Electrode sensor distribution method for braided wearable electrocardiosignal sampling equipment
An electrode sensor and acquisition electrode technology, which is applied in the fields of sensors, medical science, diagnostic recording/measurement, etc., can solve the problems of missed diagnosis and delayed disease, and achieve stable ECG signal acquisition, wide applicability, and equipment fit Good results
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Embodiment 1
[0033] Embodiment one: as attached figure 1 , 2 As shown, a woven wearable ECG acquisition device is characterized in that it includes a wearable carrier 1, a first electrode sensor array 2 arranged on the upper right position of the front of the carrier 1, and a second electrode located in the middle The sensor array 3, the first electrode sensor array 2 and the second electrode sensor array 3 respectively have a plurality of ECG collection electrodes 4 arranged in an array connected in parallel, and the ECG collection electrodes 4 communicate with the input terminal of the collection device through wires .
[0034] The wearable carrier 1 is a close-fitting short-sleeved T-shirt, vest or sports bra (women's); the carrier 1 is an elastic fabric; the upper right position of the carrier 1 is the RA area, which corresponds to the first rib of the right midline of the clavicle of the human body Space, that is, under the clavicle; the middle position of the carrier 1 is area C, w...
Embodiment 2
[0047] Embodiment two: as attached figure 1 , 3 As shown, the difference from the first embodiment is that the rectangular array of electricity collection electrodes 4 in the first method is distributed circularly. Although the row spacing between adjacent columns is equal, the column spacing between adjacent columns is equal, and the row spacing and column spacing are also equal; but the entire array is as follows image 3 The overall distribution shown is circular.
Embodiment 3
[0048] Embodiment three: as attached figure 1 , 4 As shown, the difference from Embodiment 1 is that
[0049]Method 2: Multiple ECG collection electrodes 4 are arranged in concentric rings; the 4 concentric rings of the electric collection electrodes in the second method are three layers; the 4 concentric rings of the electric collection electrodes in the second method are three layers , one electric collection electrode 4 in the first layer, six electric collection electrodes 4 in the second layer, twelve electric collection electrodes 4 in the third layer; one electric collection electrode 4 is in the center, and the second layer is evenly distributed around the first layer, By analogy, of course, it is not limited to three layers, as long as the electrodes of each layer are evenly distributed, and it is not limited to the number disclosed in this embodiment.
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