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Transcranial magnetic stimulation: design of a high current magnetic pulse generator with custom coil for the application on small animals.

机译:经颅磁刺激:具有定制线圈的高电流磁脉冲发生器的设计,用于小动物的应用。

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Transcranial Magnetic Stimulation (TMS) is a non-invasive and outpatient treatment for Major Depressive Disorder (MDD)[1]. It has also proven to produce beneficial effects for other neurological and psychiatric disorders including: Parkinson's Disease (PD), Obsessive Compulsive Disorder (OCD), Anxiety, Post-Traumatic Stress Disorder (PTSD) and Schizophrenia [2]-[6]. Recently, researchers have shown interest in investigating the effect of TMS in neurological disorders which have not been explored by utilizing animal studies [7]. Animal studies are required to test the efficacy and safety of the treatments before using the new treatment in human subjects. Furthermore, animal studies can reduce research cost and speed up the development of new TMS treatment procedures. That is why it is important to have flexible and tunable hardware/coil solutions that allow tenability of power, current, and the shape of the signals needed for experimentation. TMS is based on the principal of Faraday's law of induction, in which time-varying magnetic fields are used to induce an electric field in the brain. Substantial research has been published related to the improvement of coil designs, using head models and clinical studies. However, few publications are available on TMS stimulators and even less on TMS stimulators for use on small animals such as rodents and mice. Current commercial TMS stimulators are very expensive and they have limited usage due to the coil's unique geometry and size. Perhaps an important contrasting is that commercial coils are large enough to stimulate the entire body of the small animal, so studies needed to focally stimulate part of the brain are impossible. Hence, in this article a novel design for a small size TMS stimulator has been proposed. TMS stimulator has been designed for the stimulation of small animals, namely mice and other rodents. This new design was created to focally stimulate parts of rodent brain instead of stimulating their whole body when a commercial coil is used. This will provide researchers an opportunity to choose small TMS coils since commercial TMS stimulators do not support small inductive loads [8]. Mice brains are very small in size when compared with human brains that consist of approximately 2 cm 2 surface area, whereas human brains have about 100 times more surface area [9]. This small area allows the distance between the coil and the surface of the brain to be small hence the field needed to stimulate the brain to initiate action potential is about 0.1Tesla [7]. This means the circuit designed has to be capable of handling current more than 300 A. In addition, the proposed design provides additional flexibility, so that the coil can be changed to match the required specification of other coil designs for different locations of stimulation. Figure 1 shows the TMS stimulator and a coil positioned on a mice model.
机译:经颅磁刺激(TMS)是主要抑郁症(MDD)的非侵入性和门诊治疗[1]。还证明对其他神经和精神病疾病产生有益效果,包括:帕金森病(Pd),强迫症(OCD),焦虑,创伤后应激障碍(PTSD)和精神分裂症[2] - [6]。最近,研究人员表明兴趣研究通过利用动物研究尚未探索的神经疾病中TMS的效果[7]。在使用人体受试者的新治疗之前,需要动物研究来测试治疗的疗效和安全性。此外,动物研究可以减少研究成本并加快开发新的TMS治疗程序。这就是为什么具有允许功率,电流和实验所需信号所需的信号的损阻性的灵活和可调硬件/线圈解决方案非常重要。 TMS是基于法拉第诱导定律的主体,其中使用时变磁场用于诱导大脑中的电场。已经出版了大量研究,与使用头部模型和临床研究的线圈设计的改进有关。然而,在TMS刺激器上有很少的出版物甚至更少地用于TMS刺激器,用于用于啮齿动物和小鼠的小动物。目前的商业TMS刺激器非常昂贵,由于线圈独特的几何形状和尺寸,它们具有有限的使用。也许一个重要的对比的是,商业线圈足够大的刺激小动物的整个身体,所以需要研究局灶刺激大脑的一部分是不可能的。因此,在本文中,提出了一种小型TMS刺激器的新颖设计。 TMS刺激器专为刺激小型动物,即小鼠和其他啮齿动物而设计。创建了这种新设计,以促使使用啮齿动物大脑的部分,而不是在使用商业线圈时刺激整个身体。这将为研究人员提供选择小型TMS线圈的机会,因为商业TMS刺激器不支持小型电感载荷[8]。与大约2厘米组成的人性大脑相比,小鼠大脑的大小非常小 2 表面积,人体大脑具有约100倍的表面积[9]。这个小区域允许线圈与大脑的表面之间的距离小,因此刺激大脑以启动动作电位所需的场是约0.1tesla [7]。此装置设计的电路必须能够处理当前超过300 A.此外,所提出的设计提供了额外的灵活性,从而使线圈可以改变,以匹配刺激的不同位置的其他线圈设计的要求的规格。图1示出了TMS刺激器和定位在小鼠模型上的线圈。

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