Artificial Intelligence-driven Informatics and Medical Internet of Things, Gebunden
Artificial Intelligence-driven Informatics and Medical Internet of Things
Sie können den Titel schon jetzt bestellen. Versand an Sie erfolgt gleich nach Verfügbarkeit.
- Herausgeber:
- Bharat Bhushan, Khursheed Aurangzeb, Narayan C. Debnath, Sheena N.
- Verlag:
- Taylor & Francis Ltd, 12/2026
- Einband:
- Gebunden
- Sprache:
- Englisch
- ISBN-13:
- 9781041082842
- Artikelnummer:
- 12820137
- Umfang:
- 432 Seiten
- Erscheinungstermin:
- 7.12.2026
- Serie:
- Industry 5.0
- Hinweis
-
Achtung: Artikel ist nicht in deutscher Sprache!
Klappentext
Healthcare is undergoing a profound transformation driven by the convergence of Artificial Intelligence (AI) and the Medical Internet of Things (MIoT). This powerful integration is enabling a new era of smart healthcare systems that are predictive, personalized, and continuously connected. Artificial Intelligence driven Informatics and Medical Internet of Thingspresents a comprehensive exploration of this emerging paradigm. It brings together cutting-edge research, practical applications, and interdisciplinary perspectives to illustrate how intelligent algorithms and connected medical devices are reshaping modern healthcare. A key strength of this book lies in its forward-looking perspective, examining emerging trends such as agentic AI, smart healthcare infrastructures, and the future of connected medical systems.
This book:
- Covers a wide range of topics from foundational concepts of AI and IoT to advanced machine learning models, deep learning applications, and real-time healthcare analytics.
- Highlights innovative solutions for disease prediction, diagnosis, and clinical decision support.
- Addresses critical challenges such as data security, privacy, and ethical considerations in MIoT-enabled environments.
- Demonstrates the transformative impact of AI-driven informatics in real-world settings through detailed case studies and domain-specific applications, including diabetes care, epilepsy detection, Alzheimer's diagnosis, and emergency healthcare systems.
- Integrates Electronic Health Records (EHRs), multimodal AI systems, and intelligent chatbots further underscores the move toward patient-centric and data-driven healthcare ecosystems and provides valuable insights into how these technologies can be harnessed to improve healthcare accessibility, efficiency, and quality on a global scale.
Bridging technology and medicine, this book offers a roadmap toward a smarter, more connected, and equitable healthcare future and is primarily written for senior undergraduates, graduate students, and academic researchers in electrical engineering, electronics and communications engineering, computer science and engineering, and biomedical engineering.
Biografie (Bharat Bhushan)
Dr. Bharat Bhushan received an M.S. in mechanical engineering from the Massachusetts Institute of Technology in 1971, an M.S. in mechanics and a Ph.D. in mechanical engineering from the University of Colorado at Boulder in 1973 and 1976, respectively, an MBA from Rensselaer Polytechnic Institute at Troy, NY in 1980, Doctor Technicae from the University of Trondheim at Trondheim, Norway in 1990, a Doctor of Technical Sciences from the Warsaw University of Technology at Warsaw, Poland in 1996, and Doctor Honoris Causa from the Metal-Polymer Research Institute of National Academy of Sciences at Gomel, Belarus in 2000. He is a registered professional engineer (mechanical) and presently an Ohio Eminent Scholar and The Howard D. Winbigler Professor in the Department of Mechanical Engineering, Graduate Research Faculty Advisor in the Department of Materials Science and Engineering, and the Director of the Nanotribology Laboratory for Information Storage & MEMS/NEMS (NLIM) at the Ohio State University, Columbus, Ohio. He is an internationally recognized expert of tribology on the macro- to nanoscales, and is one of the most prolific authors in the field. He is considered by some a pioneer of the tribology and mechanics of magnetic storage devices and a leading researcher in the fields of nanotribology and nanomechanics using scanning probe microscopy and applications to micro/nanotechnology.