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FIGURE 1 in Habitat and community structure modulate fish interactions in a neotropical clearwater river
FIGURE 1 | A. Olho d'Água River located in the upper Paraguay River basin, Central Western Brazil. B. Note that clear water allows observation of the underwater vegetation even in aerial photographs. Three sampled habitats are: C. Lake; D. Plant; and E. Rock.
Figure 2. Serum IL-6 in Wound-healing and cytokine-modulating potential of medicinal oil formulation comprising leaf extract of Murraya koenigii and olive oil
Figure 2. Serum IL-6 level of treatment groups. *The level of IL-6 enhanced 154% when compared to Group 1; #The level of IL-6 declined 38.86% when compared to Group 2; $The level of IL-1β declined 48.3% when compared to Group 2.
Figure 4. A in Wound-healing and cytokine-modulating potential of medicinal oil formulation comprising leaf extract of Murraya koenigii and olive oil
Figure 4. A comparative wound healing study. (A1) Control animals, Dorsal view of wound on the 3rd day after creating wound; (A2) Dorsal view of the wound after treating with povidone-iodine solution (PIS) on 3rd day; (A3) Dorsal view of the wound after treating with medicinal oil (MO) on 3rd day; (B1) Control animals, Dorsal view of wound on the 6th day after creating wound; (B2) Dorsal view of the wound after treating with povidone-iodine solution (PIS) on 6th day; (B3) Dorsal view of the wound after treating with medicinal oil (MO) on 6th day; (C1) Control animals, Dorsal view of wound on the 9th day after creating wound; (C2) Dorsal view of the wound after treating with povidone-iodine solution (PIS) on 9th day; (C3) Dorsal view of the wound after treating with medicinal oil (MO)on 9th day.
Figure 3 in Wound-healing and cytokine-modulating potential of medicinal oil formulation comprising leaf extract of Murraya koenigii and olive oil
Figure 3. Serum TNF- α level of treatment groups. *The level of TNF- α enhanced 215% when compared to Group 1; #The level of TNF- α declined 39.25% when compared to Group 2; $The level of IL-1β declined 50% when compared to Group 2.
Figure 4 in Photosynthetic metabolism and antioxidant in Ormosia arborea are modulated by abscisic acid under water deficit?
Figure 4. Activity of the catalase enzyme in leaf (A) and root (B) of Ormosia arborea seedlings irrigated (I and I 10 µM ABA) and submitted to water deficit conditions (SI and SI 10 µM ABA) in the different evaluation periods: zero time (T0), first null photosynthesis (1 st P0), second null photosynthesis (2nd P0), recovery (REC) and final evaluation (END). Upper case letters differ between trial times and lowercase letters between treatments.
Figure 1 in Photosynthetic metabolism and antioxidant in Ormosia arborea are modulated by abscisic acid under water deficit?
Figure 1. Photosynthetic rate (A) – (A), transpiration rate (E); (B) and water use efficiency (A/E); (C) as a function of the evaluation days of Ormosia arborea irrigated seedlings (I and I 10 µM ABA) and submitted to water deficit conditions (SI and SI 10 µM ABA). Continuous vertical line indicates the periods of evaluation: time zero (T0), first null photosynthesis (1st P0), second null photosynthesis (2nd P0), recovery (REC) and final evaluation (END).
Figure 2 in Photosynthetic metabolism and antioxidant in Ormosia arborea are modulated by abscisic acid under water deficit?
Figure 2. Stomatal conductance (gs) – (A) internal CO 2 concentration (Ci); (B) and instantaneous carboxylation efficiency CO 2 (A/Ci); (C) of Ormosia arborea irrigated seedlings (I and I 10 µM ABA) and submitted to water deficit conditions (SI and SI 10 µM ABA). Continuous vertical line indicates the periods of evaluation: time zero (T0), first null photosynthesis (1st P0), second null photosynthesis (2nd P0), recovery (REC) and final evaluation (END).
Figure 3 in Photosynthetic metabolism and antioxidant in Ormosia arborea are modulated by abscisic acid under water deficit?
Figure 3. Water potential (Ψw) (A) and Potential efficiency quantum of photosystem II (Fv/Fm) (B) as a function of the evaluation periods between irrigated seedlings (I) of Ormosia arborea (I and I 10 µM ABA) and submitted to the water deficit condition (SI and SI 10 µM ABA). Lowercase letters compare the different treatments in the same evaluation period and uppercase letters compare the same treatment in the different evaluation periods.
