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Biomedical Signals and Sensors II

Linking Acoustic and Optic Biosignals and Biomedical Sensors

Eugenijus Kaniusas

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Springer Berlin img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Sonstiges

Beschreibung

The book set develops a bridge between physiologic mechanisms and diagnostic human engineering. While the first volume is focused on the interface between physiologic mechanisms and the resultant biosignals, this second volume is devoted to the interface between biosignals and biomedical sensors. That is, in the first volume, the physiologic mechanisms determining biosignals are described from the basic cellular level up to their advanced mutual coordination level. This second volume, considers the genesis of acoustic and optic biosignals and the associated sensing technology from a strategic point of view. As a novelty, this book discusses heterogeneous biosignals within a common frame. This frame comprises both the biosignal formation path from the biosignal source at the physiological level to biosignal propagation in the body, and the biosignal sensing path from the biosignal transmission in the sensor applied on the body up to its conversion to a, usually electric, signal.

Some biosignals arise in the course of the body’s vital functions while others map these functions that convey physiological data to an observer. It is highly instructive how sound and light beams interact with biological tissues, yielding acoustic and optic biosignals, respectively. Discussed phenomena teach a lot about the physics of sound and physics of light (as engineering sciences), and, on the other hand, biology and physiology (as live sciences). The highly interdisciplinary nature of biosignals and biomedical sensors is obviously a challenge. However, it is a rewarding challenge after it has been coped with in a strategic way, as offered here. The book is intended to have the presence to answer intriguing “Aha!” questions.

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Schlagwörter

Cardiac activity, Light wavelength, Propagation of light, Biomedical sensing book, Inhomogeneity effects on sounds, Apneic sounds, Exposure limits, Blood oxygenation, Volume effects on light, Biomedical instrumentation, Physiological phenomena acoustic biosignals, Probing depth of light, Coupling of body sounds, Volume effects on sounds, Biosignal monitoring, Transmission and reflection modes, Microphone, Respiratory activity, Spatial distribution of body sounds Optic biosignals, Contacting force and skin temperature, Inhomogeneity effects on light, Formation of body sounds, Snoring sounds, Light modulation by physiological phenomena, Formation of optic biosignals, Biosignal analysis, Penetration depth of light, Phenomenological physiology, Source-sink distance, Adverse health effects, Motion artefacts, Chestpiece, Stethoscope, eye and skin, Lung sounds, Application regions, Heart sounds, Mutual interrelations of sounds, Propagation of sounds, Coupling of light, Light emission, Light sink, Organs at risk, Physiological mechanisms