In current era of technology, the adoration of Internet of Things (IoT) is rising day by day owing to extended internet connectivity as well as embedded technological proliferation. In this context, data processing and simulations could be greatly accelerated by quantum computing, which could have significant applications in the medical field. By analyzing large datasets, quantum computing may make it possible to create highly customized treatment regimens that take into account a patient's genetics, surroundings, and way of life. Fundamentally, IoT considers internet connectivity beyond the standard appliances like laptops, smart phones, tablets, desktops etc. with quantum monitoring for healthcare applications. Such devices can communicate as well as interact over internet and they can be tracked remotely. In this connection, IoT finds widespread applications in quantum biomedical engineering where the application of engineering principles as well as various design paradigms of biology are applied for various healthcare purposes. In this connection, quantum entanglement, in which particles become coupled in ways that affect one another instantly, may one day allow for instant communication or medical interventions, according to certain theoretical speculations. This idea is frequently investigated in relation to prospective medical advancements, despite the fact that it is highly hypothetical. This leads to closing the gap between engineering and quantum medicine. Moreover, miniaturization of several electronic devices together with the advancement of computer science and telecommunication give rise to novel quantum healthcare applications, thereby leading to outstanding revolution in the field of quantum medicine. Our chapter throws light on the latest illustrations of various implementations of IoT while addressing various technical issues associated with healthcare sector.

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Unveiling the Role of Internet of Things (IoT) in the Landscape of Quantum Healthcare Monitoring

  • Sushree Bibhuprada B. Priyadarshini

摘要

In current era of technology, the adoration of Internet of Things (IoT) is rising day by day owing to extended internet connectivity as well as embedded technological proliferation. In this context, data processing and simulations could be greatly accelerated by quantum computing, which could have significant applications in the medical field. By analyzing large datasets, quantum computing may make it possible to create highly customized treatment regimens that take into account a patient's genetics, surroundings, and way of life. Fundamentally, IoT considers internet connectivity beyond the standard appliances like laptops, smart phones, tablets, desktops etc. with quantum monitoring for healthcare applications. Such devices can communicate as well as interact over internet and they can be tracked remotely. In this connection, IoT finds widespread applications in quantum biomedical engineering where the application of engineering principles as well as various design paradigms of biology are applied for various healthcare purposes. In this connection, quantum entanglement, in which particles become coupled in ways that affect one another instantly, may one day allow for instant communication or medical interventions, according to certain theoretical speculations. This idea is frequently investigated in relation to prospective medical advancements, despite the fact that it is highly hypothetical. This leads to closing the gap between engineering and quantum medicine. Moreover, miniaturization of several electronic devices together with the advancement of computer science and telecommunication give rise to novel quantum healthcare applications, thereby leading to outstanding revolution in the field of quantum medicine. Our chapter throws light on the latest illustrations of various implementations of IoT while addressing various technical issues associated with healthcare sector.