Figure 6 in Photosynthetic metabolism and antioxidant in Ormosia arborea are modulated by abscisic acid under water deficit?
Figure 6. Enzymatic activity of superoxide dismutase in leaves (SOD Leaves) (A) and roots (SOD roots) (B) of Ormosia arborea seedlings irrigated (I and I 10 µM ABA) and submitted to water deficit conditions (SI and SI 10 µM ABA) in the different evaluation periods: zero time (T0), first null photosynthesis (1st P0), second null photosynthesis (2nd P0), recovery (REC) and final evaluation (END). Upper case letters differ between trial times and lowercase letters between treatments.
Figure 2 in Exogenously applied nutrients can improve the chickpea productivity under water stress conditions by modulating the antioxidant enzyme system
Figure 2. Effect of foliar application of nutrients on relative growth rate (g g-1 day-1) of chickpea genotypes in Bahawalpur (a) and Cholistan (b). Whereas D1= well watered; D2= Drought at flowering+ pod formation + grain filling stage; D3= Drought at flowering stage; DAS= days after sowing.
Figure 1 in Exogenously applied nutrients can improve the chickpea productivity under water stress conditions by modulating the antioxidant enzyme system
Figure 1. Effect of foliar application of nutrients on crop growth rate (g m-2 day-1) of chickpea genotypes in Bahawalpur (a) and Cholistan (b). Whereas D1= well watered; D2=Drought at flowering+ pod formation + grain filling stage; D3= Drought at flowering stage; DAS= days after sowing.
The Phonon-Modulated Jahn–Teller Distortion of the Nitrogen Vacancy Center in Diamond
<p>The data in this repository consists of three data sets that yielded transient absorption spectra, 2D electronic spectra, and 3D coherence spectra for the nitrogen vacancy (NV) center. These data supported the conclusions of the published report, namely that the LO Phonon of the diamond lattice modulates the Jahn-Teller distortion of the NV center and influences its excited-state dynamics. The data were taken between 2016 and 2020 and reflect the advancements made to the ultrafast instrumentation of te Turner Lab during this time period. The Matlab scripts and data are presented "as is", however we have attempted to include processed datasets legible to any open-source programming language when possible. Please consult the README.md file for further information.</p>
Prymnesium parvum 12B1 polyketide synthase (PKS) domain and module analysis
<p>The .zip file contains source data and code for an analysis that determines the modular structure from the domain structure of type I modular polyketide synthases (PKSs) in the Prymnesium parvum strain 12B1 gene annotation. In brief, a regex is used against a string representation of the PKS domain structures to determine the module structure. Some manual modifications for calling modules were performed where they deviated. Resulting data is available in the .zip file as .bed, .FASTA, .xlsx files. See Manuscript for further details.</p> <p>For versions after v1.0.5, analyses of B-type PKZILLA-B1 (i.e. from strain RCC3426) are also included. </p>
Data Sets "Modulation of electrical activity of proteinoid microspheres with chondroitin sulfate clusters"
<p>Data Sets "Modulation of electrical activity of proteinoid microspheres with chondroitin sulfate clusters"</p>
Dataset for the "Modulation waveform determination in sinusoidal frequency modulated interferometers"
<p>This dataset supports the findings of the study presented in the paper "Modulation waveform determination in sinusoidal frequency modulated interferometers".</p> <p>The acquired data is saved in Python NumPy array format (.npy) and divided into four folders:</p> <ul> <li> <p><strong>Method_verification_with_PTA</strong>: This folder contains two measurements for the verification of the method proposed in the paper, as described in Section 4.1.</p> </li> <li> <p><strong>Amplitude_sweep</strong> and <strong>Frequency_sweep</strong>: These folders contain data on the characterization of laser optical frequency modulation with different modulation amplitudes and frequencies. The results of analyzing this data are presented in Section 4.2 of the paper.</p> </li> <li> <p><strong>Intensity_modulation_correction_test</strong>: This folder contains measurements for additional investigation on the influence of intensity modulation correction on the RRI method, as described in Section 4.3.</p> </li> </ul>
Nonlinear method to assess autonomic modulation during controlled breathing: dataset
