Medical sensor with flexible components and technique for using the same
According to various embodiments, a hat-based or headband sensor assembly may include thin or flexible optical sensing components, such as optical fibers or ultra thin emitters or detectors. In embodiments, the sensor assembly may be a hat-based sensor that includes a gripping region, for example on the inside of the hat band, to help secure the hat to a patient's head.
1. A sensor comprising:
a fabric or woven stocking cap;
a gripping portion disposed in a band region of the stocking cap comprising a tissue-contacting surface;
an emitter disposed on the gripping portion, wherein the emitter is configured to emit a light into a forehead region of the patient's head;
a detector disposed on the gripping portion, wherein the detector is configured to detect the light;
a first lead coupled to the emitter;
a second lead coupled to the detector; and
a cable extending from an opening in a top portion of the stocking cap and terminating in the band region, wherein the cable is coupled to the first lead and the second lead at a point spaced apart from the gripping portion.
2. The sensor of 1 , wherein the gripping portion has a static coefficient of friction greater than 10.
3. The sensor of 1 , wherein the gripping portion is disposed on an interior surface of a band of the stocking cap.
4. The sensor of 1 , wherein the emitter and the detector are substantially flush with the tissue-contacting surface of the stocking cap.
5. A sensor comprising:
a fabric or woven stocking cap;
a substrate disposed in a band region of the stocking cap on a tissue-contacting surface;
an emitter disposed on the substrate, wherein the emitter is configured to emit a light into a forehead region of the patient's head;
a detector disposed on the substrate, wherein the detector is configured to detect the light;
a first lead coupled to the emitter and extending outwardly from the substrate;
a second lead coupled to the detector extending outwardly from the substrate; and
a cable extending from an opening in a top portion of the stocking cap to the band region, wherein the cable is coupled to the first lead and the second lead in the band region at a location spaced apart from the substrate.
6. The sensor of claim 5 , wherein the emitter comprises an ultra-thin LED and the detector comprises an ultra thin-film metal-semiconductor-metal (MSM) photodetector.
7. The sensor of claim 5 , wherein the first lead and the second lead are adhered to the stocking cap.
8. The sensor of claim 5 , wherein the first lead and the second lead are woven into the stocking cap.
9. The sensor of claim 5 , wherein the first and second leads comprise flexible shielded wires.
10. The sensor of claim 5 , comprising a gripping portion disposed on the tissue-contacting surface.
11. The sensor of claim 10 , wherein the gripping portion has a static coefficient of friction greater than 10.