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INTELWAVE HEART RATE VARIABILITY SYSTEM VERSION 1.0


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(Not Necessarily related to the device)

Description:

INTELWAVE HEART RATE VARIABILITY SYSTEM VERSION 1.0

Made by INTELWAVE LLC, the INTELWAVE Heart Rate Variability System Version 1.0 is a state-of-the-art medical device, designed with the latest breakthroughs in medical technology to rigorously monitor and assess heart rate dynamics. As its name suggests, this advanced system is primarily used to detect and interpret variability in heart rates.

The heart rate variability (HRV) describes the fluctuation in the time intervals between consecutive heartbeats, thereby providing a window into the individual's cardiac health. The INTELWAVE Heart Rate Variability System uses precise algorithms to analyze these variations, enabling healthcare providers to ascertain the efficiency and performance of the heart based on these readings.

This system is notable for its high benefits, granting qualitative and quantitative assessments of the autonomic nervous system, specifically the balance between sympathetic and parasympathetic influences on the heart rate. By understanding the variations in the heart rate, healthcare providers can key into potential cardiac distress or dysfunction long before symptoms become evident, facilitating early intervention.

The INTELWAVE Heart Rate Variability System works by continuous monitoring of the patient's heartbeat. The device employs multi-parameter signal processing and employs proprietary algorithms that map the patient's HRV. This reliable device can record heart activity under different conditions, as in rest, during normal daily activities, or when subjected to stress. Functional metrics provide key insights into cardiovascular and general health markers. In essence, this is a critical tool that defines a paradigm shift in the realm of Medical Informatics and Precision Medicine.


Primary Use:

The INTELWAVE Heart Rate Variability System Version 1.0 is a sophisticated medical device designed for the purpose of monitoring and diagnosing various cardiovascular conditions. It works by analyzing the patient's heart rate variability (HRV), which is essentially the variation in the time interval between consecutive heartbeats. The primary medical use of this device is to provide an accurate and objective assessment of the autonomic nervous system’s function, which oversees the control of the heart rate. By processing heart rate


How It Works:

The INTELWAVE Heart Rate Variability (HRV) System 1.0 falls under the broad category of cardiovascular monitoring and diagnostic devices. While specific information on INTELWAVE HRV System 1.0 is not readily available, it evidently operates on the fundamental concept of Heart Rate Variability analysis, as implied by its name. Hence, assuredly, a sophisticated understanding of HRV can provide substantial insight into the workings of this device. Heart Rate Variability refers to the variance in time intervals between consecutive heartbeats, also known euphemistically as R-R intervals (referring to points on electrocardiogram readings representing a complete cardiac cycle). HRV is a key measure used by clinicians and researchers to assess the autonomic nervous system, and can provide crucial insights into cardiovascular health, fitness levels, emotional resilience, and overall well-being. Substantially, cardiovascular monitoring and diagnostic devices such as the INTELWAVE HRV System 1.0 are likely built around an embedded sensor technology that can detect a patient's pulse wave. These devices typically use photoplethysmography (PPG) or electrical sensing methods to capture the pulse wave and derive the RR intervals. In the case of PPG-based devices, a light-emitting diode (LED) illuminates the skin and the light is either transmitted through or reflected back to a photodiode, which measures the changing absorbance of the light. The rhythmic change in the volume of blood in the peripheral circulatory system results in a waveform that can be processed and analysed to derive HRV measures. Whereas, in electrical sensing methods, commonly seen in electrocardiogram (ECG) devices, electrical leads are attached to different points on the body and the electrical activity of the heart is captured. The resulting waveform represents the depolarization and repolarization of the cardiac muscle, from which the RR intervals can be precisely measured. Once the raw RR data is captured, it is then processed to remove any artifacts or false beats. Various algorithms can then be applied to extract meaningful indices of HRV in the time domain, frequency domain, or through more advanced non-linear measures. These extracted measures provide vital insights into the balance between the two branches of the autonomic nervous system - the sympathetic and parasympathetic nervous systems - and how they are responding to different physiological and psychological stressors or stimuli. This information can be used by physicians and clinicians for diagnostic purposes, assessing treatment

Manufacturer:

INTELWAVE LLC


Status: In Stock


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