Finite Element Simulation of Transcranial Current Stimulation in Realistic Rat Head Model

被引:0
|
作者
Gasca, Fernando [1 ]
Marshall, Lisa [4 ]
Binder, Sonja [4 ]
Schlaefer, Alexander
Hofmann, Ulrich G. [2 ]
Schweikard, Achim [3 ]
机构
[1] Univ Lubeck, Med & Life Sci, Grad Sch Comp, Inst Robot & Cognit Syst, Lubeck, Germany
[2] Univ Lubeck, Inst Signal Proc, Lubeck, Germany
[3] Univ Lubeck, Inst Robot & Cognit Syst, Lubeck, Germany
[4] Univ Lubeck, Dept Neuroendocrinol, Lubeck, Germany
来源
2011 5TH INTERNATIONAL IEEE/EMBS CONFERENCE ON NEURAL ENGINEERING (NER) | 2011年
关键词
TDCS;
D O I
暂无
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Transcranial current stimulation (tCS) is a method for modulating neural excitability and is used widely for studying brain function. Although tCS has been used on the rat, there is limited knowledge on the induced electric field distribution during stimulation. This work presents the finite element (FE) simulations of tCS in a realistic rat head model derived from MRI data. We simulated two electrode configurations and analyzed the spatial focality of the induced electric field for three implantation depth scenarios : (1) electrode implanted at the surface of the skull, (2) halfway through the skull and (3) in contact with cerebrospinal fluid. We quantitatively show the change in focality of stimulation with depth. This work emphasizes the importance of performing FE analysis in realistic models as a vital step in the design of tCS rat experiments. This can yield a better understanding of the location and intensity of stimulation, and its correlation to brain function.
引用
收藏
页码:36 / 39
页数:4
相关论文
共 50 条
  • [41] Finite element analysis of Transcranial electrical stimulation for intraoperative monitoring
    Li, DLL
    Rath, WT
    Journee, HL
    Sclabassi, RJ
    Sun, MG
    2005 IEEE 31ST ANNUAL NORTHEAST BIOENGINEERING CONFERENCE, 2005, : 96 - 97
  • [42] Transcranial stimulation analysis using the smoothed finite element method
    Wang, G.
    Guo, Z. B.
    Wang, Z. H.
    Han, X.
    COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2022, 391
  • [43] Deep Transcranial Magnetic Stimulation:Improved Coil Design and Assessment of the Induced Fields Using Realistic Head Model
    Wei, Xile
    Shi, Dongxu
    Lu, Meili
    Yi, Guosheng
    Wang, Jiang
    PROCEEDINGS OF THE 38TH CHINESE CONTROL CONFERENCE (CCC), 2019, : 3727 - 3731
  • [44] Transcranial direct current stimulation in patients after decompressive craniectomy: a finite element model to investigate factors affecting the cortical electric field
    Sun, Weiming
    Dong, Xiangli
    Yu, Guohua
    Shuai, Lang
    Yuan, Yefeng
    Ma, Chaolin
    JOURNAL OF INTERNATIONAL MEDICAL RESEARCH, 2021, 49 (02)
  • [45] Subcortical effects of transcranial direct current stimulation in the rat
    Bolzoni, F.
    Baczyk, M.
    Jankowska, E.
    JOURNAL OF PHYSIOLOGY-LONDON, 2013, 591 (16): : 4027 - 4042
  • [46] Anticonvulsive aftereffects of cathodal transcranial direct current stimulation (tDCS) in the rat transcranial ramp model of focal epilepsy
    Klinker, F.
    Hering, D.
    Koch, R.
    Nitsche, M. A.
    Potschka, H.
    Loscher, W.
    Paulus, W.
    Tergau, F.
    Liebetanz, D.
    EPILEPSIA, 2007, 48 : 55 - 56
  • [47] Simulation study on parameter optimization of transcranial direct current stimulation based on rat brain slices
    He, Shiji
    Zhang, Guanghao
    Wu, Changzhe
    Huo, Xiaolin
    Zhang, Lijun
    Zhang, Jingxi
    Zhang, Cheng
    Shengwu Yixue Gongchengxue Zazhi/Journal of Biomedical Engineering, 2024, 41 (05): : 945 - 950
  • [48] A multiconductor model for finite-element eddy-current simulation
    De Gersem, H
    Hameyer, K
    IEEE TRANSACTIONS ON MAGNETICS, 2002, 38 (02) : 533 - 536
  • [49] Effect of Model Accuracy on the Result of Computed Current Densities in the Simulation of Transcranial Magnetic Stimulation
    Golestanirad, Laleh
    Mattes, Michael
    Mosig, Juan R.
    Pollo, Claudio
    IEEE TRANSACTIONS ON MAGNETICS, 2010, 46 (12) : 4046 - 4051
  • [50] A comprehensive analysis of the impact of head model extent on electric field predictions in transcranial current stimulation
    Callejon-Leblic, M. A.
    Miranda, Pedro C.
    JOURNAL OF NEURAL ENGINEERING, 2021, 18 (04)