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Body-worn pulse oximeter

  • US 10,085,657 B2
  • Filed: 09/14/2009
  • Issued: 10/02/2018
  • Est. Priority Date: 06/17/2009
  • Status: Active Grant
First Claim
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1. A system for monitoring both blood pressure and oxygen saturation values from a patient, comprising:

  • a pulse oximetry sensor comprising;

    a first radiation source configured to emit a first optical radiation at a first wavelength;

    a second radiation source configured to emit a second optical radiation at a second wavelength;

    a substrate comprising a first substantially planar surface which comprises the emitting surface of the first and second radiation sources;

    a photodetector configured to detect the first optical radiation emitted by the first radiation source after the first optical radiation passes through a portion of the patient to generate a first signal, and the second optical radiation emitted by the second radiation source after the second optical radiation passes through a portion of the patient to generate a second signal;

    a substrate comprising a second substantially planar surface which comprises the receiving surface of the photodetector;

    and a finger-ring housing comprising the first and second radiation sources and the photodetector, the finger-ring housing configured to attach to a base of the patient'"'"'s thumb such that the first optical radiation emitted by the first radiation source and the second optical radiation emitted by the second radiation source pass through the thumb tissue and are received by the princeps pollicis artery before reaching the photodetector, wherein the first and second radiation sources are proximal to one another and separated from the photodetector by an included angle between 35-55 degrees, wherein the included angle is the angle formed between a first line drawn parallel to the first planar surface and a second line drawn parallel to the second planar surface;

    a second sensor comprising;

    at least two electrodes, each configured to attach to the patient and measure electrical signals and an electrical circuit configured to receive and process the electrical signals to determine a time-dependent electrical signal; and

    a processing unit configured to be worn on the patient'"'"'s arm and connected to the pulse oximetry sensor to receive the first and second time-dependent signals, and to the second sensor to receive the time-dependent electrical signal, the processing unit comprising a processor configured to process;

    i) the first and second time-dependent signals to determine AC signals, or signals derived therefrom, to determine the oxygen saturation value; and

    ii) at least one of the AC signals and the electrical signal, or signals derived therefrom, to determine the blood pressure value.

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