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Accuracy Validation of a Pulse Oximetry Monitor

2015-07-23 12:08:23 | BioPortfolio

Summary

The purpose of this study is to conduct an oxygen saturation (SpO2) accuracy validation comparing prototype pulse oximeter oxygen saturation measurements directly to arterial blood saturation during non-motion conditions over the range of 60-100% SaO2 as measured by Reference CO-Oximetry. Additionally, the prototype pulse oximeter pulse rate measurements will be compared to 3-lead ECG heart rate measurements made via a multi-parameter monitor.

Description

The description of this study is to conduct an oxygen saturation (SpO2) accuracy validation comparing prototype pulse oximeter oxygen saturation measurements directly to arterial blood saturation during non-motion conditions over the range of 60-100% SaO2 as measured by Reference CO-Oximetry. Additionally, the prototype pulse oximeter pulse rate measurements will be compared to 3-lead ECG heart rate measurements made via a multi-parameter monitor.

Study Design

Observational Model: Cohort, Time Perspective: Prospective

Conditions

Oximetry

Location

Clinimark
Louisville
Colorado
United States
80027

Status

Not yet recruiting

Source

Medtronic - MITG

Results (where available)

View Results

Links

Published on BioPortfolio: 2015-07-23T12:08:23-0400

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PubMed Articles [50 Associated PubMed Articles listed on BioPortfolio]

Health professionals' views of newborn pulse oximetry screening in a midwifery-led maternity setting. "'It's a good thing to do, but fund it!"

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Pulse oximetry screening in a midwifery-led maternity setting with high antenatal detection of congenital heart disease.

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Medical and Biotech [MESH] Definitions

The determination of oxygen-hemoglobin saturation of blood either by withdrawing a sample and passing it through a classical photoelectric oximeter or by electrodes attached to some translucent part of the body like finger, earlobe, or skin fold. It includes non-invasive oxygen monitoring by pulse oximetry.

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