How the oximeter works
author: Sky Wang
2022-05-09

How the oximeter works?
The oximeter does not need to take blood to measure blood oxygen, you can know your blood oxygen level and pulse by gently clipping your finger, and you can check your health status anytime and anywhere at home. What is the principle of oximeter? Let's understand how the oximeter works.
The role of hemoglobin is to carry oxygen to all parts of the body. We call the oxygen content of hemoglobin at any time as blood oxygen saturation.

The finger oximeter measures this blood oxygen saturation. Hemoglobin has a state of carrying oxygen, and of course also has an empty state. We call the hemoglobin carrying oxygen as oxyhemoglobin, and the hemoglobin in the empty state is called reduced hemoglobin.
Oxyhemoglobin and reduced hemoglobin have different absorption properties in the visible and near-infrared spectral ranges. Reduced hemoglobin absorbs more red frequency light and less infrared frequency light; while oxyhemoglobin absorbs less red frequency light and more infrared frequency light. This distinction is the most basic basis for finger oximeters.
The oximeter does not need to take blood to measure blood oxygen, you can know your blood oxygen level and pulse by gently clipping your finger, and you can check your health status anytime and anywhere at home. What is the principle of oximeter? Let's understand how the oximeter works.
The role of hemoglobin is to carry oxygen to all parts of the body. We call the oxygen content of hemoglobin at any time as blood oxygen saturation.

The finger oximeter measures this blood oxygen saturation. Hemoglobin has a state of carrying oxygen, and of course also has an empty state. We call the hemoglobin carrying oxygen as oxyhemoglobin, and the hemoglobin in the empty state is called reduced hemoglobin.
Oxyhemoglobin and reduced hemoglobin have different absorption properties in the visible and near-infrared spectral ranges. Reduced hemoglobin absorbs more red frequency light and less infrared frequency light; while oxyhemoglobin absorbs less red frequency light and more infrared frequency light. This distinction is the most basic basis for finger oximeters.
Related News
What is noninvasive blood pressure (NIBP)?
2023-09-28 7Clinical Application and Significance of End-Tidal Carbon Dioxide(ETCO2) Monitoring
2023-09-27 8Popular Science|How to choose home medical devices
2023-09-26 14Pulse oximeter can help you check your body
2023-05-09 408How do pulse oximeters work?
2023-04-03 557Why is the SpO2 reading on the pulse oximeter fluctuate between 92 and 97? Is this normal?
2023-03-30 577Different measurement positions lead to different measurement results
2023-03-24 453Blood Oximeter: A New Concept Family Doctor
2023-03-23 436Significance of monitoring BIS for anesthetized patients
2023-02-21 537Which gases need to be detected when the patient is anesthetized
2023-02-20 514Clinical application scenarios of the patient monitor?
2023-02-16 422What are the types of disposable spo2 probe?
2023-01-06 613How does blood oxygen hypoxia do?
2022-12-14 521The correct use of SpO2 sensor method?
2022-12-13 550Theory of measuring human blood pressure
2022-11-10 514What is a hyperbaric oxygen chamber?
2022-10-27 473What causes an irregular heartbeat?
2022-10-25 481What reason is human body temperature low?
2022-10-24 442Who is oxygen therapy suitable for?
2022-10-20 460How should blood oxygen do low?
2022-10-19 433