Centre for Neuroscience Studies, Queen's University, Kingston, Ontario, Canada.
AJNR Am J Neuroradiol. 2010 Apr;31(4):661-7. doi: 10.3174/ajnr.A1909. Epub 2009 Dec 17.
Touch and brush sensory stimuli elicit activity in discriminative touch pathways involving specific regions in the spinal cord and brain stem. However, no study has mapped normal sensory activity noninvasively in healthy humans. The purpose of this study is to map the neuronal activity of sensory input to understand abnormal sensory transmission.
In the present study, spinal fMRI (by using SEEP) was used to map the activity involved with light touch (2 g and 15 g von Frey filaments) and brush stimuli in the brain stem and spinal cords of 8 healthy volunteers. The results were spatially normalized and analyzed with custom-made software. Areas of SEEP activity were identified by using general linear model analysis.
The 2 g von Frey filament showed predominant activity in the medulla around the ipsilateral dorsal gracile and cuneate nuclei. The 15 g filament elicited significant activity in the ipsilateral dorsal and contralateral ventral gray matter areas of the spinal cord, areas around the olivary nuclei, pontine reticular formation, periaqueductal gray, and raphe nuclei in the rostral pons and midbrain. The brush stimuli elicited more activity in the medulla around the ipsilateral cuneate and gracile nuclei.
The 2 g filament and brush stimuli activated areas associated with a touch response. The 15 g filament activated areas associated with a pain response. The results from this study identify specific neuronal regions in the brain stem and spinal cord involved in sensory transmission and help understand altered sensory and pain states.
触摸和刷拭感觉刺激会引起涉及脊髓和脑干特定区域的辨别性触觉通路的活动。然而,目前尚无研究无创性地在健康人群中绘制正常感觉活动图谱。本研究的目的是绘制感觉输入的神经元活动图谱,以了解异常感觉传递。
在本研究中,使用 SEEP 进行脊髓 fMRI 以绘制大脑和脊髓中与轻触(2 g 和 15 g von Frey 纤维)和刷拭刺激相关的活动。使用定制软件对结果进行空间归一化和分析。使用广义线性模型分析来识别 SEEP 活动区域。
2 g von Frey 纤维在同侧背侧薄束和楔束核周围的延髓中表现出主要活动。15 g 纤维在同侧和对侧脊髓背侧和腹侧灰质区域、橄榄核周围、桥脑网状结构、导水管周围灰质和中脑头端的中缝核中引起明显的活动。刷拭刺激在同侧楔束和薄束核周围的延髓中引起更多的活动。
2 g 纤维和刷拭刺激激活了与触觉反应相关的区域。15 g 纤维激活了与疼痛反应相关的区域。本研究的结果确定了与感觉传递相关的脑干和脊髓中的特定神经元区域,并有助于了解改变的感觉和疼痛状态。