Key Laboratory of Biorheological Science and Technology of Ministry of Education, Chongqing University, Chongqing, 400044, China.
Chongqing Medical Electronics Engineering Technology Research Center, Chongqing University, Chongqing 400044, China.
Lasers Med Sci. 2020 Mar;35(2):365-372. doi: 10.1007/s10103-019-02826-0. Epub 2019 Jun 20.
The post-stimulation response of neural activities plays an important role to evaluate the effectiveness and safety of neural modulation techniques. Previous studies have established the capability of infrared neural modulation (INM) on neural firing regulation in the central nervous system (CNS); however, the dynamic neural activity after the laser offset has not been well characterized yet. We applied 980-nm infrared diode laser light to irradiate the primary motor cortex of rats, and tungsten electrode was inserted to record the single-unit activity of neurons at the depth of 800-1000 μm (layer V of primary motor cortex). The neural activities were assessed through the change of neural firing rate and firing pattern pre- and post-stimulation with various radiant exposures. The results showed that the 980-nm laser could modulate the firing properties of neurons in the deep layer of the cortex. More neurons with post-stimulation response (78% vs. 83%) were observed at higher stimulation intensity (0.803 J/cm vs. 1.071 J/cm, respectively). The change of firing rate also increased with radiant exposures increasing, and the response lasted up to 4.5 s at 1.071 J/cm, which was significantly longer than the theoretical thermal relaxation time. Moreover, the increasing Fano factors indicated the irregularity firing pattern of post-stimulation response. Our results confirmed that neural activity maintained a prolonged post-stimulation response after INM, which may provide necessary measurable data for optimization of INM applications in CNS.
神经活动的后刺激反应在评估神经调节技术的有效性和安全性方面起着重要作用。先前的研究已经证明了红外神经调节(INM)在中枢神经系统(CNS)中对神经发射调节的能力;然而,激光关闭后的动态神经活动尚未得到很好的描述。我们应用 980nm 红外二极管激光照射大鼠初级运动皮层,插入钨电极记录 800-1000μm 深度(初级运动皮层 V 层)的神经元的单细胞活动。通过在不同辐照剂量下刺激前后的神经发射率和发射模式的变化来评估神经活动。结果表明,980nm 激光可以调节皮层深层神经元的发射特性。在更高的刺激强度(分别为 0.803J/cm 和 1.071J/cm)下,观察到更多具有后刺激反应的神经元(78%对 83%)。随着辐照剂量的增加,发射率的变化也增加,在 1.071J/cm 时,反应持续时间长达 4.5s,明显长于理论热弛豫时间。此外,增加的 Fano 因子表明后刺激反应的不规则发射模式。我们的结果证实,INM 后神经活动保持了延长的后刺激反应,这可能为 INM 在 CNS 中的应用优化提供必要的可测量数据。