1,721,189 research outputs found
EFFECT OF ENRICHED SANJEEVANI AND AGNIHOTRA ON GROWTH, YIELD AND QUALITY OF BRINJAL (Solanum melongena L.)
Brinjal is a crop grown widely all over India and preferred by both rich and poor. The Chhotanagpur plateau of Jharkhand is famous for quality vegetable production and brinjal is very commonly grown in this region almost throughout the year. However, the most of the commercial growers using plant protection chemicals and synthetic fertilizers those are so expensive that poor farmers can’t afford. The extensive uses of agro-chemicals and synthetic fertilizers also reduce the quality of both the produce and the cultivated soil. In this context, an attempt has been made through the present investigation by growing different varieties of brinjal by adopting Vedic (Enriched Sanjeevani) Farming and Homa Induction (Agnihotra) techniques with their respective four non-chemical alternative growing approaches, viz. E1C1: Enriched Sanjeevani (1%), E1C2: Absolute Control (inherent fertility status of the experimental plot); E2C1: Enriched Sanjeevani (1%) + Homa Induction (Agnihotra), and E2C2: Only Homa Induction (Agnihotra). Five varieties of the crop, viz. V1: Swarna Pratibha; V2: Swarna Neelima; V3: Swarna Shakti; V4: Mukta Jhuri; V5: Long Green were grown with their four replications under four growing conditions and the Randomized Completed Block Design was adopted for field trials. Different growth, yield and quality attributing characters of the crop were taken into account and findings revealed that E2C1: Enriched Sanjeevani (1%) + Homa Induction (Agnihotra) was the most suitable growing condition for V2 (Swarna Neelima) with the maximum yield (72.37 t ha-1). Different growth and yield attributes of the crop varieties (especially in the case of V2: Swarna Neelima) were highly influenced by Enriched Sanjeevani (1%) + Homa Induction (Agnihotra) [E2C1] growing condition resulting higher benefit cost ratio of 6.78. Quality contributing attributes were also highly influenced by homa induction (Agnihotra), as a consequence, higher level of dry matter, TSS, and ascorbic acid contents were estimated from almost all samples collected from E2C1: Enriched Sanjeevani (1%) + Homa Induction (Agnihotra), and E2C2: Only Homa Induction (Agnihotra) growing conditions
Decoding Sanjeevani: An Ethnobotanical, Pharmacological, and Historical Perspective on its Potential
Sanjeevani, the revered medicinal plant of great heritage in Indian mythology and traditional medicine, has fascinated herbalists and scientists alike for many centuries. In spite of much controversy regarding botanical classification, several plant species including Selaginella bryopteris and Cressa cretica have been nominated as likely possibilities. The current study investigates Sanjeevani from ethnobotanical, pharmacological, and historical perspectives in order to determine its therapeutic prospect.
Ethnobotanical research has shown that a number of plants connected with Sanjeevani are used in Ayurveda and folk medicine for their healing, adaptogenic, and wound-healing action. Pharmacological studies have shown that these plants have bioactive phytochemicals with antioxidant, anti-inflammatory, and neuroprotective activity, which may justify their traditional use for their potential to heal. There is limited scientific evidence, and further clinical trials are required.
Sanjeevani has always been considered a miraculous drug, and most noticeably is mentioned in the Ramayana for reviving unconscious warriors. The article tries to analyze ancient texts, myths, and modern perceptions in an effort to close the gap between legend and science.
Employing an interdisciplinary strategy, the research in this study hopes to enlighten on the medicinal importance of Sanjeevani by highlighting serious pharmacological evaluations, conservation practices, and merging local knowledge with modern medicine. Through the translation of Sanjeevani’s ancient heritage, this research adds to the understanding of medicinal plants in whole-healing medication and what they can do in modern medicine
A CROSS-SECTIONAL STUDY ON IMPLEMENTATION OF e-SANJEEVANI SERVICES IN RURAL AREAS OF KALABURAGI DISTRICT
Objectives: India adopted national telemedicine service – “e-Sanjeevani” on November 2019, based on “Hub and Spoke Model” where Health and Wellness Centers under Ayushman Bharat (AB-HWCs) will be the spokes and MBBS/specialty doctors will be the hub. It aims to overcome the shortage of doctors/specialists at the ground level, reduce the burden at higher centers, and inculcate expert medical advice seeking behavior among rural people. The objectives of the study are to assess the implementation of e-Sanjeevani services in rural Kalaburagi and to identify the challenges faced by the service providers of e-Sanjeevani in rural Kalaburagi.
Methods: A cross-sectional study was conducted across the AB-HWCs in the rural areas of Kalaburagi district over a period of 3 months. Multistage sampling was done, maintaining a constant of 50%. The total sample size was 75 HWCs. The implementation of e-Sanjeevani was assessed using a pre-designed, pre-tested, and semi-structured questionnaire. The data collected were entered into MS Excel and frequency, percentage, t-test, and Chi-square test were employed for analysis.
Results: e-Sanjeevani is implemented in all the selected subcenters (100%) whereas it was implemented only in 14 (58.35%) of the selected PHCs in Kalaburagi district. The service providers face multiple challenges such as unavailability of specialists online (52.3%), long waiting time (43.1%), network issues (41.5%), and unavailability of investigations/drugs prescribed by specialists (40%). Mean grading of e-Sanjeevani on a scale of 1-10 by service providers in subcenters (7.25±1.76) was also statistically significant than in PHCs (6.07±1.82).
