Sarma Anish A, Crocker Britni, Cash Sydney S, Truccolo Wilson
Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:3139-3142. doi: 10.1109/EMBC.2016.7591394.
Neuromodulation systems based on electrical stimulation can be used to investigate, probe, and potentially treat a range of neurological disorders. The effects of ongoing neural state and dynamics on stimulation response, and of stimulation parameters on neural state, have broad implications for the development of closed-loop neuro-modulation approaches. We describe the development of a modular, low-latency platform for pre-clinical, closed-loop neuromodulation studies with human participants. We illustrate the uses of the platform in a stimulation case study with a person with epilepsy undergoing neuro-monitoring prior to resective surgery. We demonstrate the efficacy of the system by tracking interictal epileptiform discharges in the local field potential to trigger intracranial electrical stimulation, and show that the response to stimulation depends on the neural state.
基于电刺激的神经调节系统可用于研究、探测并有可能治疗一系列神经系统疾病。持续的神经状态和动力学对刺激反应的影响,以及刺激参数对神经状态的影响,对闭环神经调节方法的发展具有广泛意义。我们描述了一个用于人体参与者临床前闭环神经调节研究的模块化、低延迟平台的开发。我们通过一个刺激案例研究说明了该平台的用途,该案例涉及一名癫痫患者在切除性手术前接受神经监测。我们通过追踪局部场电位中的发作间期癫痫样放电以触发颅内电刺激来证明该系统的有效性,并表明对刺激的反应取决于神经状态。