Nerve stimulator and manufacturing method thereof
A nerve stimulation and production method technology, applied in the field of biomedical engineering, can solve the problems of large surgical implant opening, large wiring width, and large trauma surface, and achieve the effects of short production cycle, reduced wiring width, and simple method
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Embodiment 1
[0041] A neurostimulator such as figure 1 As shown, including the substrate 1, a number of through holes are opened;
[0042] Several microelectrodes 2 are used to stimulate neurons; the microelectrodes 2 are arranged on the substrate by filling through holes, and the stimulation part 7 of the microelectrode 2 leaks out on one side of the substrate, and the microelectrode 2 is on the other side. Connecting part 6;
[0043] The stimulation chip 3 is used to control the microelectrodes 2 to send stimulation signals to neurons and receive feedback signals; the connection part 6 of the microelectrodes 2 is directly flip-chip welded on the stimulation chip 3;
[0044] The casing 4 is sealed and connected to the base 1 , and forms a cavity with the base 1 , and is used for encapsulating the connection part 6 of the microelectrode 2 and the stimulation chip 3 .
[0045] Above-mentioned technical scheme is the core technical scheme of the present invention, and the microelectrode 1 ...
Embodiment 2
[0055] The difference from Example 1 is that the materials of the base 1 and the shell 4 in this embodiment are both glass with good biocompatibility, and the preferred material of the base 1 and the shell 4 in this embodiment is borosilicate glass. As a variant, the material of the base 1 and the housing 4 can also be soda lime glass. In this embodiment, the microelectrode array is 30*30. Others are the same as in Example 1.
[0056] The details are as follows, a nerve stimulator includes a base 1 with several through holes;
[0057] Several microelectrodes 2 are used to stimulate neurons; the microelectrodes 2 are arranged on the substrate by filling through holes, and the stimulation part 7 of the microelectrode 2 leaks out on one side of the substrate, and the microelectrode 2 is on the other side. Connecting part 6;
[0058] The stimulation chip 3 is used to control the microelectrodes 2 to send stimulation signals to neurons and receive feedback signals; the connectio...
Embodiment 3
[0069] The difference from Embodiment 1 is that the material of the substrate 1 in this embodiment is polyimide, and the substrate material of this embodiment can also be silicon or parylene. As a modification, the base material of this embodiment may also be silicon. Others are the same as in Embodiment 1, and will not be repeated here.
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