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Implantable Stimulator for Epileptic Seizure Suppression With Loading Impedance Adaptability

机译:具有负载阻抗适应性的用于癫痫发作抑制的植入式刺激器

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The implantable stimulator for epileptic seizure suppression with loading impedance adaptability was proposed in this work. The stimulator consisted of the high voltage generator, output driver, adaptor, and switches, can constantly provide the required 40-$mu{rm A}$ stimulus currents, as the loading impedance varied within 10 ${rm k}Omega$ –300 ${rm k}Omega$. The performances of this design have been successfully verified in silicon chip fabricated by a 0.35- $mu{rm m}$ 3.3-V/24-V CMOS process. The power consumption of this work was only 1.1 mW–1.4 mW. The animal test results with the fabricated chip of proposed design have successfully verified in the Long-Evans rats with epileptic seizures.
机译:在这项工作中提出了具有负载阻抗适应性的可抑制癫痫发作抑制的植入式刺激器。该刺激器由高压发生器,输出驱动器,适配器和开关组成,可以不断提供所需的40- <公式Formulatype =“ inline”> $ mu {rm A} $ 刺激电流,因为负载阻抗在10 $ {rm k} Omega $ $ {rm k} Omega $ 。此设计的性能已在0.35- $ mu {rm m} $ 3.3-公式制作的硅芯片中成功验证。 V / 24-V CMOS工艺。这项工作的功耗仅为1.1 mW–1.4 mW。用拟议设计的芯片制造的动物试验结果已在癫痫性癫痫发作的Long-Evans大鼠中得到了成功验证。

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