Abstract:
An electronic stimulation device is adapted for electrically stimulating a target zone of an organism with relative low pain sensations without generating relative much sensations of paresthesia. The electronic stimulation device comprises at least one electronic stimulation unit. The electronic stimulation unit includes at least one first electrode and at least one second electrode. The electronic stimulation unit receives a high-frequency electrical stimulation signal to impel the first electrode and the second electrode to generate an electric field. The range of the electric field covers the target zone, and the electric field strength ranges from 100 V/m to 1000 V/m. The frequency of the high-frequency electrical stimulation signal ranges from 200 KHz to 1000 KHz.
Abstract translation:电子刺激装置适于电刺激具有相对低的疼痛感觉的生物体的目标区域,而不产生相对多的感觉异常感。 电子刺激装置包括至少一个电子刺激单元。 电子刺激单元包括至少一个第一电极和至少一个第二电极。 电子刺激单元接收高频电刺激信号以推动第一电极和第二电极以产生电场。 电场范围覆盖目标区域,电场强度范围为100 V / m至1000 V / m。 高频电刺激信号的频率范围为200KHz至1000KHz。
Abstract:
A waterproof structure for an implanted electronic device is capable of preventing the liquid or moist from entering and damaging the circuit board of the electronic device. The waterproof structure includes a shell, a first material layer, a second material layer, and a third material layer. The first material layer covers at least a part of the implanted electronic device. The second material layer covers the first material layer. The internal space of the shell is configured for accommodating the implanted electronic device. The shell is made of PEEK (polyether ether ketone). The third material layer is disposed between the second material layer and the shell.
Abstract:
A housing structure for covering electronic device comprises a housing. The housing comprises a first housing portion and a second housing portion. The first housing portion and the second housing portion are sealed together, and the material of the first housing portion and the second housing portion is polyether ether ketone.
Abstract:
An electrical stimulation method is provided. The electrical stimulation method is applied to an electrical stimulation device and an external control device. The electrical stimulation method includes the following steps. The predetermined electrical stimulation level that corresponds to the predetermined target energy is obtained by the external control device. The predetermined target energy is one of the target energies in the first target energy set. The external control device selects the target energy upper bound and the target energy lower bound from the first target energy set according to the predetermined electrical stimulation level. The external control device generates a second target energy set according to the target energy upper bound and the target energy lower bound. The electrical stimulation device performs electrical stimulation of the target area of a target object according to the second target energy set.
Abstract:
A waterproof structure for an implanted electronic device is capable of preventing the liquid or moist from entering and damaging the circuit board of the electronic device. The waterproof structure includes a shell, a first material layer, a second material layer, and a third material layer. The first material layer covers at least a part of the implanted electronic device. The second material layer covers the first material layer. The internal space of the shell is configured for accommodating the implanted electronic device. The shell is made of PEEK (polyether ether ketone). The third material layer is disposed between the second material layer and the shell.
Abstract:
The desensitizing device contains an electrical stimulation member optionally configured on a support member. The electrical stimulation member contains a control circuit and at least two electrodes. The control circuit generates a stimulating current to the electrodes. By configuring the electrodes contacted with the skin, the stimulating signal produced by the control circuit is conducted to the electrodes and provides a subcutaneous nerve stimulation through the skin. The subcutaneous nerve is as such temporarily numbed and desensitized.
Abstract:
A nerve electrical stimulation device includes an electrical stimulator and a magnetic electrode assembly. The electrical stimulator includes a housing, a circuit board, two first electrical connecting elements and a first magnetic unit. One end of each first electrical connecting element is connected to the circuit board. The magnetic electrode assembly includes a main body, two electrodes, a second magnetic unit and two second electrical connecting elements. The electrodes are disposed on a surface of the main body, and connected to the circuit board. The second magnetic unit is located corresponding to the first magnetic unit. The second electrical connecting elements pass through the main body and connected to the electrodes and the other ends of the first electrical connecting elements, respectively. The magnetic electrode assembly is detachably positioned at one side of the electrical stimulator by a magnetic attraction of the first and second electrical connecting elements.
Abstract:
The desensitizing device contains an electrical stimulation member optionally configured on a support member. The electrical stimulation member contains a control circuit and at least two electrodes. The control circuit generates a stimulating current to the electrodes. By configuring the electrodes contacted with the skin, the stimulating signal produced by the control circuit is conducted to the electrodes and provides a subcutaneous nerve stimulation through the skin. The subcutaneous nerve is as such temporarily numbed and desensitized.