Pereira Erlick A C, Wang Shouyan, Owen Sarah L F, Aziz Tipu Z, Green Alexander L
Oxford Functional Neurosurgery and Experimental Neurology Group, Nuffield Department of Surgical Sciences, University of Oxford, Oxford, UK.
Stereotact Funct Neurosurg. 2013;91(5):290-7. doi: 10.1159/000348324. Epub 2013 Jun 22.
Somatosensory homunculi have been demonstrated in primary somatosensory cortex and ventral posterior thalamus but not periaqueductal and periventricular grey matter (PAVG), a therapeutic target for deep brain stimulation (DBS) in chronic pain.
The study is an investigation of somatotopic representation in PAVG and assessment for a somatosensory homunculus.
Five human subjects were investigated using electrical somatosensory stimulation and deep brain macroelectrode recording. DBS were implanted in the contralateral PAVG. Cutaneous arm, leg and face regions were stimulated while event-related potentials were recorded from deep brain electrodes. Electrode contact positions were mapped using MRI and brain atlas information.
Monopolar P1 somatosensory evoked potential amplitudes were highest and onset latencies shortest in contralateral caudal PAVG with facial stimulation and rostral with leg stimulation, in agreement with reported subjective sensation during intra-operative electrode advancement.
A rostrocaudally inverted somatosensory homunculus exists in the human PAVG region. Objective human evidence of PAVG somatotopy increases understanding of a brainstem region important to pain and autonomic control that is a clinical target for both pharmacological and neurosurgical therapies. Such knowledge may assist DBS target localisation for neuropathic pain syndromes related to particular body regions like brachial plexopathies, anaesthesia dolorosa and phantom limb pain.
躯体感觉小人已在初级躯体感觉皮层和腹后丘脑得到证实,但导水管周围和脑室周围灰质(PAVG)中尚未证实,而PAVG是慢性疼痛中深部脑刺激(DBS)的治疗靶点。
本研究旨在调查PAVG中的躯体定位表征并评估是否存在躯体感觉小人。
对5名受试者进行电躯体感觉刺激和深部脑宏观电极记录。DBS植入对侧PAVG。刺激皮肤的手臂、腿部和面部区域,同时从深部脑电极记录事件相关电位。利用MRI和脑图谱信息绘制电极接触位置图。
单极P1躯体感觉诱发电位振幅在对侧尾侧PAVG刺激面部时最高,在刺激腿部时在头侧最高,且起始潜伏期最短,这与术中电极推进时报告的主观感觉一致。
人类PAVG区域存在头尾倒置的躯体感觉小人。PAVG躯体定位的客观人体证据增进了对一个对疼痛和自主控制很重要的脑干区域的理解,该区域是药物治疗和神经外科治疗的临床靶点。这些知识可能有助于为与特定身体区域相关的神经性疼痛综合征(如臂丛神经病变、痛性麻木和幻肢痛)进行DBS靶点定位。