Tehovnik E J, Lee K, Schiller P H
Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge 02139.
Exp Brain Res. 1994;98(2):179-90. doi: 10.1007/BF00228407.
This study examined whether signals for the generation of eye movements from the dorsomedial frontal cortex (DMFC) reach brainstem oculomotor centers either through the frontal eye fields (FEF) or through the superior colliculi (SC). The DMFC was stimulated when the monkeys studied were intact and after either one FEF or one SC was ablated. Following lesions of either the FEF or SC, the topographic order of the DMFC was largely preserved. After either lesions, stimulation of anterior DMFC sites still evoked saccades that terminated in contralateral space, and stimulation of posterior DMFC sites still evoked saccades that terminated in central space. The probability of evoking saccades decreased and the latency to evoke saccades increased as fixation neared the termination zone (a restricted region within craniotopic space) both before and after either lesion. Ablation of the SC, but not of the FEF, eliminated the saccadic inhibition to visual targets which resulted when the DMFC was stimulated in the intact animal. The findings suggest that additional channels besides those coursing through the FEF and SC are utilized by the DMFC to access the saccade generator in the brainstem.
本研究考察了来自背内侧前额叶皮质(DMFC)的眼球运动生成信号是否通过额叶眼区(FEF)或上丘(SC)到达脑干动眼神经中枢。在研究的猴子保持完整时以及在一侧FEF或一侧SC被切除后,对DMFC进行刺激。在FEF或SC受损后,DMFC的拓扑顺序在很大程度上得以保留。在任何一种损伤后,刺激DMFC前部位点仍可诱发终止于对侧空间的扫视,刺激DMFC后部位点仍可诱发终止于中央空间的扫视。在两种损伤之前和之后,随着注视接近终止区(颅顶空间内的一个受限区域),诱发扫视的概率降低,诱发扫视的潜伏期增加。切除SC而非FEF,消除了在完整动物中刺激DMFC时所产生的对视觉目标的扫视抑制。这些发现表明,DMFC除了通过FEF和SC的通路外,还利用其他通道来接入脑干中的扫视发生器。