Pulse oximeter
First Claim
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1. In a pulse oximeter for measuring oxygen saturation in the blood of a person comprising means for directing light having a first wave length toward a tissue surface and the blood carried thereunder;
- means for directing light having a second wave length toward said tissue surface and said blood; and
means for sensing said light of first and second wave lengths after its intensity has been affected by the color of the blood and for producing an electrical signal with a magnitude that is a function of the color of the blood and the pulse of said person, said signal being separable into a constant component and a time varying component; and
means responsive to said electrical signal for determining a numerical measurement of oxygen saturation, the improvement comprising;
charge storage means for blocking said electrical signal constant component and having an input terminal to which said electrical signal is applied and an output terminal at which there is produced an output signal having a wave form corresponding substantially to that of only said time varying component and substantially independent of said constant component;
first calculating means operatively connected to said charge storage means and to said sensing means for calculating a ratio as a function of said time varying component and constant component,said determining means including memory means having stored therein at assigned addresses ratios corresponding to predetermined oxygen saturation levels, and second calculating means operatively connected to said first calculating means for calculating oxygen saturation as a function of the address in said memory means having a stored ratio with a predetermined relationship to said calculated ratio.
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Abstract
A pulse oximeter includes a capacitive d.c. blocking element to separate the time varying red and infra-red components of a light source transmitted through or reflected form the blood from the composite light signals. The magnitudes of the signal amplitudes are then digitized and converted for use as independent variables applied to a ROM based look-up table to determine blood oxygen saturation.
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Citations
3 Claims
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1. In a pulse oximeter for measuring oxygen saturation in the blood of a person comprising means for directing light having a first wave length toward a tissue surface and the blood carried thereunder;
- means for directing light having a second wave length toward said tissue surface and said blood; and
means for sensing said light of first and second wave lengths after its intensity has been affected by the color of the blood and for producing an electrical signal with a magnitude that is a function of the color of the blood and the pulse of said person, said signal being separable into a constant component and a time varying component; and
means responsive to said electrical signal for determining a numerical measurement of oxygen saturation, the improvement comprising;charge storage means for blocking said electrical signal constant component and having an input terminal to which said electrical signal is applied and an output terminal at which there is produced an output signal having a wave form corresponding substantially to that of only said time varying component and substantially independent of said constant component; first calculating means operatively connected to said charge storage means and to said sensing means for calculating a ratio as a function of said time varying component and constant component, said determining means including memory means having stored therein at assigned addresses ratios corresponding to predetermined oxygen saturation levels, and second calculating means operatively connected to said first calculating means for calculating oxygen saturation as a function of the address in said memory means having a stored ratio with a predetermined relationship to said calculated ratio. - View Dependent Claims (2, 3)
- means for directing light having a second wave length toward said tissue surface and said blood; and
Specification