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2,817 results for “Fats”
Dataset: Aura FAT Projects Acquisition Corp (AFARU) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Aura FAT Projects Acquisition Corp (AFAR) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Aura FAT Projects Acquisition Corp (AFARU) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Aura FAT Projects Acquisition Corp (AFARW) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Aura FAT Projects Acquisition Corp (AFAR) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Fig. 3 in Body Measurements And Harversting Dynamics Of The Fat Dormouse (Glis Glis L.) In The Mountainous Part Of Croatia
Fig. 3. Correlation between the body mass of caught fat dormice (Glis glis L.) and the days of hunting for the locality of Vrbovsko during the autumn of 1994
Fig. 6 in Body Measurements And Harversting Dynamics Of The Fat Dormouse (Glis Glis L.) In The Mountainous Part Of Croatia
Fig. 6. Correlation between the number of caught fat dormice (Glis glis L.) and the days in the hunting season for the locality of Gerovo during the autumn of 1999
Fig. 5 in Body Measurements And Harversting Dynamics Of The Fat Dormouse (Glis Glis L.) In The Mountainous Part Of Croatia
Fig. 5. Correlation between the number of caught fat dormice (Glis glis L.) and the days in the hunting season for the locality of Vrbovsko during the autumn of 1994
Fig. 4 in Body Measurements And Harversting Dynamics Of The Fat Dormouse (Glis Glis L.) In The Mountainous Part Of Croatia
Fig. 4. Correlation between the body mass of caught fat dormice (Glis glis L.) and the days of hunting for the locality of Gerovo during the autumn of 1999
Fig. 1 in Body Measurements And Harversting Dynamics Of The Fat Dormouse (Glis Glis L.) In The Mountainous Part Of Croatia
Fig. 1. The area of protection, permitted hunting and research of the fat dormouse (Glis glis L.) in Croatia
Fig. 2 in Body Measurements And Harversting Dynamics Of The Fat Dormouse (Glis Glis L.) In The Mountainous Part Of Croatia
Fig. 2. Trends in harvesting the fat dormouse (Glis glis L.) in the municipalities of Gerovo (1), Tršće (2) and Prezid (3) between 1991 and 2001
Fig. 5 in Wing-Length, Body Mass And Fat Reserves Of Robins (Erithacus Rubecula) During Autumn Migration In Hungary
Fig. 5. Mean body mass changes of the recaptured juveniles (Wilcoxon test, Tömörd, N = 84, W = 1986, p <0.05; Sumony, N = 104, W = 2744, NS; Ócsa, N = 141, W = 7135, p <0.001; Szalonna, N = 124 W = 4279, p <0.05. Since only a few individuals were recaptured in Izsák during the study period
Fig. 3 in Wing-Length, Body Mass And Fat Reserves Of Robins (Erithacus Rubecula) During Autumn Migration In Hungary
Fig. 3. Dendrogram of the cluster analysis of the juveniles' body mass in August (A), September (B), October (C) at the study sites (Euclides distance and Ward-Orlóczy method)
Fig. 4 in Wing-Length, Body Mass And Fat Reserves Of Robins (Erithacus Rubecula) During Autumn Migration In Hungary
Fig. 4. Mean fat reserves changes of the recaptured juveniles (Wilcoxon test, Tömörd, N = 84, W = 1282, p <0.05; Sumony, N = 105, W = 1079, NS; Ócsa, N = 141, W = 1967, p <0.05; Szalonna, N = 124 W = 1757, p <0.001. Since only a few individuals were recaptured in Izsák during the study pe-
Fig. 2 in Wing-Length, Body Mass And Fat Reserves Of Robins (Erithacus Rubecula) During Autumn Migration In Hungary
Fig. 2. Dendrogram of the cluster analysis of the juveniles' wing-length in August (A), September (B), October (C) at the study sites (Euclides distance and Ward-Orlóczy method)
Fig. 1 in Anesthesia and transport of fat snook Centropomus parallelus with the essential oil of Nectandra megapotamica (Spreng.) Mez
Fig. 1. Mortality after transport of fat snook Centropomus parallelus in plastic bags with essential oil from old leaves of Nectandra megapotamica (15 or 30 µL L-1) or ethanol (E) added to the water. W: control with only water. Data presented as means ± SEM (n = 3). a, freshwater - no significant difference between groups or times was observed and the treatments E and 15µL L-1 are superimposed on the first line; b, seawater - values with different superscripts are significantly different (P <0.05). # Significant difference from arrival (0 h).
Figure 6 in Potential Hepatoprotective Effect of Cheatomorpha gracilis extract against High Fat Diet (HFD)-Induced Liver Damage, and its characterization by HPLC
Figure 6. Photomicrographs of hepatocytes in control and experimental treated mice. Liver tissue sections stained with oil red O (×200) (A) and scored (B) by the semi-quantitative percentage of damaged area. (Control) control mice and (AEC) treated with C. gracilis extract (250 mg/kg) alone, showed normal structure. (HFD) high fed diet treated mice, showed a significant increase of lipid content; (AEC + HFD) co-treated with high fed diet and alga extract (250 mg/kg), representative micrograph revealed significantly reduced lipid liver content. Values are expressed as the mean ± SD. **p<0.01; ***p <0.001, indicates a significant difference compared to the control group. ++ p<0.01, indicates a significant difference compared to the HFD alone group.
Figure 3 in Potential Hepatoprotective Effect of Cheatomorpha gracilis extract against High Fat Diet (HFD)-Induced Liver Damage, and its characterization by HPLC
Figure 3. Effect of ACE supplementation on plasma levels of inflammatory proteins. Data are given as mean ± SD for group of eight mice each. Values are statistically presented as follows: HFD and AEC-treated groups vs. control group: *p <0.05; **p<0.01. HFD + AEC group vs. HFD group: +p <0.05; ++p<0.01.
Figure 2 in Potential Hepatoprotective Effect of Cheatomorpha gracilis extract against High Fat Diet (HFD)-Induced Liver Damage, and its characterization by HPLC
Figure 2. Antioxidant activity of different extracts of C. gracilis. Values are mean ± SD of three experimental tests, mg GAE/g DR: mg gallic acid equivalents per g dry residue. Table 4. Effect of AEC on body weight, liver and adipose tissues relative weight of control and treated mice groups.
Figure 5 in Potential Hepatoprotective Effect of Cheatomorpha gracilis extract against High Fat Diet (HFD)-Induced Liver Damage, and its characterization by HPLC
Figure 5. Photographs of liver tissues in control and experimental treated mice. Liver tissue sections stained with hematoxylin and eosin (original magnification × 400). (A), in control mice showing normal histoarchitecture and radiating cell arrangement. (B) In mice treated with aqueous extract of C.gracilis (AEC) (250mg/kg) alone showing the normal liver structure. (C) In High fed diet (HFD) mice, representative photograph shows a significant lipid accumulation. (D) In group co-treated with HFD and AEC, was observed the reduction of fat accumulation.
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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.