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Background: Amid the fast-paced world, nature has a therapeutic modality for healing individuals both physiologically and psychologically. One such practice mentioned in an ancient Indian text is 'Vanacharya', which provides a deep connection with nature and a means of achieving overall well-being. Vancharya is a practice with profound roots in Indian spiritual and philosophical traditions that view the environment as a sacred and valuable source of knowledge and healing.
Purpose: This purpose of this experimental research is to explore the therapeutic benefits of 'vancharya', in healing subtle systems of energy or the biofield present within the body like Aura Field (AF), Overall Alignment of Chakra (OAC), Overall, Chakra Energy (OCE), Stress Level (SL), Overall Energy Level (OEL).
Methods: This research aims to evaluate the effect of 'vancharya', by examining 50 young adult participants over a one-week period (7 days). The study utilised a non-experimental single-group pre- and post-research design. The data collection was done using an advanced Biowell machine. The obtained data were analysed through a Paired Sample t-test by using SPSS software.
Results: The obtained results indicated significant changes in the AF, OAC, OCE, while showing no significant impact on participants' SL and OEL. Subjects also reported improved sleep patterns, less impulsivity, reduced aggression and fewer fluctuations of mood during their sessions in day-to-day activities.
Conclusion: Therefore, the research indicates that 'Vancharya' as a therapeutic modality had a significant impact on the subtle systems of energy among young adults. The obtained result from this intervention programme clearly indicates that subtle systems present in the body can have an impact as early as within 7 days itself, whereas, for visible impact within the individual (for instance stress level or overall energy level of the body), the duration of the intervention can be increased.
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http://dx.doi.org/10.1177/09727531251340505 | DOI Listing |
ACS Nano
September 2025
International School of Microelectronics, Dongguan University of Technology, Dongguan 523808, China.
Mimicking human brain functionalities with neuromorphic devices represents a pivotal breakthrough in developing bioinspired electronic systems. The human somatosensory system provides critical environmental information and facilitates responses to harmful stimuli, endowing us with good adaptive capabilities. However, current sensing technologies often struggle with insufficient sensitivity, dynamic response, and integration challenges.
View Article and Find Full Text PDFPLoS One
September 2025
Graduate Program in Public Health - PPGSC/UFES, Vitória, Espírito Santo, Brazil.
A comprehensive understanding of the factors influencing the epidemiological dynamics of COVID-19 across the pandemic waves-particularly in terms of disease severity and mortality-is critical for optimizing healthcare services and prioritizing high-risk populations. Here we aim to analyze the factors associated with short-term and prolonged hospitalization for COVID-19 during the first three pandemic waves. We conducted a retrospective observational study using data from individuals reported in the e-SUS-VS system who were hospitalized for COVID-19 in a state in a southeast state of Brazil.
View Article and Find Full Text PDFNanomicro Lett
September 2025
Nanomaterials & System Lab, Major of Mechatronics Engineering, Faculty of Applied Energy System, Jeju National University, Jeju, 63243, Republic of Korea.
Wearable sensors integrated with deep learning techniques have the potential to revolutionize seamless human-machine interfaces for real-time health monitoring, clinical diagnosis, and robotic applications. Nevertheless, it remains a critical challenge to simultaneously achieve desirable mechanical and electrical performance along with biocompatibility, adhesion, self-healing, and environmental robustness with excellent sensing metrics. Herein, we report a multifunctional, anti-freezing, self-adhesive, and self-healable organogel pressure sensor composed of cobalt nanoparticle encapsulated nitrogen-doped carbon nanotubes (CoN CNT) embedded in a polyvinyl alcohol-gelatin (PVA/GLE) matrix.
View Article and Find Full Text PDFMagn Reson Chem
September 2025
Institute of Scientific and Industrial Research, Osaka University, Osaka, Japan.
We reveal contrasting behaviors in molecular motion between the two materials, including the identification of resonance-enhanced dynamic features in elastomers. We present a depth-resolved analysis of molecular dynamics in semicrystalline polytetrafluoroethylene (PTFE) and fully amorphous fluorinated elastomer (SIFEL) films using static-gradient solid-state F NMR imaging. By measuring spin-lattice relaxation rates ( ) at multiple frequencies and evaluating the corresponding spectral density functions, we reveal distinct dynamic behaviors between the two materials.
View Article and Find Full Text PDFBrain Behav
September 2025
Department of Electrical and Computer Engineering, University of Tabriz, Tabriz, Iran.
Purpose: Depression among college students is a growing concern that negatively affects academic performance, emotional well-being, and career planning. Existing diagnostic methods are often slow, subjective, and inaccessible, underscoring the need for automated systems that can detect depressive symptoms through digital behavior, particularly on social media platforms.
Method: This study proposes a novel natural language processing (NLP) framework that combines a RoBERTa-based Transformer with gated recurrent unit (GRU) layers and multimodal embeddings.