Literature DB >> 35189604

Modular multilevel TMS device with wide output range and ultrabrief pulse capability for sound reduction.

Zhiyong Zeng1, Lari M Koponen1, Rena Hamdan1, Zhongxi Li2, Stefan M Goetz1,2,3,4, Angel V Peterchev1,2,3,4,5.   

Abstract

Objective.This article presents a novel transcranial magnetic stimulation (TMS) pulse generator with a wide range of pulse shape, amplitude, and width.Approach.Based on a modular multilevel TMS (MM-TMS) topology we had proposed previously, we realized the first such device operating at full TMS energy levels. It consists of ten cascaded H-bridge modules, each implemented with insulated-gate bipolar transistors, enabling both novel high-amplitude ultrabrief pulses as well as pulses with conventional amplitude and duration. The MM-TMS device can output pulses including up to 21 voltage levels with a step size of up to 1100 V, allowing relatively flexible generation of various pulse waveforms and sequences. The circuit further allows charging the energy storage capacitor on each of the ten cascaded modules with a conventional TMS power supply.Main results. The MM-TMS device can output peak coil voltages and currents of 11 kV and 10 kA, respectively, enabling suprathreshold ultrabrief pulses (>8.25μs active electric field phase). Further, the MM-TMS device can generate a wide range of near-rectangular monophasic and biphasic pulses, as well as more complex staircase-approximated sinusoidal, polyphasic, and amplitude-modulated pulses. At matched estimated stimulation strength, briefer pulses emit less sound, which could enable quieter TMS. Finally, the MM-TMS device can instantaneously increase or decrease the amplitude from one pulse to the next in discrete steps by adding or removing modules in series, which enables rapid pulse sequences and paired-pulse protocols with variable pulse shapes and amplitudes.Significance.The MM-TMS device allows unprecedented control of the pulse characteristics which could enable novel protocols and quieter pulses.
© 2022 IOP Publishing Ltd.

Entities:  

Keywords:  cascaded H-bridge; loudness; modular multilevel converter; pulse shape; sound; transcranial magnetic stimulation

Mesh:

Year:  2022        PMID: 35189604      PMCID: PMC9425059          DOI: 10.1088/1741-2552/ac572c

Source DB:  PubMed          Journal:  J Neural Eng        ISSN: 1741-2552            Impact factor:   5.043


  40 in total

1.  Bidirectional long-term motor cortical plasticity and metaplasticity induced by quadripulse transcranial magnetic stimulation.

Authors:  Masashi Hamada; Yasuo Terao; Ritsuko Hanajima; Yuichiro Shirota; Setsu Nakatani-Enomoto; Toshiaki Furubayashi; Hideyuki Matsumoto; Yoshikazu Ugawa
Journal:  J Physiol       Date:  2008-07-03       Impact factor: 5.182

2.  Comparing the electric fields of transcranial electric and magnetic perturbation.

Authors:  D J Sheltraw; B Inglis; L Labruna; R Ivry
Journal:  J Neural Eng       Date:  2021-05-26       Impact factor: 5.379

3.  Double-Containment Coil With Enhanced Winding Mounting for Transcranial Magnetic Stimulation With Reduced Acoustic Noise.

Authors:  Lari M Koponen; Stefan M Goetz; Angel V Peterchev
Journal:  IEEE Trans Biomed Eng       Date:  2021-06-17       Impact factor: 4.538

4.  Biophysics of Temporal Interference Stimulation.

Authors:  Ehsan Mirzakhalili; Beatrice Barra; Marco Capogrosso; Scott F Lempka
Journal:  Cell Syst       Date:  2020-11-05       Impact factor: 10.304

Review 5.  Non-invasive electrical and magnetic stimulation of the brain, spinal cord, roots and peripheral nerves: Basic principles and procedures for routine clinical and research application. An updated report from an I.F.C.N. Committee.

Authors:  P M Rossini; D Burke; R Chen; L G Cohen; Z Daskalakis; R Di Iorio; V Di Lazzaro; F Ferreri; P B Fitzgerald; M S George; M Hallett; J P Lefaucheur; B Langguth; H Matsumoto; C Miniussi; M A Nitsche; A Pascual-Leone; W Paulus; S Rossi; J C Rothwell; H R Siebner; Y Ugawa; V Walsh; U Ziemann
Journal:  Clin Neurophysiol       Date:  2015-02-10       Impact factor: 3.708

6.  Late cortical disinhibition in human motor cortex: a triple-pulse transcranial magnetic stimulation study.

Authors:  R F H Cash; U Ziemann; K Murray; G W Thickbroom
Journal:  J Neurophysiol       Date:  2009-11-18       Impact factor: 2.714

7.  Safety of 5 kHz tACS.

Authors:  Leila Chaieb; Andrea Antal; Alberto Pisoni; Catarina Saiote; Alexander Opitz; Géza Gergely Ambrus; Niels Focke; Walter Paulus
Journal:  Brain Stimul       Date:  2013-09-13       Impact factor: 8.955

8.  Effect of coil orientation on strength-duration time constant and I-wave activation with controllable pulse parameter transcranial magnetic stimulation.

Authors:  Kevin D'Ostilio; Stefan M Goetz; Ricci Hannah; Matteo Ciocca; Raffaella Chieffo; Jui-Cheng A Chen; Angel V Peterchev; John C Rothwell
Journal:  Clin Neurophysiol       Date:  2015-05-30       Impact factor: 3.708

9.  Selective Suppression of Local Interneuron Circuits in Human Motor Cortex Contributes to Movement Preparation.

Authors:  Ricci Hannah; Sean E Cavanagh; Sara Tremblay; Sara Simeoni; John C Rothwell
Journal:  J Neurosci       Date:  2017-12-20       Impact factor: 6.167

10.  Analysis and optimization of pulse dynamics for magnetic stimulation.

Authors:  Stefan M Goetz; Cong Nam Truong; Manuel G Gerhofer; Angel V Peterchev; Hans-Georg Herzog; Thomas Weyh
Journal:  PLoS One       Date:  2013-03-01       Impact factor: 3.240

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  2 in total

1.  A high-density theta burst paradigm enhances the aftereffects of transcranial magnetic stimulation: Evidence from focal stimulation of rat motor cortex.

Authors:  Qinglei Meng; Hieu Nguyen; Antonia Vrana; Simone Baldwin; Charlotte Qiong Li; Antonia Giles; Jun Wang; Yihong Yang; Hanbing Lu
Journal:  Brain Stimul       Date:  2022-05-27       Impact factor: 9.184

Review 2.  The Problem and Potential of TMS' Infinite Parameter Space: A Targeted Review and Road Map Forward.

Authors:  Kevin A Caulfield; Joshua C Brown
Journal:  Front Psychiatry       Date:  2022-05-10       Impact factor: 5.435

  2 in total

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