Masimo Corporation
Irvine, California, 92618, United States
NCT Number: NCT06148623
Validate the performance of Philips FAST SpO2 with Masimo Pulse Oximetry Sensors in determining functional arterial oxygen saturation (SpO2) using arterial saturation (SaO2) as a reference in the range of 70-100% in subjects of varying skin pigmentation.
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Notify Me18 year–50 year
All sexes
Interventional
Not applicable
Irvine, California, 92618, United States
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
(Eligible Subjects):
Exclusion criteria
(Ineligible Subjects) (* = per clinician discretion):
Noninvasive pulse oximeter
Time frame: 1 hour
The SpO₂ accuracy of Philips FAST SpO₂ with Masimo Pulse Oximeter Sensor (RD SET® Adt) was determined by calculating the accuracy root mean-squared (ARMS) difference between the measured values (SpO₂) to the reference values (SaO₂) in accordance with ISO-80601-2-61. ARMS is a standard statistical method used in pulse oximetry performance evaluations to quantify the overall accuracy of a device.
Arms= √(∑(i=1 to n) ((SpO₂_i-SaO₂_i )^2 ))/n.
Participants in this arm could receive one or more sensor types used for data collection.
Time frame: 1 hour
The SpO₂ accuracy of Philips FAST SpO₂ with Masimo Pulse Oximeter Sensor (RD SET® Adt CS) was determined by calculating the accuracy root mean-squared (ARMS) difference between the measured values (SpO₂) to the reference values (SaO₂) in accordance with ISO-80601-2-61. ARMS is a standard statistical method used in pulse oximetry performance evaluations to quantify the overall accuracy of a device.
Arms= √(∑(i=1 to n) ((SpO₂_i-SaO₂_i )^2 ))/n.
Participants in this arm could receive one or more sensor types used for data collection.
Time frame: 1 hour
The SpO₂ accuracy of Philips FAST SpO₂ with Masimo Pulse Oximeter Sensor (RD SET® YI) was determined by calculating the accuracy root mean-squared (ARMS) difference between the measured values (SpO₂) to the reference values (SaO₂) in accordance with ISO-80601-2-61. ARMS is a standard statistical method used in pulse oximetry performance evaluations to quantify the overall accuracy of a device.
Arms= √(∑(i=1 to n) ((SpO₂_i-SaO₂_i )^2 ))/n.
Participants in this arm could receive one or more sensor types used for data collection.
Time frame: 1 hour
The SpO₂ accuracy of Philips FAST SpO₂ with Masimo Pulse Oximeter Sensor (RD SET® DBI) was determined by calculating the accuracy root mean-squared (ARMS) difference between the measured values (SpO₂) to the reference values (SaO₂) in accordance with ISO-80601-2-61. ARMS is a standard statistical method used in pulse oximetry performance evaluations to quantify the overall accuracy of a device.
Arms= √(∑(i=1 to n) ((SpO₂_i-SaO₂_i )^2 ))/n.
Participants in this arm could receive one or more sensor types used for data collection.
Time frame: 1 hour
The SpO₂ accuracy of Philips FAST SpO₂ with Masimo Pulse Oximeter Sensor (LNCS® Adtx) was determined by calculating the accuracy root mean-squared (ARMS) difference between the measured values (SpO₂) to the reference values (SaO₂) in accordance with ISO-80601-2-61. ARMS is a standard statistical method used in pulse oximetry performance evaluations to quantify the overall accuracy of a device.
Arms= √(∑(i=1 to n) ((SpO₂_i-SaO₂_i )^2 ))/n.
Participants in this arm could receive one or more sensor types used for data collection.
Time frame: 1 hour
The SpO₂ accuracy of Philips FAST SpO₂ with Masimo Pulse Oximeter Sensor (RD SET® TC-I) was determined by calculating the accuracy root mean-squared (ARMS) difference between the measured values (SpO₂) to the reference values (SaO₂) in accordance with ISO-80601-2-61. ARMS is a standard statistical method used in pulse oximetry performance evaluations to quantify the overall accuracy of a device.
Arms= √(∑(i=1 to n) ((SpO₂_i-SaO₂_i )^2 ))/n.
Participants in this arm could receive one or more sensor types used for data collection.
Time frame: 1 hour
The SpO₂ accuracy of Philips FAST SpO₂ with Masimo Pulse Oximeter Sensor (RD SET® DCI) was determined by calculating the accuracy root mean-squared (ARMS) difference between the measured values (SpO₂) to the reference values (SaO₂) in accordance with ISO-80601-2-61. ARMS is a standard statistical method used in pulse oximetry performance evaluations to quantify the overall accuracy of a device.
Arms= √(∑(i=1 to n) ((SpO₂_i-SaO₂_i )^2 ))/n.
Participants in this arm could receive one or more sensor types used for data collection.
Masimo Corporation
Industry
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