...
首页> 外文期刊>Journal of Clinical Neurophysiology >Study of the human visual cortex: direct cortical evoked potentials and stimulation.
【24h】

Study of the human visual cortex: direct cortical evoked potentials and stimulation.

机译:人类视觉皮层的研究:直接皮层诱发电位和刺激。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The authors studied the visual cortex of 15 patients undergoing studies for medically intractable epilepsy. Although the subdural and strip electrode placement varied in each of these patients, there were enough electrodes over the visual cortex to complete studies involving evoked potentials and direct cortical stimulation. Visual evoked potentials were elicited using two check sizes (50 and 16 min) for pattern reversal studies, 50 min checks for on-off stimulation, 50 min checks for horizontal and vertical hemifields and simple flash for the VEP. These studies demonstrated that the pattern reversal and on-off stimuli caused very complex, multipotential waveforms in striate and vision associational cortex that do not resemble the response obtained at the scalp. Different volumes of visual cortex are activated by stimulation with 16 min checks, 50 min checks and simple flash. Flash activates the largest volume of visual cortex and it is likely that this finding is what makes this test of so little value clinically. Direct cortical stimulation shows that colored responses are generated primarily in the posterior striate cortex and inferior occipital lobe, while movement is primarily generated by the visual association cortex. No complex visual images were obtained by stimulation of either the striate cortex or visual association cortex. The brain mechanisms that lead to formed visual images remain to be identified.
机译:作者研究了15名接受医学治疗的癫痫患者的视皮层。尽管在这些患者中,硬膜下和带状电极的位置各不相同,但视觉皮层上有足够的电极可以完成涉及诱发电位和直接皮层刺激的研究。使用两种检查大小(50和16分钟)进行模式反转研究,50分钟检查开-关刺激,50分钟检查水平和垂直半场以及对VEP进行简单闪光,即可诱发视觉诱发电位。这些研究表明,模式反转和开关刺激会在纹状体和视觉关联皮层中引起非常复杂的多能波形,与头皮获得的响应不相似。通过16分钟的检查,50分钟的检查和简单的闪光刺激来激活不同体积的视觉皮层。 Flash激活了最大数量的视觉皮层,这一发现很可能使这项测试的临床价值很小。直接皮层刺激显示,彩色反应主要在后纹状皮质和枕下叶中产生,而运动主要由视觉联想皮层产生。通过刺激纹状皮质或视觉联想皮层没有获得复杂的视觉图像。导致形成视觉图像的大脑机制仍有待确定。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号