Skin preparation device and biopotential sensor
The skin preparation device and sensor of the present invention include an array of rigid tines. The tines serve to “self-prepare” the skin at each electrode site. These tines, when pressed against the skin, penetrate the stratum corneum, thereby reducing skin impedance and improving signal quality. A self-prepping device of the present invention is an optimized array of short non-conductive rigid tines in which the individual tines are created in a geometry that allows for a sharp point at the tip when molding, machining or etching is used as a method of fabrication.
1. A sensor system comprising:
a flexible substrate;
a plurality of electrodes coupled to the flexible substrate;
an adhesive substrate adjacent to each of the electrodes and the flexible substrate; and
a plurality of groups of preparation devices, each group of preparation devices coupled to a respective electrode, each of the preparation devices comprising:
a base member in the shape of a ring;
an array of rigid tines contiguous with the base member, each tine having a sharp tip adapted to penetrate stratum corneum and to reduce skin impedance; and
a component configured to deliver a conductive gel below the stratum corneum.
2. The sensor system of claim 1 wherein the preparation devices are arranged such that upon application of pressure to the electrode, the preparation devices angle to adjust to the surface to which the sensor system is applied.
3. A sensor system comprising:
a flexible substrate;
a plurality of electrodes coupled to the flexible substrate;
an adhesive substrate adjacent to each of the electrodes and the flexible substrate; and
a plurality of groups of preparation devices, each group of preparation devices coupled to a respective electrode, each of the preparation devices comprising:
a base member;
an array of rigid tines contiguous with the base member, each tine having a sharp tip adapted to penetrate stratum corneum and to reduce skin impedance;
a component configured to deliver a conductive gel below the outermost layer of the stratum corneum; and
wherein the base member is formed of multiple stepped levels each level containing a portion of the array of rigid tines.
4. The sensor system of claim 3 wherein the preparation devices are arranged such that upon application of pressure to the electrode, the preparation devices angle to adjust to the surface to which the sensor system is applied.
5. A sensor system comprising:
a flexible substrate;
a plurality of electrodes coupled to the flexible substrate;
an adhesive substrate adjacent to each of the electrodes and the flexible substrate; and
a plurality of groups of preparation devices, each group of preparation devices coupled to a respective electrode, each of the preparation devices comprising:
a base member; and
an array of tines contiguous with the base member, each tine having a pyramidal shape wherein one side of the pyramid is concave.
6. The sensor system of claim 5 wherein the preparation devices are arranged such that upon application of pressure to the electrode, the preparation devices angle to adjust to the surface to which the sensor system is applied.
7. A sensor system comprising:
a flexible substrate;
a plurality of electrodes coupled to the flexible substrate;
an adhesive substrate adjacent to each of the electrodes and the flexible substrate; and
a plurality of groups of preparation devices, each group of preparation devices coupled to a respective electrode, each of the preparation devices comprising:
a base member; and
an array of rigid tines contiguous with the base member, each tine having a sharp tip adapted to penetrate stratum corneum and to reduce skin impedance.
8. The sensor system of claim 7 wherein the preparation devices are arranged such that upon application of pressure to the electrode, the preparation devices angle to adjust to the surface to which the sensor system is applied.