1] Department of Psychology, University of Sheffield, Sheffield, UK [2] Department of Neurological Surgery, Brain and Spine Center, Brain and Mind Research Institute, Weill Cornell Medical College, New York Presbyterian Hospital, New York, New York, USA.
J Cereb Blood Flow Metab. 2013 Oct;33(10):1595-604. doi: 10.1038/jcbfm.2013.115. Epub 2013 Jul 17.
While it is known that cortical sensory dysfunction may occur in focal neocortical epilepsy, it is unknown whether sensory-evoked neurovascular coupling is also disrupted during epileptiform activity. Addressing this open question may help to elucidate both the effects of focal neocortical epilepsy on sensory responses and the neurovascular characteristics of epileptogenic regions in sensory cortex. We therefore examined bilateral sensory-evoked neurovascular responses before, during, and after 4-aminopyridine (4-AP, 15 mmol/L, 1 μL) induced focal neocortical seizures in right vibrissal cortex of the rat. Stimulation consisted of electrical pulse trains (16 seconds, 5 Hz, 1.2 mA) presented to the mystacial pad. Consequent current-source density neural responses and epileptic activity in both cortices and across laminae were recorded via two 16-channel microelectrodes bilaterally implanted in vibrissal cortices. Concurrent two-dimensional optical imaging spectroscopy was used to produce spatiotemporal maps of total, oxy-, and deoxy-hemoglobin concentration. Compared with control, sensory-evoked neurovascular coupling was altered during ictal activity, but conserved postictally in both ipsilateral and contralateral vibrissal cortices, despite neurovascular responses being significantly reduced in the former, and enhanced in the latter. Our results provide insights into sensory-evoked neurovascular dynamics and coupling in epilepsy, and may have implications for the localization of epileptogenic foci and neighboring eloquent cortex.
虽然已知局灶性新皮质癫痫可能会发生皮质感觉功能障碍,但尚不清楚感觉诱发性神经血管偶联是否也会在癫痫样活动期间受到干扰。解决这个悬而未决的问题可能有助于阐明局灶性新皮质癫痫对感觉反应的影响,以及感觉皮层癫痫灶的神经血管特征。因此,我们在右侧触须皮层中用 4-氨基吡啶(4-AP,15 mmol/L,1 μL)诱导局灶性新皮质癫痫发作之前、期间和之后,检查了双侧感觉诱发性神经血管反应。刺激由电脉冲串(16 秒,5 Hz,1.2 mA)施加到触须垫上组成。通过双侧植入触须皮层的两个 16 通道微电极记录了两个皮层和各层中的相应电流源密度神经反应和癫痫活动。同时使用二维光学成像光谱法产生总、氧合和脱氧血红蛋白浓度的时空图谱。与对照相比,感觉诱发性神经血管偶联在癫痫发作期间发生改变,但在同侧和对侧触须皮层中均在发作后保留,尽管前者的神经血管反应显著降低,而后者增强。我们的结果提供了对癫痫发作中感觉诱发性神经血管动力学和偶联的深入了解,并且可能对癫痫灶和邻近的语言中枢的定位具有重要意义。