Hulsey Daniel R, Riley Jonathan R, Loerwald Kristofer W, Rennaker Robert L, Kilgard Michael P, Hays Seth A
The University of Texas at Dallas, School of Behavioral Brain Sciences, BSB 14, Richardson, TX 75080, United States; Texas Biomedical Device Center, BSB 11, Richardson, TX 75080, United States.
Texas Biomedical Device Center, BSB 11, Richardson, TX 75080, United States.
Exp Neurol. 2017 Mar;289:21-30. doi: 10.1016/j.expneurol.2016.12.005. Epub 2016 Dec 14.
Vagus nerve stimulation (VNS) has emerged as a therapy to treat a wide range of neurological disorders, including epilepsy, depression, stroke, and tinnitus. Activation of neurons in the locus coeruleus (LC) is believed to mediate many of the effects of VNS in the central nervous system. Despite the importance of the LC, there is a dearth of direct evidence characterizing neural activity in response to VNS. A detailed understanding of the brain activity evoked by VNS across a range of stimulation parameters may guide selection of stimulation regimens for therapeutic use. In this study, we recorded neural activity in the LC and the mesencephalic trigeminal nucleus (Me5) in response to VNS over a broad range of current amplitudes, pulse frequencies, train durations, inter-train intervals, and pulse widths. Brief 0.5s trains of VNS drive rapid, phasic firing of LC neurons at 0.1mA. Higher current intensities and longer pulse widths drive greater increases in LC firing rate. Varying the pulse frequency substantially affects the timing, but not the total amount, of phasic LC activity. VNS drives pulse-locked neural activity in the Me5 at current levels above 1.2mA. These results provide insight into VNS-evoked phasic neural activity in multiple neural structures and may be useful in guiding the selection of VNS parameters to enhance clinical efficacy.
迷走神经刺激(VNS)已成为一种治疗多种神经系统疾病的疗法,包括癫痫、抑郁症、中风和耳鸣。蓝斑(LC)中神经元的激活被认为介导了VNS在中枢神经系统中的许多作用。尽管LC很重要,但缺乏直接证据来描述其对VNS的神经活动特征。详细了解在一系列刺激参数下VNS诱发的脑活动,可能会指导治疗用刺激方案的选择。在本研究中,我们记录了在广泛的电流幅度、脉冲频率、串刺激持续时间、串间间隔和脉冲宽度范围内,LC和中脑三叉神经核(Me5)对VNS的神经活动。0.5秒的短暂VNS串刺激在0.1mA时驱动LC神经元快速、相位性放电。更高的电流强度和更长的脉冲宽度会使LC放电率有更大的增加。改变脉冲频率会显著影响相位性LC活动的时间,但不影响其总量。在电流水平高于1.2mA时,VNS驱动Me5中脉冲锁定的神经活动。这些结果为深入了解VNS在多个神经结构中诱发的相位性神经活动提供了依据,可能有助于指导VNS参数的选择以提高临床疗效。