<p><strong>Please, cite this article if using dataset:</strong></p> <p><strong>A. Uryga, M. Najdek, M. Najda, C. Mataczyński and T. Buchner, "Nonlinear Method to Assess Autonomic Modulation During Controlled Breathing," <em>2024 13th Conference of the European Study Group on Cardiovascular Oscillations (ESGCO)</em>, ZARAGOZA, Spain, 2024, pp. 1-2, doi: 10.1109/ESGCO63003.2024.10766976.</strong></p> <p> </p> <p><strong>General information:</strong></p> <p>This database contains data from 34 young healthy volunteers (median age: 22 years, range: 18-31 years) who were measured at the Neuroengineering Laboratory at Wroclaw University of Science and Technology (WUST) between October 2023 and January 2024.</p> <p>The study was approved by the bioethical committee (KB-179/2023/N).</p> <p>We would like to thank Prof. Magdalena Kasprowicz, the head of the Brain Physics group (https://www.brainlab.pwr.edu.pl/), for her help and support during the research.</p> <p>The study was support by National Science Centre, Poland (UMO-2022/47/D/ST7/00229).</p> <p><strong>Signal recordings description:</strong></p> <ul> <li>ABP was measured non-invasively by a servo-controlled plethysmograph (CNAP, CNSystems Medizintechnik GmbH, Graz, Austria, in n = 19 subjects, and Finapres Nova, FMS Medical Systems, in n = 15 subjects). The cuff was placed on the middle finger of the left hand and held at the level of the heart.</li> <li>Expired end-tidal CO2 (EtCO2), carbon dioxide (CO2) concentration, and respiratory rate (RR) were measured via a nasal cannula using a portable capnography monitor (RespSense™, NONIN, Plymouth, USA).</li> <li><strong>Protocol</strong>: After a resting epoch lasting at least 5 minutes, a controlled breathing session was initiated with three 5-minute recordings at respiratory rates of 6, 10, or 15 breaths/min (0.1 Hz, 0.17 Hz, and 0.25 Hz, respectively), guided by a digital metronome.</li> </ul> <p><strong>Data description:</strong></p> <ul> <li><strong>Metadata</strong>: Including device, gender (male M, female F), and age</li> <li><strong>Autonomic Nervous System parameters</strong>: Including <ul> <li>Phase-Rectified Signal Averaging (PRSA) - a non-linear approach used to quantify the acceleration (AC) and deceleration (DC) capacity of the heart</li> <li>Entropy: Fuzzy entropy (FuzzyEn) functions calculated for R-R intervals, which were implemented in NeuroKit2</li> <li>Joint Symbolical Analysis (JSA) - a method that identifies short-term repeated patterns in a signal (JSA_sym and JSA_diam)</li> </ul> </li> <li><strong>Physiological parameters</strong>: Including <ul> <li>Mean arterial blood pressure (ABP)</li> <li>Mean end-tidal carbon dioxide (EtCO2)</li> <li>Mean heart rate (HR)</li> </ul> </li> </ul>
Fig. 2 in Fig. 8 in Androgenic Modulation in the Primary Ovarian Growth of the Japanese eel, .
Fig. 2. Mean (± 95% confidence intervals) defence score of male (M) and female (F) Red-backed Shrikes in relation to interspecific territory overlapping. (BW –) – pairs breeding in areas beyond the breeding territories of the associated species (Barred Warbler); (BW +) – pairs breeding within the boundaries of associate species.
Fig. 1 in Fig. 8 in Androgenic Modulation in the Primary Ovarian Growth of the Japanese eel, .
Fig. 1. Mean (± 95% confidence intervals) defence score of male (M) and female (F) Barred Warblers in relation to interspecific territory overlapping. (RBS –) – pairs breeding in areas beyond the breeding territories of the associated species (Red–backed Shrike); (RBS +) – pairs breeding within the boundaries of the associated species.
Fig. 7 in Androgenic Modulation in the Primary Ovarian Growth of the Japanese eel, .
Fig. 7. in vitro detection of arα and arβ expression during ovarian tissue culture within 24 hours. The serial time course of mRNA expression was screened within 24 hours. mRNA expression patterns of (A) arα and (B) arβ within 24 hours in L-15 medium tissue culture without treatment. Quantitative mRNA expression data are presented as the mean ± SD, and statistically significant differences were determined by one-way ANOVA and LSD post hoc tests (p <0.05).
Fig. 6 in Androgenic Modulation in the Primary Ovarian Growth of the Japanese eel, .
Fig. 6. in vivo mRNA expression of fshr following AR's agonist and antagonist treatments. Ovarian tissue was collected from female eels. (A) Controls, n = 4; SPH, n = 4; SPH + FLUT, n = 4. (B) Controls, n = 4; MT, n = 7; MT + FLUT, n = 4. The mRNA expression data from female eels' ovaries are presented as the mean ± SD, and statistically significant differences were determined via one-way ANOVA and LSD post hoc tests (p <0.05).
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.