Potential innovative designs of medical equipment based on contactless monitoring methods
Authors
Maryna Savchenko

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Annotation
This article examines innovative contactless methods for monitoring the composition of liquid media as a technological foundation for the development of next-generation medical equipment, particularly intelligent diagnostic systems and real-time monitoring platforms. Special attention is devoted to modern impedance-resonance and electromagnetic resonance technologies, as well as their advanced modifications employing novel engineering materials, composite materials, and carbon-carbon structures subjected to repeated pyrolysis to enhance measurement sensitivity, stability, and analytical performance.
Computer modeling performed by the author demonstrates that these technologies provide the engineering basis for the development of more than ten categories of innovative medical devices. Guided by advanced analytical methodologies, including the Theory of Inventive Problem Solving (TRIZ), the author conducted an extensive patent landscape analysis that resulted in the identification of numerous relevant U.S. patents and patent applications supporting the proposed technological concepts.
Based on comprehensive engineering analysis and systematic computer modeling using the author's proprietary innovation methodology, a series of technical proposals for new medical technologies and innovative engineering projects has been formulated. These concepts integrate advanced contactless monitoring methods with novel materials and composite technologies while providing opportunities for both horizontal and vertical integration with digital technologies, artificial intelligence, and modern computer engineering systems.
The publication also emphasizes that the preliminary engineering evaluation of the proposed devices and medical systems was carried out using professional computer-aided engineering and design software rather than conventional graphical modeling tools, thereby increasing the technical reliability and practical feasibility of the proposed innovation concepts.
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Authors
Maryna Savchenko

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References:
United States Patent Application №. US 20130173180 A1. Determination of Attributes of Liquid Substances. Published July 4, 2013.
United States Patent Application №. US 20120029845 A1. Apparatus and Method for Fluid Monitoring. Published February 2, 2012.
