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Pulse Oximetry01:24

Pulse Oximetry

326
Pulse oximetry, or SpO2, is a non-invasive method for continuously monitoring arterial oxygen saturation (SaO2). This procedure involves attaching a probe or sensor to the patient's fingertip, forehead, earlobe, or nose bridge. The sensor works by detecting changes in oxygen saturation levels through light signals generated by the oximeter and reflected by the pulsing blood under the probe.
Purpose
Average SpO2 values are greater than 95%. If the readings fall below 90%, it indicates that...
326
Guidelines For Measuring Vital Signs01:19

Guidelines For Measuring Vital Signs

1.6K
Following these guidelines can help nurses accurately measure vital signs, assess changes in patient conditions, and provide timely treatment when necessary. Adhering closely to the guidelines ensures the accuracy and reliability of the results.
Before taking a patient's vital signs, a nurse would consider and assess the patient's comfort level and ensure appropriate equipment is available.
1.6K
Special considerations while measuring oxygen saturation01:19

Special considerations while measuring oxygen saturation

583
Assessing respiratory rate concurrently with pulse measurement is fundamental to patient care, providing valuable insights into the patient's respiratory function. The normal breathing rate for an adult usually falls within a normal range of 12 to 20 breaths per minute. Abnormal respiratory rates can signal underlying health conditions or the need for immediate intervention.
Ensuring accuracy in vital sign recordings while prioritizing patient comfort and minimizing anxiety is...
583
Assessment of Diffusion and Perfusion01:17

Assessment of Diffusion and Perfusion

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Understanding and evaluating diffusion and perfusion is critical in assessing a patient's respiratory and circulatory health. These processes play key roles in maintaining the body's internal environment, ensuring that tissues receive adequate oxygen while waste products are efficiently removed.
The Role of Diffusion in Respiration
Diffusion is the process by which molecules move from an area of higher concentration to an area of lower concentration. In the respiratory system, this...
968
Equipments Used To Measure Blood Pressure01:30

Equipments Used To Measure Blood Pressure

957
Direct Method
This invasive approach involves cannulating a peripheral artery. During each cardiac contraction, pressure generates mechanical motion within the catheter, transmitted through rigid, fluid-filled tubing to a transducer. This transducer converts mechanical motion into electrical signals displayed as waveforms on a monitor. An automatic flushing system prevents blood backflow. Due to the potential risk of unexpected arterial blood loss, this method is primarily used in intensive...
957
Assessment of blood pressure in brachial artery(two-step method)01:23

Assessment of blood pressure in brachial artery(two-step method)

689
Measuring blood pressure is a fundamental skill in healthcare that aids in diagnosing and monitoring hypertension and other cardiovascular conditions. An aneroid sphygmomanometer, commonly used in clinical settings, offers a manual and precise method for blood pressure measurement. The technique for using this instrument involves specific steps that must be carefully executed to ensure accuracy. The following detailed description outlines a two-step technique for assessing blood pressure using...
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Related Experiment Video

Updated: Jun 23, 2025

Dual-mode Imaging of Cutaneous Tissue Oxygenation and Vascular Function
11:35

Dual-mode Imaging of Cutaneous Tissue Oxygenation and Vascular Function

Published on: December 8, 2010

16.5K

Equity-Driven Sensing System for Measuring Skin Tone-Calibrated Peripheral Blood Oxygen Saturation (OptoBeat):

Alexander T Adams1,2, Ilan Mandel1, Yixuan Gao1

  • 1Information Science, Cornell Tech, New York, NY, United States.

JMIR Biomedical Engineering
|June 14, 2024
PubMed
Summary

A new ultra-low-cost smartphone system, OptoBeat, accurately measures peripheral blood oxygen saturation (SpO2) across different skin tones. This technology addresses disparities in pulse oximeter calibration, offering reliable readings down to 75% SpO2.

Keywords:
biashealth apphealth equityheart ratemHealthmobile healthmobile phoneoximeteroximetryoxygen leveloxygen saturationpulsepulse oximetrysensorskin tonesmartphoneubiquitous health

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Area of Science:

  • Biomedical Engineering
  • Optical Sensing
  • Medical Device Technology

Background:

  • Commodity pulse oximeters exhibit insufficient calibration for individuals with darker skin tones.
  • A significant disparity exists in peripheral blood oxygen saturation (SpO2) measurements based on skin pigmentation.
  • Existing devices often fail to provide accurate SpO2 readings across the full spectrum of human skin tones.

Purpose of the Study:

  • To test the hypothesis that skin tone significantly affects pulse oximeter measurements.
  • To implement an ultra-low-cost smartphone adapter for SpO2 measurement and calibration.
  • To validate the use of skin tone images for calibrating pulse oximeter error and measure SpO2 using a smartphone camera.

Main Methods:

  • Developed OptoBeat, an ultra-low-cost smartphone-based optical sensing system using commodity components and 3D-printed clips.
  • Utilized synthetic skin with calibrated skin tone scales for ex vivo experiments with sheep blood.
  • Employed a custom optical system connecting a smartphone screen (flashing red and blue) to the analyte and phone's camera.

Main Results:

  • OptoBeat accurately classified skin tones (Fitzpatrick types 2, 3, and 5) using RGB values.
  • Traditional pulse oximeters showed significant SpO2 measurement differences across skin tones (P<.01).
  • OptoBeat achieved SpO2 accuracy within 1% of ground truth (R²=0.97) down to 75% in ex vivo tests and within 0.5% in human participants.

Conclusions:

  • Skin tone significantly impacts SpO2 measurements, necessitating calibration.
  • The ultra-low-cost OptoBeat system effectively calibrates for skin tone using smartphone imaging.
  • OptoBeat reliably measures SpO2 as low as 75%, mitigating bias and improving accessibility.