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i-SATA: A MATLAB based toolbox to estimate current density generated by transcranial direct current stimulation in an individual brain

机译:I-SATA:基于MATLAB的工具箱,以估计各个脑中经常电流刺激产生的电流密度

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Objective. Transcranial Direct Current Stimulation (tDCS) is a technique where a weak current is passed through the electrodes placed on the scalp. The distribution of the electric current induced in the brain due to tDCS is provided by simulation toolbox like Realistic volumetric Approach based Simulator for Transcranial electric stimulation (ROAST). However, the procedure to estimate the total current density induced at the target and the intermediary region of the cortex is complex. The Systematic-Approach-for-tDCS-Analysis (SATA) was developed to overcome this problem. However, SATA is limited to standardized (MNI152) headspace only. Here we develop individual-SATA (i-SATA) to extend it to individual head. Approach. T1-weighted images of 15 subjects were taken from two Magnetic Resonance Imaging scanners of different strengths. Across the subjects, the montages were simulated in ROAST. i-SATA converts the ROAST output to Talairach space. The x, y and z coordinates of the anterior commissure (AC), posterior commissure (PC), and Mid-Sagittal (MS) points are necessary for the conversion. AC and PC are detected using the acpcdetect toolbox. We developed a method to determine the MS in the image and cross-verified its location manually using BrainSight®. Main results. Determination of points with i-SATA is fast and accurate. The i-SATA provided estimates of the current-density induced across an individual’s cortical lobes and gyri as tested on images from two different scanners. Significance. Researchers can use i-SATA for customizing tDCS-montages. With i-SATA it is also easier to compute the inter-individual variation in current-density across the target and intermediary regions of the brain. The software is publicly available.
机译:客观的。经颅直流刺激(TDC)是一种技术,其中弱电流通过放置在头皮上的电极。由于TDCS在大脑中引起的电流的分布是由仿真工具箱提供的,如基于现实的体积方法的基于经颅电刺激(烘烤)的逼真方法。然而,估计在靶标和皮质中间区域的诱导的总电流密度的方法是复杂的。制定了系统逼近的TDCS分析(SATA)以克服这个问题。然而,SATA仅限于标准化(MNI152)顶空。在这里,我们开发个人SATA(I-SATA)将其扩展到单个头部。方法。从不同强度的两个磁共振成像扫描仪取出15个受试者的T1加权图像。横跨对象,蒙太曲面被烘焙模拟。 I-SATA将烘烤输出转换为Talairach空间。前连箱(AC),后部公布(PC)和中矢状(MS)点的X,Y和Z坐标是转换所必需的。使用ACPCDetect Toolbox检测AC和PC。我们开发了一种方法来确定图像中的MS并使用Brainsight®手动交叉验证其位置。主要结果。使用I-SATA的点数快速准确。 I-SATA提供了在来自两个不同扫描仪的图像上测试的单个皮质叶片和吉尔蒂的电流密度的估计。意义。研究人员可以使用i-sata来定制TDCS蒙太奇。使用i-SATA,它也更容易计算跨大脑的目标和中间区域的电流密度的各个电流变化。该软件公开可用。

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