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Viswanathan, N.

Publications and source records attributed to Viswanathan, N..

2 recordsLinked to original sources

GRAYU: Graph-based Database integrating Ayurvedic formulations, medicinal plants, phytochemicals and diseases

The translation of Indias extensive traditional knowledge on indigenous medicinal plants into modern therapeutic solutions is contingent upon a systematic framework. While traditional Indian medicine offers a rich source of therapeutic leads, this knowledge is often not structured for modern computational analysis, creating a barrier to systematic drug discovery. To this end, we present GRAYU, a curated and comprehensive online database that integrates data across multiple categories, connecting 1039 traditional formulations to 12,949 indigenous plants, 129,542 phytochemicals, and 13,480 indicated diseases. It also provides insights into 1,382,362 plant-phytochemical, 116,824 plant-disease, 2,405 plant-formulation, and 4,087 formulation-disease associations. Case studies on phytochemical analogs, sustainable plant substitution, and disease-network pharmacology showcased the potential of integrative graphs to decode shared molecular signatures and therapeutic networks across traditional Ayurvedic formulations. GRAYU represents a user-friendly resource for researchers to investigate complex bio-associations and formulate novel therapeutic hypotheses, with insights from traditional Indian medicine. GRAYU is available at https://caps.ncbs.res.in/GRAYU/.

bioinformatics↗

At Which Low Amplitude Modulated Frequency Do Infants Best Entrain? A Frequency Tagging Study

Previous infant entrainment research has shown neural entrainment to a wide range of stimuli and amplitude modulated frequencies. However, it is unknown if infants neurally entrain more strongly to some frequencies more than others, and to which low amplitude modulated frequency infants show the strongest entrainment. The current study seeks to address this by testing the neural entrainment of N=23 4-6-month-old infants and N=22 control group adult caregivers while they listened to a range of sinusoidally amplitude modulated beep stimuli at rest (no sound), 2, 4, 6, 8, 10 and 12 Hz. Analysis examined differences across power and phase, regions of interest predetermined by previous literature and by segmented time windows. Results showed that the strongest entrainment was at 2Hz for both adult and infant participants; that there was no significant difference in power and phase, entrainment was occipital temporal and slightly left fronto-central in adults and right fronto-central and left occipito-temporal in infants, leading to some regions of interest used in previous studies being significant in infants and all regions of interest being significant in adults. Segmenting by time window did not show any significant increase or decrease in entrainment over time, but longer time windows showed a stronger entrainment response. In conclusion, it is important to choose appropriate stimulation frequencies when investigating entrainment between stimulation frequencies or across ages; whole head recording is recommended to see the full extent of activation; there is no preference on power vs phase analyses; and longer recordings show stronger effects. Author Contribution StatementIves, J., conceptualisation, data collection and curation, formal analysis, methodology, writing - original draft; Labendzki, P., data collection and curation, formal analysis, writing - review & editing; Perapoch Amado, M., data collection and curation, writing - review & editing; Greenwood, E., data collection and curation, participant recruitment, writing - review & editing; Viswanathan, N., data collection and curation, writing - review & editing; Northrop, T., data collection and curation, participant recruitment, writing - review & editing; Wass, S., conceptualisation, funding acquisition, methodology, project administration, supervision, writing - review & editing. Highlights2Hz amplitude modulation stimulation showed the strongest neural entrainment We discuss power vs phase analyses of infant and adult frequency tagging responses We illustrate topographic differences in adult and infant neural responses

neuroscience↗