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Controllable pulse parameter transcranial magnetic stimulator with enhanced circuit topology and pulse shaping

机译:具有增强的电路拓扑和脉冲整形的可控脉冲参数经颅磁刺激仪

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Objective. This work aims at flexible and practical pulse parameter control in transcranial magnetic stimulation (TMS), which is currently very limited in commercial devices. Approach. We present a third generation controllable pulse parameter device (cTMS3) that uses a novel circuit topology with two energy-storage capacitors. It incorporates several implementation and functionality advantages over conventional TMS devices and other devices with advanced pulse shape control. cTMS3 generates lower internal voltage differences and is implemented with transistors with a lower voltage rating than prior cTMS devices. Main results. cTMS3 provides more flexible pulse shaping since the circuit topology allows four coil-voltage levels during a pulse, including approximately zero voltage. The near-zero coil voltage enables snubbing of the ringing at the end of the pulse without the need for a separate active snubber circuit. cTMS3 can generate powerful rapid pulse sequences (< 10 ms inter pulse interval) by increasing the width of each subsequent pulse and utilizing the large capacitor energy storage, allowing the implementation of paradigms such as paired-pulse and quadripulse TMS with a single pulse generation circuit. cTMS3 can also generate theta (50 Hz) burst stimulation with predominantly unidirectional electric field pulses. The cTMS3 device functionality and output strength are illustrated with electrical output measurements as well as a study of the effect of pulse width and polarity on the active motor threshold in ten healthy volunteers. Significance. The cTMS3 features could extend the utility of TMS as a research, diagnostic, and therapeutic tool.
机译:目的。这项工作的目的是在经颅磁刺激(TMS)中灵活而实用的脉冲参数控制,目前在商用设备中非常有限。方法。我们介绍了第三代可控脉冲参数设备(cTMS3),该设备使用具有两个储能电容器的新型电路拓扑。与传统的TMS设备和其他具有高级脉冲形状控制的设备相比,它具有多项实现和功能优势。 cTMS3产生较低的内部电压差,并以额定电压比以前的cTMS器件低的晶体管实现。主要结果。 cTMS3提供了更灵活的脉冲整形,因为电路拓扑允许在脉冲期间提供四个线圈电压电平,包括大约零电压。接近零的线圈电压可在脉冲结束时抑制振铃,而无需单独的有源缓冲电路。 cTMS3可以通过增加每个后续脉冲的宽度并利用大的电容器能量存储来生成强大的快速脉冲序列(脉冲间隔小于10 ms),从而允许通过单个脉冲生成电路来实现诸如成对脉冲和四脉冲TMS之类的范例。 cTMS3还可以使用主要是单向电场脉冲来产生theta(50 Hz)突发刺激。 cTMS3设备的功能和输出强度通过电输出测量以及在10名健康志愿者中研究脉冲宽度和极性对活动电机阈值的影响进行了说明。意义。 cTMS3功能可以扩展TMS作为研究,诊断和治疗工具的用途。

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