
The emergence of the wireless network as a potentially revolutionary innovation has the ability to change the field of medical diagnostics. This in-depth study aims to explore the various aspects of using the latest wireless technologies to improve the standard of care given to patients and the interactions between patients and healthcare providers. This study investigates a wide range of issues such as patient-centric communication technology, 6G based applications using smart technologies, real-time communication protocols, implementation of artificial intelligence (AI) and blockchain technology in healthcare and the use of wireless devices for remote patient monitoring. 6G wireless communication brings transformative capabilities to healthcare, offering ultra-reliable and low-latency communication (URLLC), improved network capacity, and higher data rates. These advances enable the real-time transmission of critical health data, support complex medical applications, facilitate remote consultations, surgical robotics, and AI-driven diagnostics. This study highlights the significance and implications of combining these concepts in the context of 5G and beyond, paving the way for connected healthcare, personalized medicine, and unprecedented levels of efficiency and innovation. In addition, it also investigates the obstacles and potential associated with the implementation of wireless communication in the healthcare industry. These challenges and opportunities include data security and privacy issues, as well as the need for a robust communication infrastructure. This paper demonstrates the influence that wireless communication
blockchain, 5G and 6G wireless communication, network slicing, non orthogonal multiple access (NOMA), Internet of Things (IoTs), Internet of Healthcare Things (IoHTs), physical layer security (PLS), blockchain, massive machine type communication (mMTC), artificial intelligence (AI), TK1-9971, Internet of Medical Things (IOMT), Electrical engineering. Electronics. Nuclear engineering
blockchain, 5G and 6G wireless communication, network slicing, non orthogonal multiple access (NOMA), Internet of Things (IoTs), Internet of Healthcare Things (IoHTs), physical layer security (PLS), blockchain, massive machine type communication (mMTC), artificial intelligence (AI), TK1-9971, Internet of Medical Things (IOMT), Electrical engineering. Electronics. Nuclear engineering
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| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Average | |
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