Conclusion: Although e-Sanjeevani is implemented in all subcenters in Kalaburagi district, its smooth functioning is hampered by various factors which call for strengthening of specialist availability and other facilities
Sanjeevani Vidya Samstha Web Page
This paper presents the design and development of a dynamic and user-friendly web page for Sanjeevani Vidya Samstha, an educational institution dedicated to providing quality learning and holistic development. The objective of the web page is to enhance digital presence, streamline information dissemination, and facilitate communication between the institution, students, parents, and faculty. The platform integrates essential modules such as About Us, Courses Offered, Admissions, Faculty Profiles, Events, News & Announcements, and Contact Information. Built using modern web technologies such as HTML5, CSS3, JavaScript, and responsive frameworks, the web page ensures accessibility across various devices and platforms. The paper also discusses the implementation of user-centered design principles and highlights the importance of digital transformation in educational institutions. This initiative aims to strengthen institutional branding, improve transparency, and create a bridge between traditional education systems and emerging digital trends
Symposium- Development of telemedicine technology in India: "Sanjeevani"-An integrated telemedicine application
Telemedicine has been a technological takeaway for the developed
countries. Even in the developing countries, it is increasingly being
viewed as a tool for improving care and enhancing access to healthcare.
Countries like India where the majority of the population lives in
rural areas, where healthcare facilities are inefficient and
inadequate, tools like telemedicine can contribute substantially in
bridging the gap between the demand and supply. "Sanjeevani"-is an
integrated telemedicine application that offers a suite of high utility
features as a part of an Indian telemedicine technology. Sanjeevani is
based on store and forward as well as real-time models
Symposium- Development of telemedicine technology in India: "Sanjeevani"-An integrated telemedicine application
Telemedicine has been a technological takeaway for the developed
countries. Even in the developing countries, it is increasingly being
viewed as a tool for improving care and enhancing access to healthcare.
Countries like India where the majority of the population lives in
rural areas, where healthcare facilities are inefficient and
inadequate, tools like telemedicine can contribute substantially in
bridging the gap between the demand and supply. "Sanjeevani"-is an
integrated telemedicine application that offers a suite of high utility
features as a part of an Indian telemedicine technology. Sanjeevani is
based on store and forward as well as real-time models
Stakeholder Perspectives on India’s National e Sanjeevani Telehealth Platform
This study examines the implementation of India’s national telemedicine service, e-Sanjeevani, through the perspectives of multiple stakeholders, focusing on enablers, barriers, and opportunities for technological advancement. Using a qualitative design, 18 key informant interviews were conducted with patients, Community Health Officers (CHOs), program coordinators, healthcare providers, and members of the development team. Thematic analysis revealed that national policy support, flexibility at the state level, free outpatient consultations, and training incentives for CHOs facilitated adoption. However, persistent systemic barriers include doctor shortages, uneven state-level utilization, long waiting times, poor digital connectivity, increased workload, lack of training, privacy concerns, and limited diagnostic integration. Developers noted challenges linked to customization demands and small technical teams, while program coordinators raised concerns about quota-driven distortions in service delivery. Despite these issues, e-Sanjeevani has notably expanded healthcare access in underserved areas, illustrating the potential of large-scale digital health platforms to reduce inequities. Sustaining this progress will require strengthening infrastructure, workforce capacity, and governance to address bottlenecks and ensure equitable delivery. Future development should also prioritize robust cybersecurity safeguards aligned with India’s data protection framework and stronger integration with laboratories and diagnostic systems to support continuity of care. The platform’s national reach, structured workflows, and large patient database create a foundation for AI-driven features such as automated triage, intelligent scheduling, decision support, multilingual tools, and predictive resource management— enhancements that could improve the efficiency, responsiveness, and resilience of India’s telehealth ecosystem
Sanjeevani Vidya Samstha Web Page
This paper presents the design and development of a dynamic and user-friendly web page for Sanjeevani Vidya Samstha, an educational institution dedicated to providing quality learning and holistic development. The objective of the web page is to enhance digital presence, streamline information dissemination, and facilitate communication between the institution, students, parents, and faculty. The platform integrates essential modules such as About Us, Courses Offered, Admissions, Faculty Profiles, Events, News & Announcements, and Contact Information. Built using modern web technologies such as HTML5, CSS3, JavaScript, and responsive frameworks, the web page ensures accessibility across various devices and platforms. The paper also discusses the implementation of user-centered design principles and highlights the importance of digital transformation in educational institutions. This initiative aims to strengthen institutional branding, improve transparency, and create a bridge between traditional education systems and emerging digital trends
Graphene-diamond junction photoemission microscopy and electronic interactions
Polycrystalline graphene was transferred onto differently terminated epitaxial layers of boron-doped diamond deposited onto single crystal substrates. Chemical and electronic characterisation was performed using energy-filtered photoemission electron microscopy and angle-resolved photoemission spectroscopy. Electronic interaction between the diamond and graphene was observed, where doping of the graphene on the hydrogen and oxygen terminated diamond was n-doping of 250 meV and 0 meV respectively. We found that the wide window of achievable graphene doping is effectively determined by the diamond surface dipole, easily tuneable with a varying surface functionalisation. A Schottky junction using the graphene-diamond structure was clearly observed and shown to reduce downward band bending of the hydrogen terminated diamond, producing a Schottky barrier height of 330 meV
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