TAILIEUCHUNG - Standard transcranial direct current stimulation (tDCS) model
In this device, we introduced a flexible headband which can easily fit everyone’s head. This headband consists of two electrodes by which current is passed through the brain. We have developed an android application to control the current flow of the device smartly. It can be add new dimension in neurostimulation process. | International Journal of Computer Networks and Communications Security VOL. 5, NO. 12, DECEMBER 2017, 264–270 Available online at: E-ISSN 2308-9830 (Online) / ISSN 2410-0595 (Print) Standard Transcranial Direct Current Stimulation (tDCS) Model Ullah Sourav1, Asifur Rahman2, Abdullah Al Mamun3 and Fakir Mashuque Alamgir4 1, 2 3 Student of Electrical & Electronic Engineering, East West University, Dhaka, Bangladesh. Graduated from Electrical & Electronic Engineering, East West University, Dhaka, Bangladesh 4 Faculty of Electrical & Electronic Engineering, East West University, Dhaka, Bangladesh 1 , , 3amamun860@, 4fma@ ABSTRACT TDCS, the Transcranial Direct Current Stimulation is a non-invasive, painless brain stimulation treatment. It was originally developed to help patients who suffer from brain injuries or psychiatric conditions like major depressive disorder. We made advance tDCS device that can pass a little amount of current ranging between mA at a voltage range ± voltage within the brain scalps as well as store the stimulation data in real time. In this device, we introduced a flexible headband which can easily fit everyone’s head. This headband consists of two electrodes by which current is passed through the brain. We have developed an android application to control the current flow of the device smartly. It can be add new dimension in neurostimulation process. Keywords: Transcranial Direct Current Stimulation, tDCS, neurostimulation, electrodes, flexible headband, LM334, tDCS android app, MATLAB. 1 INTRODUCTION Transcranial Direct Current Stimulation (tDCS) is a form of neurostimulation. In this process, very low levels of constant current are passed to specifically targeted areas of the brain, often producing profound results. It was originally developed to help patients with brain injuries such as strokes, Alzheimer's disease, schizophrenia .
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