Disposable multiple wavelength optical sensor
A physiological sensor has light emitting sources, each activated by addressing at least one row and at least one column of an electrical grid. The light emitting sources are capable of transmitting light of multiple wavelengths and a detector is responsive to the transmitted light after attenuation by body tissue.
1 . A physiological sensor comprising:
a radiation emitting member, said radiation emitting member being capable of emitting radiation in at least three levels of a measurable emission parameter,
a detector capable of detecting radiation emitted by said radiation emitting member attenuated by body tissue and capable of outputting a signal usable to determine one or more physiological characteristics of the body tissue, and
a disposable attachment member configured to carry said radiation emitting member and said detector and to removably attach the radiation emitting member and the detector to the body tissue.
2 . The physiological sensor of claim 1 , wherein said measurable emission parameter is radiation wavelength.
3 . The physiological sensor of claim 1 , wherein said measurable emission parameter is radiation energy.
4 . The physiological sensor of claim 1 , wherein said measurable emission parameter is radiation frequency.
5 . The physiological sensor of claim 1 , wherein said radiation emitting member comprises a plurality of radiation sources.
6 . The physiological sensor of claim 5 , wherein said plurality of radiation sources comprises a plurality of light-emitting diodes.
7 . The physiological sensor of claim 1 , wherein said radiation emitting member is capable of emitting radiation in at least eight levels of a measurable emission parameter.
8 . The physiological sensor of claim 7 , wherein said radiation emitting member is capable of emitting radiation in at least eight levels of wavelength.
9 . The physiological sensor of claim 1 , wherein said disposable attachment member comprises a flexible substrate having an adhesive coating.
10 . The physiological sensor of claim 9 , wherein said flexible substrate comprises flexible tape.
11 . A physiological sensor comprising:
a radiation emitting member, said radiation emitting member being capable of emitting radiation in at least three levels of a measurable emission parameter,
a detector capable of detecting radiation emitted by said radiation emitting member attenuated by body tissue and capable of outputting a signal usable to determine one or more physiological characteristics of the body tissue, and
a disposable attachment member configured to carry said radiation emitting member and said detector, said disposable attachment member comprising a first flexible layer and a second flexible layer, with said radiation emitting member and said detector being located substantially between said first flexible layer and said second flexible layer.
12 . The physiological sensor of claim 11 , wherein said first flexible layer includes an adhesive surface adapted to removably adhere to the body tissue.
13 . The physiological sensor of claim 11 , wherein said second flexible layer is a light-blocking layer.
14 . The physiological sensor of claim 11 , wherein said first layer is provided with at least one window configured to allow passage of radiation from said radiation emitting member.