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經(jīng)顱磁刺激放電回路參數(shù)對線圈脈沖電流特性的影響

Influence of parameters of on Characteristics of coil pulse current the discharge circuit in transcranial magnetic stimulation

作者: 潘強強  逯邁  董緒偉  陳小強  魏孔炳 
單位:                      蘭州交通大學光電技術與智能控制教育部重點實驗室(蘭州730070)        
關鍵詞:                     經(jīng)顱磁刺激;電磁感應;線圈;傅里葉變換;脈沖電流          
分類號:
出版年·卷·期(頁碼):2014·33·6(583-590)
摘要:

           目的  本文分析了經(jīng)顱磁刺激放電回路參數(shù),包括放電回路中總電容(C)、放電電壓(U)以及放電線圈的電感值(L)和電阻值(R)對線圈放電電流特性的影響,為經(jīng)顱磁刺激放電回路參數(shù)的優(yōu)化提供理論指導。 方法  首先理論上對經(jīng)顱磁刺激系統(tǒng)基本電路進行分析,得出放電電流與放電回路參數(shù)的關系式,然后通過仿真和實驗相結(jié)合的方法,研究放電回路參數(shù)對線圈脈沖電流的影響。同時,利用傅里葉變換分析線圈脈沖放電電流的頻域特性。 結(jié)果  單獨增大儲能電容值,增大了線圈放電電流幅值,延長了脈沖電流上升沿時間和脈寬持續(xù)時間,減小了電流信號的主頻。單獨減小回路總電阻值,增大了脈沖電流的幅值,提高了電流信號的主頻,但更容易使脈沖電流出現(xiàn)多次振蕩。單獨增大回路電感值,減小了脈沖電流幅值,延長了脈沖電流的上升沿時間和脈寬持續(xù)時間,電流信號主頻先增大后減小。 結(jié)論  在經(jīng)顱磁刺激系統(tǒng)工程設計中,放電回路參數(shù)值要匹配,不同的回路參數(shù)取值直接影響線圈脈沖電流的特性。本研究對設計特定指標要求的經(jīng)顱磁刺激系統(tǒng)具有理論參考價值。    

       Objective This paper discusses the influence of parameters of the discharge circuit, including total capacitance (C), discharge voltage (U), coil inductance (L) and resistance (R) on coil currents in transcranial magnetic stimulation (TMS). Results in this paper provide theoretical support to optimize the parameters of the discharge circuits in TMS. Methods First, the paper presents the theoretically analysis of basic circuit of TMS system, and obtains the relationship between coil currents and circuit parameters. Second, the effects of circuit parameters on coil currents are investigated by simulation and experiment. The characteristics of coil currents in frequency domain are analyzed by using a Fourier transform. Results With the increasing of the capacitance of storage capacitor, the amplitude of coil current increases. At the same time, the rising time and the duration width of current pulse are extended, and the dominant frequency of current pulse decreases. With the decreasing of the total resistance of discharge circuit, the amplitude of pulse current increases, the frequency of current pulse is improved, and the current pulse shows the characteristics of multiple oscillations. With the increasing of the inductance value of discharge circuit, the amplitude of current pulse decreases, the rising time of current pulse and duration of pulse width increase, and the dominant frequency of current pulse increases to a maximum value and then decreases. Conclusions Since the characteristics of current pulse in stimulation coil are influenced greatly by different parameters of discharged circuits, the values of C, U, L and R should be matched in the practical TMS applications. Results in this paper provide theoretical reference for the design of the TMS system with specifically defined requirements.

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