Noninvasive Physiological Monitoring

Noninvasive physiological monitoring is the measurement of body functions without penetrating the skin or entering the body, providing clinically useful information while reducing discomfort and procedural risk. Sensors placed on the skin or incorporated into wearable devices detect signals such as electrical activity, light absorption, pressure, temperature, or motion, then convert them into measures including heart rate, oxygen saturation, blood pressure, and respiratory patterns. In medicine, these methods support continuous observation, early detection of physiological changes, diagnosis, treatment assessment, and remote patient care. Their portability and repeatability also advance home monitoring, critical care, and personalized health management.

Noninvasive Physiological Monitoring - Related Videos

Research

JoVE Journal - Biology

Functional Imaging with Reinforcement, Eyetracking, and Physiological Monitoring

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Cited by 2 •

2008

This presentation demonstrates the use of fMRI to study neural circuits that underlie decision-making. Simple perceptual tasks are combined with appetitive and aversive reinforcements to investigate how outcomes affect decision processes.

Noninvasive Intratracheal Intubation to Study the Pathology and Physiology of Mouse Lung

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Cited by 22 •

2013

The use of a model that mimics the condition of lung diseases in humans is critical for studying the pathophysiology and/or etiology of a particular disease and for developing therapeutic intervention. Here a noninvasive intratracheal intubation method that can directly deliver exogenous materials to mouse lungs is presented.

Education

JoVE Science Education - Engineering

Noninvasive Blood Pressure Measurement Techniques

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2023

Source: Hamna J. Qureshi and Craig J. Goergen, Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana Here we will highlight the key similarities and differences of noninvasive blood pressure measurement techniques between humans and rodents and examine the engineering principles that govern blood pressure. The principles that govern current cuff technology to acquire systolic and diastolic pressures will also be discussed. Commercially available cuffs that connect...

Morphological and Physiological Monitoring of Tumor Spheroids Using Optical Coherence Tomography

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2025

Source: Huang, Y. et. al., Longitudinal Morphological and Physiological Monitoring of Three-dimensional Tumor Spheroids Using Optical Coherence Tomography. J. Vis. Exp. (2019)This video demonstrates the use of optical coherence tomography (OCT) to monitor tumor spheroids in a multi-well plate by capturing high-resolution cross-sectional images. By analyzing light reflections from cellular structures, OCT constructs 3D models to assess morphological features like size and shape while also...

Noninvasive Monitoring of Lesion Size in a Heterologous Mouse Model of Endometriosis

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Cited by 10 •

2019

Here, we present a protocol for live-imaging of fluorescently labeled human endometrial fragments grafted in mice. The method allows studying the effects of drugs of choice on endometriotic lesion size through monitoring and quantification of fluorescence emitted by the fluorescent reporter on real...

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