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232 results for “Phytochemicals”
Fig. 6 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 6. (continued).
Fig. 3 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 3. (continued).
Fig. 1 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 1. The structures of monoterpenoids isolated from Iranian Salvia species.
Fig. 5 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 5. The structures of triterpenoids isolated from Iranian Salvia species.
Fig. 6 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 6. The structures of phenolic acids and flavonoids isolated from Iranian Salvia species.
Fig. 5 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 5. (continued).
Fig. 7 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 7. Pharmacological effects of Iranian Salvia species.
Fig. 4 in Iranian Salvia species: A phytochemical and pharmacological update
Fig. 4. The structures of sesterterpenoids isolated from Iranian Salvia species.
Fig. 4 in Efficiency of RAPD, ISSR, iPBS, SCoT and phytochemical markers in the genetic relationship study of five native and economical important bamboos of North-East India
Fig. 4. UPGMA dendrogram of 5 bamboo species based on RAPD, ISSR, SCoT and iPBS combined data.
Fig. 1 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XIV. Structurally diverse terpenoids from the twigs and needles of the endangered plant Picea brachytyla
Fig. 1. Diterpenoids from Picea brachytyla.
Fig. 6 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XIV. Structurally diverse terpenoids from the twigs and needles of the endangered plant Picea brachytyla
Fig. 6. Key NOE correlations of 2, 4, and 5/6.
Fig. 2 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XIV. Structurally diverse terpenoids from the twigs and needles of the endangered plant Picea brachytyla
Fig. 2. Triterpenoids from Picea brachytyla.
Fig. 3 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XIV. Structurally diverse terpenoids from the twigs and needles of the endangered plant Picea brachytyla
Fig. 3. Megastigmene-type derivatives from Picea brachytyla.
Fig. 7 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XIV. Structurally diverse terpenoids from the twigs and needles of the endangered plant Picea brachytyla
Fig. 7. Experimental ECD curves of 1–3 in MeOH.
Fig. 3 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XV. Structurally diverse diterpenoids and sesquiterpenoids from the vulnerable conifer Pseudotsuga sinensis
Fig. 3. ORTEP drawings of compounds 1 and 17.
Fig. 2 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XV. Structurally diverse diterpenoids and sesquiterpenoids from the vulnerable conifer Pseudotsuga sinensis
Fig. 2. Observed key NOE or ROE correlations for indicated compounds.
Fig. 1 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XV. Structurally diverse diterpenoids and sesquiterpenoids from the vulnerable conifer Pseudotsuga sinensis
Fig. 1. Chemical structures of terpenoids 1–40 from Pseudotsuga sinesis.
Fig. 5 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XV. Structurally diverse diterpenoids and sesquiterpenoids from the vulnerable conifer Pseudotsuga sinensis
Fig. 5. Experimental and calculated ECD spectra of 6 in MeOH.
Fig. 4 in Phytochemical and biological studies on rare and endangered plants endemic to China. Part XV. Structurally diverse diterpenoids and sesquiterpenoids from the vulnerable conifer Pseudotsuga sinensis
Fig. 4. Experimental ECD spectra of compounds 1–4 and 14 in MeCN.
Effect of Phytochemicals From Theobroma Cacao on Mental Energy
ClinicalTrials.gov study NCT01651793. IPD Sharing: YES. Countries: 1. Publications: 0.
ScienceDex guides
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Allen Brain Atlas
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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.