Manipal Interdisciplinary Health Science and Technical Reports-2023


Book Description

The “Manipal Interdisciplinary Health Science and Technical Reports-2023” is a comprehensive compilation of cutting-edge research and innovative findings across the fields of health sciences and technology. This edition presents a diverse array of studies conducted by experts at Manipal Academy of Higher Education, showcasing advancements in medical research, biotechnology, healthcare innovations, and technical applications. Each report within this volume highlights interdisciplinary approaches and collaborative efforts aimed at addressing some of the most pressing challenges in health and technology today. Ideal for researchers, practitioners, and students, this collection serves as a valuable resource for those seeking to stay at the forefront of scientific and technical progress.




Manipal Interdisciplinary Health Science and Technical Reports-2023


Book Description

The "Manipal Interdisciplinary Health Science and Technical Reports-2023" is a comprehensive compilation of cutting-edge research and innovative findings across the fields of health sciences and technology.




Sustainability in Healthcare


Book Description

"Sustainability in Healthcare: Advances in mHealth AI and Robotics" explores sustainable methods in the healthcare industry, focusing on rural and community healthcare improvement, the use of robots for sustainability, and the implementation of AI in healthcare. It also explores additive manufacturing, mobile health, biomedical engineering, and telemedicine's role in healthcare sustainability management. The book also discusses the ethical concerns, environmental, social, and economic implications of sustainability in healthcare supply chain management and pandemic management.




Tissue Engineering


Book Description

Tissue Engineering: Current Status and Challenges bridges the gap between biomedical scientists and clinical practitioners. The work reviews the history of tissue engineering, covers the basics required for the beginner, and inspires those in the field toward future research and application emerging in this fast-moving field. Written by global experts in the field for those studying and researching tissue engineering, the book reviews regenerative technologies, stem cell research and regeneration of organs. It then moves to soft tissue engineering (heart, vascular, muscle and 3D scaffolding and printing), hard tissue engineering (bone, dental myocardial and musculoskeletal) and translational avenues in the field. - Introduces readers to the history and benefits of tissue engineering - Includes coverage of new techniques and technologies, such as nanotechnology and nanoengineering - Presents concepts, ideology and theories which form the foundation for next-generation tissue engineering




UNESCO Science Report, 2005


Book Description

This is the fourth in a series of UNESCO reports which periodically examine the emerging trends in scientific research and higher education around the world. Written by an independent team of experts, each chapter describes how research and development activities are organised in the following countries or regions: the United States, Latin America and the Spanish-speaking Caribbean, the Caribbean Common Market (CARICOM) countries, the European Union, South-East Europe, the Russian Federation, the Arab States, Africa, Japan, East and South-East Asia, South Asia. Key themes highlighted include: the development of 'knowledge societies'; the drive for innovation and the role of the private sector; the importance of international co-operation in broadening the number of countries involved in scientific research; and the strengthening position of Asia on the international scene, driven largely by China's dynamism.




Machine Learning for Societal Improvement, Modernization, and Progress


Book Description

Learning has been fundamental to the growth and evolution of humanity and civilization. The same concepts of learning, applied to the tasks that machines can perform, are having a similar effect now. Machine learning is evolving computation and its applications like never before. It is now widely recognized that machine learning is playing a similar role to electricity in the late 19th and early 20th centuries in modernizing the world. From simple high school science projects to large-scale radio astronomy, machine learning has revolutionized it all—however, a few of the applications clearly stand out as transforming the world and opening up a new era. Machine Learning for Societal Improvement, Modernization, and Progress showcases the path-breaking applications of machine learning that are leading to the next generation of computing and living standards. The focus of the book is machine learning and its application to specific domains, which is resulting in substantial civilizational progress. Covering topics such as lifespan prediction, smart transportation networks, and socio-economic data, this premier reference source is a dynamic resource for data scientists, industry leaders, practitioners, students and faculty of higher education, sociologists, researchers, and academicians.




Advances in Material Science


Book Description

Selected peer-reviewed full text papers from the International Conference on Advances in Material Science (ICAMS 2020) Selected, peer-reviewed papers from the International Conference on Advances in Material Science (ICAMS 2020), October 3, 2020, Pune, India







The Social Context of Technological Experiences


Book Description

This book demonstrates how technology and society shape one another and that there are intrinsic connections between technological experiences and social relationships. It employs an array of theoretical concepts and methodological tools to examine the technology–society nexus among three urban groups in India (traditional caste-based handloom weavers, subaltern Dalit communities, and informal female labour). It provides evidence of how innovations such as industrial technologies, communication technologies, and workplace technologies are not only about strides in science and engineering but also about politics and sociology on the ground. The book contributes to the growing research in innovation studies and technology policy that establishes how technological processes and outcomes are contingent on complex sociological variables and contexts. The author offers an inclusive, holistic, and interdisciplinary approach to understanding the field of innovation and technological change and development by involving various methodologies (network analysis, archival work, oral histories, focus group discussions, interviews). The book will serve as reference for researchers and scholars in social sciences, especially those interested in development studies, science and technology policy and innovation studies, information and communication technology (ICT) policy, public policy, management, social work and research methods, economics, sociology, social exclusion and subaltern studies, women’s studies, and South Asian studies. It will also be useful to nongovernmental organisations, activists, and policymakers.




Human resources for medical devices - the role of biomedical engineers


Book Description

This publication addresses the role of the biomedical engineer in the development, regulation, management, training, and use of medical devices. The first part of the book looks at the biomedical engineering profession globally as part of the health workforce: global numbers and statistics, professional classification, general education and training, professional associations, and the certification process. The second part addresses all of the different roles that the biomedical engineer can have in the life cycle of the technology, from research and development, and innovation, mainly undertaken in academia; the regulation of devices entering the market; and the assessment or evaluation in selecting and prioritizing medical devices (usually at national level); to the role they play in the management of devices from selection and procurement to safe use in healthcare facilities. The annexes present comprehensive information on academic programs, professional societies, and relevant WHO and UN documents related to human resources for health as well as the reclassification proposal for ILO. This publication can be used to encourage the availability, recognition, and increased participation of biomedical engineers as part of the health workforce, particularly following the recent adoption of the recommendations of the UN High-Level Commission on Health Employment and Economic Growth, the WHO Global Strategy on Human Resources for Health, and the establishment of national health workforce accounts. The document also supports the aim of reclassification of the role of the biomedical engineer as a specific engineer that supports the development, access, and use of medical devices within the national, regional, and global occupation classification system.