Continuous Heart Rate Monitoring System Design Project

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10 Questions

What components are used in the designed continuous heart rate monitoring system?

The MAX30003 ECG front end chip, MAX30102 integrated pulse oximetry, and the ESP32 WIFI, BLE SoC.

What is the purpose of using pulse oximetry in the designed heart rate monitoring system?

To calculate Pulse Transit Time (PTT).

What is the advantage of the designed device's ECG acquisition method?

It uses a single lead ECG acquisition.

What are the potential applications of heart rate variability (HRV) studies?

Applications such as fitness and training, detecting cardiac arrhythmias, and cardiac rehabilitation following a heart attack.

What are the common challenges with most heart rate monitors in obtaining accurate R-R intervals for HRV studies?

Most heart rate monitors struggle to obtain accurate R-R intervals for HRV studies.

What is the primary advantage of using the MAX30003 ECG front end chip in the designed heart rate monitoring system?

The MAX30003 ECG front end chip can measure accurate R-R intervals.

What additional feature does the designed heart rate monitoring system include besides single lead ECG acquisition?

The designed device includes pulse oximetry to calculate Pulse Transit Time (PTT).

What is the potential value of heart rate variability (HRV) studies in the context of cardiac rehabilitation following a heart attack?

HRV studies can be valuable in detecting basic cardiac arrhythmias, including atrial fibrillation (AF) and atrial tachycardia (AT), among others.

What are the limitations of existing heart rate monitors in obtaining accurate R-R intervals for HRV studies?

Most heart rate monitors struggle to obtain accurate R-R intervals for HRV studies.

What are the key components used in the designed continuous heart rate monitoring system?

The components used include the MAX30003 ECG front end chip, MAX30102 integrated pulse oximetry, and the ESP32 WIFI, BLE SoC.

Learn about the interdisciplinary project topic of designing a continuous heart rate monitoring system using biotechnical systems and technology. The project involves exploring the use of ECG and optical measurements for accurate heart rate monitoring.

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