Patent classifications
A61B5/263
STRETCHABLE MOUNTING SUBSTRATE
A stretchable mounting substrate that includes: a stretchable wiring substrate, the stretchable wiring substrate including a stretchable base material and a stretchable wiring arranged on the stretchable base material; and a module on a surface of the stretchable wiring substrate, the module including a multilayer substrate, a plurality of electronic components on a principal surface of the multilayer substrate, a plurality of first electrodes and a plurality of second electrodes, and internal wirings inside the multilayer substrate. The module has a first electrode arrangement region where the plurality of first electrodes are arranged and a second electrode arrangement region where the plurality of second electrodes are arranged, and includes a node electrode pair, and the internal wiring of the node electrode pair and the stretchable wiring on the stretchable base material intersect each other in plan view of the stretchable wiring substrate.
MECHANICAL METAMATERIAL-TETHERED BREATHABLE ELECTRONIC SKIN SENSOR PATCH
Disclosed is an electronic skin sensor patch which is attached to a skin of a user and measures a bio signal, the electronic skin sensor patch including: a patch body including a frame which is formed with an opening and is made of a mechanical metamaterial; a sensing unit disposed on a first region of the patch body; a sensor system unit disposed on a second region of the patch body and configured to maintain a nonadherent state with the skin; and a wiring disposed along the frame of the patch body and configured to connect the sensing unit and the sensor system unit.
BIOSIGNAL SENSING ELECTRODE
A biosignal sensing electrode that includes: a conductive film containing particles of a layered material including one or plural layers, the one or plural layers includes a layer body represented by: M.sub.mX.sub.n, wherein M is at least one metal of Group 3, 4, 5, 6, or 7, X is a carbon atom, a nitrogen atom, or a combination thereof, n is 1 to 4, m is more than n and 5 or less, and a modifier or terminal T exists on a surface of the layer body, wherein T is at least one selected from a hydroxyl group, a fluorine atom, a chlorine atom, an oxygen atom, or a hydrogen atom; and a porous membrane that contains a hydrophilic polymer, the porous membrane having a first surface in contact with at least part of the conductive film and a second surface defining a contact surface with a subject.
BIOSIGNAL SENSING ELECTRODE
A biosignal sensing electrode that includes: a conductive film containing particles of a layered material including one or plural layers, the one or plural layers includes a layer body represented by: M.sub.mX.sub.n, wherein M is at least one metal of Group 3, 4, 5, 6, or 7, X is a carbon atom, a nitrogen atom, or a combination thereof, n is 1 to 4, m is more than n and 5 or less, and a modifier or terminal T exists on a surface of the layer body, wherein T is at least one selected from a hydroxyl group, a fluorine atom, a chlorine atom, an oxygen atom, or a hydrogen atom; and a porous membrane that contains a hydrophilic polymer, the porous membrane having a first surface in contact with at least part of the conductive film and a second surface defining a contact surface with a subject.
BIOMEDICAL ELECTRODE, BIOMEDICAL SENSOR, AND BIOMEDICAL SIGNAL MEASUREMENT SYSTEM
A biomedical electrode according to the present invention includes: a plate-shaped support portion; an elastic pillar portion that is provided on a first surface of the plate-shaped support portion; and a conductive resin layer that is formed to cover a distal end of the elastic pillar portion, in which when measured at 37° C. according to JIS K 6253 (1997), a type A durometer hardness of a surface of the elastic pillar portion is higher than 35 and 65 or lower.
METHOD FOR MANUFACTURING BIOLOGICAL ELECTRODE
Provided is a method for manufacturing a biological electrode capable of simply manufacturing a biological electrode in which an increase in resistance value over time due to strain is suppressed. The method for manufacturing a biological electrode includes a step of adding fumed silica to an aggregated silver powder to obtain a mixed silver powder and a step of forming a conductive rubber body containing a silicone rubber and the mixed silver powder.
INTEGRATED DIFFERENTIAL VOLTAGE MEASURING SYSTEM
An integrated differential voltage measuring system for measuring bioelectrical signals of a patient, includes at least two signal measuring circuits, each of the at least two signal measuring circuits including a sensor electrode; a reference measuring circuit comprising a reference electrode; and a shared electrically conductive electrode covering, wherein the electrically conductive electrode covering superimposes at least a region that is formed by the base areas of the sensor electrodes and reference electrode.
INTEGRATED DIFFERENTIAL VOLTAGE MEASURING SYSTEM
An integrated differential voltage measuring system for measuring bioelectrical signals of a patient, includes at least two signal measuring circuits, each of the at least two signal measuring circuits including a sensor electrode; a reference measuring circuit comprising a reference electrode; and a shared electrically conductive electrode covering, wherein the electrically conductive electrode covering superimposes at least a region that is formed by the base areas of the sensor electrodes and reference electrode.
SYRINGE-INJECTION-TYPE BRAIN SIGNAL MEASUREMENT AND STIMULATION STRUCTURE, AND SYRINGE INJECTION METHOD THEREFOR
The present invention relates to a syringe-injection-type brain signal measurement and stimulation structure, and a syringe injection method therefor, and provides a structure including a high-performance flexible element capable of minimizing a skull opening when inserted into the brain. Particularly, the present invention comprises: a flexible element, which includes a contact part making contact with a surface of a cortex so as to measure a signal generated in the brain or transmit an external stimulus to the brain, a transmitting/receiving part positioned between a skull and a skin, and a connection part for making a connection between the contact part and the transmitting/receiving part; and an integrated circuit connected to the transmitting/receiving part so as to transmit/receive a signal.
SYRINGE-INJECTION-TYPE BRAIN SIGNAL MEASUREMENT AND STIMULATION STRUCTURE, AND SYRINGE INJECTION METHOD THEREFOR
The present invention relates to a syringe-injection-type brain signal measurement and stimulation structure, and a syringe injection method therefor, and provides a structure including a high-performance flexible element capable of minimizing a skull opening when inserted into the brain. Particularly, the present invention comprises: a flexible element, which includes a contact part making contact with a surface of a cortex so as to measure a signal generated in the brain or transmit an external stimulus to the brain, a transmitting/receiving part positioned between a skull and a skin, and a connection part for making a connection between the contact part and the transmitting/receiving part; and an integrated circuit connected to the transmitting/receiving part so as to transmit/receive a signal.