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Additional advantages of the contactless electromagnetic resonance spectroscopy method in measurements in the smart family physician's office.

Authors

Gulmira Kenzhebayeva

Rubric:Technical sciences in general
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This article examines the additional advantages of the contactless electromagnetic resonance spectroscopy method for measurement, online integrative analysis of viral infection, and continuous monitoring of its development under real-world conditions. Particular attention is paid to the method's extremely low energy consumption, which significantly reduces electronic noise while improving the sensitivity and accuracy of measurements.

The article also discusses the design features of the sensor module, including the use of planar and three-dimensional coils, and highlights the potential of the technology for detecting viral infections, assessing antibody activity, and monitoring biological, chemical, and physical parameters in medical and laboratory applications.

The proposed approach combines high sensitivity, contactless measurement, and real-time monitoring, providing a foundation for next-generation intelligent diagnostic systems with broad applications in medicine, biotechnology, and continuous monitoring.

Keywords

Contactless electromagnetic resonance spectroscopy method
Measurements in the smart family physician's office
Additional advantages in the smart family physician's office when using the contactless electromagnetic resonance spectroscopy method for measurement
Additional advantages in the smart family physician's office when using the contactless electromagnetic resonance spectroscopy method for measurement and online integrative analysis of the state of viral infection in the body of the measurement subject
as well as for continuous monitoring of the stages and phases of viral infection development under the real-world complex conditions of the smart family physician's office.
Smart family physician's office

Authors

Gulmira Kenzhebayeva

Rubric:Technical sciences in general
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References:

US Patent Application 20190309576 A1.  Faircloth, B. O., et al. October 10, 2019.
 Visible Diode Laser Systems, Apparatus and Methods of Use.

US Patent Application 20190357884 A1. Williams, M. R., et al. November 28, 2019.
 Surgical System with Tools for Laser Marking and Laser Cutting.

US Patent Application 20200086388 A1. Zediker, M. S., et al. March 19, 2020.
 Additive Manufacturing System with Addressable Array of Lasers and Real-Time Feedback Control of Each Source.

US Patent Application 20190249240 A1. Rothberg, J. M., et al. August 15, 2019.
 Pulsed Laser and Bioanalytic System.

US Patent Application 20110313298 A1. Rylander, C., et al. December 22, 2011.
 Fiber Array for Optical Imaging and Therapeutics.

US Patent Application 20120248078 A1. Zediker, M. S., et al. October 4, 2012.
 Control System for High Power Laser Drilling, Workover and Completion Unit.

US Patent Application 20160369332 A1. Rothberg, J. M., et al. December 22, 2016.
 Pulsed Laser and Bioanalytic System.

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