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Home Page / Revolutionizing Cardiac Health Monitoring: Monebo Technologies' Innovative Approach

Revolutionizing Cardiac Health Monitoring: Monebo Technologies' Innovative Approach

by 
Dr. Joseph Starobin

At Monebo Technologies, we're pushing the boundaries of cardiac health monitoring with our groundbreaking approach to visualizing physiological parameters. Our latest innovation superimposes long-term monitoring results onto a 24-hour circadian cycle scale, creating a comprehensive map of circadian variations.

Understanding Circadian Rhythms

Circadian rhythms are natural, 24-hour oscillations in biological processes that originate within an organism. These rhythms are regulated by an internal circadian clock, which coordinates various biological functions to optimize an individual''s fitness. While these rhythms are endogenous, they can be adjusted by external factors such as light, temperature, and redox cycles.

The Monebo Difference: Comprehensive Cardiac Mapping

Our innovative approach provides a visual representation of key physiological parameters throughout the day:

Heart Rate (HR) Monitoring

  • Short-term average HR (green curve): Offers an assessment of fast (shorter than a minute) changes in autonomic nervous system control of blood circulation.
  • Long-term average HR (brown curve): Represents long, up to twenty minutes in duration, changes in autonomic nervous system regulation trends.

Cardiac Muscle Relaxation Indicators

  • The slope of QT-RR interval dependence (yellow curve): Indicator of stability of cardiac electrical excitation.
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About the Author

Dr. Joseph Starobin

Prof. Starobin’s professional career has been devoted to the application of methods of theoretical, mathematical and computational physics to cardiovascular research. In collaboration with his colleagues at MIT and Naval Research Laboratory he has developed an exactly solvable reaction-diffusion model. The Chernyak-Starobin-Cohen model allows one to determine analytically the stable steady-state wave-train solutions and to compute basic cycle length curves that describe the underlying properties of wave propagation in excitable media. A major product of his earlier research was the development and implementation of the theoretical analysis of reaction-diffusion media for predicting cardiac ischemia and malignant cardiac arrhythmias under conditions of quasi-stationary exercise.
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Monebo designs, develops, and licenses complex ECG algorithms to medical device developers, monitoring centers, system integrators and others for use in a variety of monitoring applications.
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