首页> 外文期刊>Journal of Neuroscience Methods >High spatiotemporal resolution imaging of the neurovascular response to electrical stimulation of rat peripheral trigeminal nerve as revealed by in vivo temporal laser speckle contrast.
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High spatiotemporal resolution imaging of the neurovascular response to electrical stimulation of rat peripheral trigeminal nerve as revealed by in vivo temporal laser speckle contrast.

机译:高时空分辨率成像的神经血管对大鼠周围三叉神经电刺激的反应,如体内时间激光斑点对比所揭示。

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Previous studies have implicated the abnormal activation of the trigeminal system to be a factor in the pathogenesis of migraine. The relationship between vascular changes and migraine, however, is under considerable debate. In this study, temporal laser speckle contrast imaging is combined with ridge tracking based vessel detection to obtain high resolution (6.7mumx6.7mum), high contrast images of cerebral vascular structure. For the first time, the vasomotor and blood flow responses to electrical stimulation in rat peripheral trigeminal system were obtained simultaneously. The system is capable of picking up individual vessels with diameters down to 30mum. The spatial spread of the blood velocity response relative to the point of stimulation was studied. Analysis of branching vessels showed a 50+/-5% vs. 30+/-5% change in mean peak magnitude and a 54% per second vs. 17% per second change in mean rate of increase for vessels proximal vs. distal to the stimulation site. The penetration depth of the laser used was proven to be sufficient to image dural as well as cortical vessels through a thinned skull preparation. Different responses were observed from cortical and dural vessels. While the diameter of cortical vessels did not change in response to the stimulation the blood velocity went up by 65+/-5% per second. Dural vessels enlarged by 40+/-8% and the blood velocity increased by 50+/-5%. The method described here could be very useful in understanding and studying disorders in the neurovascular system.
机译:先前的研究暗示三叉神经系统的异常激活是偏头痛发病机理中的一个因素。然而,血管变化与偏头痛之间的关系尚有相当大的争议。在这项研究中,时间激光散斑对比成像与基于脊线跟踪的血管检测相结合,可获得高分辨率(6.7mumx6.7mum),高对比度的脑血管结构图像。首次同时获得了大鼠外周三叉神经系统对电刺激的血管舒缩和血流反应。该系统能够拾取直径小于30毫米的单个容器。研究了相对于刺激点的血流速度响应的空间分布。分支血管的分析显示,近端血管相对于远端血管的平均峰值幅度变化分别为50 +/- 5%与30 +/- 5%,每秒变化54%vs.每秒变化17%。刺激部位。事实证明,所用激光的穿透深度足以通过薄化的颅骨制剂对硬脑膜和皮层血管进行成像。从皮层和硬脑膜血管观察到不同的反应。虽然皮质血管的直径没有响应刺激而改变,但是血流速度每秒增加65 +/- 5%。硬脑膜血管增大40 +/- 8%,血流速度增加50 +/- 5%。此处描述的方法在理解和研究神经血管系统疾病方面可能非常有用。

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