennula; D. Antenna; E. Mandible; F. Maxillula; G. Maxilla; H. 1st Maxilliped; I. 2nd Maxilliped; J. 3rd Maxilliped; K. 1st Pereiopod. Scales: A. 0.0464mm; B. 0.046mm; C. 0.0057mm; D. 0.033mm; E. 0.02mm; F. 0.0057mm; G. 0.0215mm; H. 0.0023mm; I. 0.0044mm; J. 0.0083mm; K. 0.0215mm.
Data platform related to ERDF postdoctoral project No. 1.1.1.2/VIAA/4/20/718 "The role of vitamin D gene polymorphisms and its receptors in the modulation of intestinal inflammation in patients with relapsing and progressive forms of multiple sclerosis".
<p><strong>Description of contents of the data platform (dataset 1 ) based on the ERDF postdoctoral project No. 1.1.1.2/VIAA/4/20/718</strong><strong> “</strong><strong>The role of vitamin D and its receptor gene polymorphisms in the modulation of intestinal inflammation in patients with relapsing and progressive forms of multiple sclerosis</strong><strong>”. </strong></p> <p><strong>About the project and gathered data:</strong></p> <p>The two datasets contain clinical data on 289 sex-balanced samples (approximately 60% women / 40% men)) were created at the MS Clinic of the Latvian Maritime Medical Center (LMMC) in 2011 (disease duration of 1-51 years); the collection was updated within the framework of the ERDF MS project (2017-2020) and replenished during the ERDF postdoctoral project No. 1.1.1.2/VIAA/4/20/718 “The role of vitamin D and its receptor gene polymorphisms in the modulation of intestinal inflammation in patients with relapsing and progressive forms of multiple sclerosis” (2021-2023).</p> <p>The following pre-selected information was assessed from the clinic database for each patient for the <strong>first dataset (1 Data_MS collection)</strong>: gender, age, age of onset of multiple sclerosis (MS), year of onset, the first symptoms, exacerbations in the first year, clinical MS disease course (estimated Expanded Disability Status Scale (EDSS) at diagnosis, Disease-Modifying Therapy (DMT), clinical activity, Magnetic resonance (MR) activity, other autoimmune diseases, duration of illness, time of the transition from relapsing-remitting MS course (RRMS) to secondary-progressive MS course (SPMS); year of start SPMS, RRMS>SPMS (RRMS duration in years). Clinical information was distributed according to the development of disease progression over five visits. Information related to the forms of disability progression of MS was assessed from medical files for the given period (12 years) for a complete picture of the history of disease progression.</p> <p>The following pre-selected information was assessed from the clinic database for each patient for the first dataset <strong>(</strong><strong>2 </strong><strong>Data_MS_2011_2018_2022):</strong> <strong>Clinical</strong> <strong>data for 2011:</strong> Age, clinical course of MS, estimated Expanded Disability Status Scale (EDSS)<strong>,</strong> Clinical activity, Invalidity progression, MR activity, NEDA-3*, IgA, g/l, IgM, g/l, IgG, g/l, CD3, cell/ml, CD4, cell/ml, CD8, cell/ml, Disease-Modifying Therapy (DMT), period of therapy.</p> <p>*Progress of disease and response to treatment was evaluated in terms of “no evidence of disease activity” (NEDA) standard (Stangel, 2015) measured by relapses, progression of disability and new and/or enlarging demyelinating lesions as seen on MRI.</p> <p><strong>Updated data for 2018</strong>: Duration of illness, clinical course of MS, EDSS</p> <p><strong>Updated data</strong> <strong>for 2020-22 years:</strong> EDSS 2020 and EDSS 2022, CRP (ug/mL), µg/ml, 25-OH-Vitamin D (ng/mL), Total IgE (IU/mL), Endotoxin (LPS), EU/m, Human LBP (ng/mL), EndoCab IgA, AMU/ml, EndoCab IgG, GMU/ml, EndoCab IgG, GMU/ml.</p>
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.