Das Himshekhar, Park Hangue
Electrical and Computer Engineering, Texas A & M University, College Station, USA.
Biomed Eng Lett. 2022 Jul 15;12(3):285-293. doi: 10.1007/s13534-022-00239-7. eCollection 2022 Aug.
A standalone neuro-stimulator circuit without a need of microcontroller (MCU) is presented. The neuro-stimulator circuit has a capability to produce a biphasic electrical stimulus with programmable pulse width and train duration. The proposed hardware system consists of commercial-off-the-shelf (COTS) components: a comparator to recognize triggering events and generate on/off signal for a variable train duration, a programmable timer to generate oscillatory signal with a fixed frequency and a variable pulse width, and a differentiator to convert monophasic pulses to biphasic pulses. The differentiator also works as a current driver having current drive capability of up to 40 mA. The proposed MCU-less biphasic electrical neuro-stimulator successfully generated biphasic stimuli with variable pulse widths from 400 µs to 5 ms and train durations from 35 to 55% of cycle duration. It works with fixed parameters programmed at the beginning, and does not need continuous MCU input. Therefore, the proposed standalone neuro-stimulator circuit has a potential to decrease power and area consumption and minimize the size of the neuro-stimulator system.
本文提出了一种无需微控制器(MCU)的独立神经刺激器电路。该神经刺激器电路能够产生具有可编程脉冲宽度和串刺激持续时间的双相电刺激。所提出的硬件系统由现成的商用(COTS)组件组成:一个比较器,用于识别触发事件并生成用于可变串刺激持续时间的开/关信号;一个可编程定时器,用于生成具有固定频率和可变脉冲宽度的振荡信号;以及一个微分器,用于将单相脉冲转换为双相脉冲。该微分器还用作电流驱动器,其电流驱动能力高达40 mA。所提出的无MCU双相电神经刺激器成功地产生了脉冲宽度从400 µs到5 ms可变且串刺激持续时间为周期持续时间的35%至55%的双相刺激。它在开始时使用编程的固定参数工作,不需要MCU的持续输入。因此,所提出的独立神经刺激器电路有可能降低功耗和面积消耗,并使神经刺激器系统的尺寸最小化。