Claims
- 1. An oximeter probe system for use with an oximeter, said system comprising:
- a first light emitting means emitting light having a first known wavelength value;
- means for sensing the light emitted by said first light emitting means;
- means for detachably wiring the probe to the oximeter and for providing communication of electrical signals between the probe and the oximeter; and
- encoding means for providing signals to the oximeter which are indicative of the known wavelength value of said first light emitting means.
- 2. The system of claim 1, further comprising a second light emitting means emitting light having a second known wavelength value;
- wherein said light sensing means also senses light emitted by said second light emitting means; and
- wherein said encoding means further provides electrical signals to the oximeter indicative of the known wavelength value of the light emitted by the second light emitting means.
- 3. The system of claim 1, wherein said encoding means comprises an electrical impedance element, the value of which is preselected to correlate with said known wavelength value.
- 4. The system of claim 3 wherein said electrical impedance element is a resistor.
- 5. The system of claim 4 wherein said signals which are indicative of said known wavelength value are voltage signals produced by passing a current through said resistor.
- 6. The system of claim 1 wherein said means for detachably wiring the probe to the oximeter has associated therewith a plurality of connector pins, and wherein the presence or absence of electrical connections between certain of said connector pins comprises part of said encoding means.
- 7. An oximeter probe system comprising:
- a first light emitting means emitting light having a first known wavelength value;
- means for sensing the light emitted by said first light emitting means;
- means for detachably wiring the probe to the oximeter and for providing communication of electrical signals between the probe and the oximeter;
- encoding means for providing signals to the oximeter which are indicative of the known wavelength value of said first light emitting means, said encoding means comprising an electrical impedance element, the value of which is preselected to correlate with said known wavelength value; and
- decoding means responsive to said encoded signals for selecting appropriate calibration coefficients for use in calculating oxygen saturation based upon the known wavelength of said first light emitting means.
- 8. The system of claim 7 wherein said electrical impedance element is a resistor.
- 9. The system of claim 8 wherein said signals which are indicative of said known wavelength value are voltage signals produced by passing a current through said resistor.
- 10. An oximeter probe system comprising:
- a first light emitting means emitting light having a first known wavelength value;
- means for sensing the light emitted by said first light emitting means;
- means for detachably wiring the probe to the oximeter and for providing communication of electrical signals between the probe and the oximeter, said means for detachably wiring the probe to the oximeter having associated therewith a plurality of connector pins;
- encoding means for providing signals to the oximeter which are indicative of the known wavelength value of said first light emitting means, the presence or absence of electrical connections between certain of said connector pins comprising part of said encoding means; and
- decoding means responsive to said encoded signals for selecting appropriate calibration coefficients for use in calculating oxygen saturation based upon the known wavelength of said first light emitting means.
- 11. An oximeter probe system comprising:
- a first light emitting means emitting light having a first known wavelength value;
- means for sensing the light emitted by said first light emitting means;
- means for detachably wiring the probe to the oximeter and for providing communication of electrical signals between the probe and the oximeter;
- encoding means for providing signals to the oximeter which are indicative of the known wavelength value of said first light emitting means; and
- decoding means responsive to said encoded signals for selecting appropriate calibration coefficients for use in calculating oxygen saturation based upon the known wavelength of said first light emitting means, said decoding means comprising a programmed microprocessor.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation of copending United States patent application Ser. No. 827,478, filed Feb. 5, 1986, now U.S. Pat. No. 4,621,643, which is a continuation of United States patent application Ser. No. 695,402, filed Jan. 24, 1985, now abandoned, which was a continuation of United States patent application Ser. No. 414,176, filed Sept. 2, 1982, now abandoned.
US Referenced Citations (22)
Non-Patent Literature Citations (3)
Entry |
Grover, Conf. Proceed. of the 26th Annual Conf. on Engr. in Med. and Biol., Minn., Minn., Sep. 20-Oct. 4, 1973. |
Schibli et al., IEEE Trans. of Biomed. Engr., vol. BME-25, No. 1, Jan. 1978, pp. 94-96. |
Yee et al., IEEE Trans. Biomed. Engr., vol. BME-24, No. 2, Mar. 1977, pp. 195-197. |
Continuations (3)
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Number |
Date |
Country |
Parent |
827478 |
Feb 1986 |
|
Parent |
695402 |
Jan 1985 |
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Parent |
414176 |
Sep 1982 |
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