Neurobiology Research Unit, Department of Neurology, Copenhagen University Hospital - Rigshospitalet, Inge Lehmannsvej 6-8, 2100 Copenhagen, Denmark; Copenhagen Spine Research Unit, Center for Rheumatology and Spine Diseases, Copenhagen University Hospital - Rigshospitalet, Valdemar Hansens Vej 13-17, 2600 Glostrup, Denmark; Department of Clinical Medicine, University of Copenhagen, Blegdamsvej 2, 2200 Copenhagen, Denmark.
Research Center for Advanced Imaging, Copenhagen University Hospital - Roskilde, Sygehusvej 6, 4000 Roskilde, Denmark.
J Neurosci Methods. 2022 Aug 1;378:109659. doi: 10.1016/j.jneumeth.2022.109659. Epub 2022 Jun 27.
Neuromodulation is a rapidly expanding therapeutic option considered within neuropsychiatry, pain and rehabilitation therapy. Combining electrostimulation with feedback from fMRI can provide information about the mechanisms underlying the therapeutic effects, but so far, such studies have been hampered by the lack of technology to conduct safe and accurate experiments. Here we present a system for fMRI compatible electrical stimulation, and the first proof-of-concept neuroimaging data with deep brain stimulation (DBS) in pigs obtained with the device.
The system consists of two modules, placed in the control and scanner room, connected by optical fiber. The system also connects to the MRI scanner to timely initiate the stimulation sequence at start of scan. We evaluated the system in four pigs with DBS in the subthalamic nucleus (STN) while we acquired BOLD responses in the STN and neocortex.
We found that the system delivered robust electrical stimuli to the implanted electrode in sync with the preprogrammed fMRI sequence. All pigs displayed a DBS-STN induced neocortical BOLD response, but none in the STN.
The system solves three major problems related to electric stimuli and fMRI examinations, namely preventing distortion of the fMRI signal, enabling communication that synchronize the experimental conditions, and surmounting the safety hazards caused by interference with the MRI scanner.
The fMRI compatible electrical stimulator circumvents previous problems related to electroceuticals and fMRI. The system allows flexible modifications for fMRI designs and stimulation parameters, and can be customized to electroceutical applications beyond DBS.
神经调节是一种在神经精神医学、疼痛和康复治疗中被广泛考虑的治疗选择。将电刺激与 fMRI 的反馈相结合,可以提供关于治疗效果的机制的信息,但到目前为止,由于缺乏进行安全和准确实验的技术,此类研究受到了阻碍。在这里,我们提出了一种用于 fMRI 兼容电刺激的系统,并展示了使用该设备在猪身上进行的深部脑刺激(DBS)的第一个概念验证性神经影像学数据。
该系统由两个模块组成,分别放置在控制室和扫描室内,通过光纤连接。该系统还与 MRI 扫描仪相连,以便在扫描开始时及时启动刺激序列。我们在四只接受丘脑底核(STN)DBS 的猪中评估了该系统,同时在 STN 和新皮层中获取了 BOLD 反应。
我们发现该系统能够与预编程的 fMRI 序列同步向植入的电极输送强大的电刺激。所有的猪都显示出 DBS-STN 诱导的新皮层 BOLD 反应,但在 STN 中没有。
该系统解决了与电刺激和 fMRI 检查相关的三个主要问题,即防止 fMRI 信号失真、实现同步实验条件的通信以及克服与 MRI 扫描仪干扰相关的安全危害。
该 fMRI 兼容的电刺激器规避了与电疗和 fMRI 相关的先前问题。该系统允许灵活修改 fMRI 设计和刺激参数,并可针对除 DBS 之外的电疗应用进行定制。