Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Neurosci. 2010 Feb 24;30(8):3022-42. doi: 10.1523/JNEUROSCI.4029-09.2010.
The parieto-insular vestibular cortex (PIVC) is thought to contain an important representation of vestibular information. Here we describe responses of macaque PIVC neurons to three-dimensional (3D) vestibular and optic flow stimulation. We found robust vestibular responses to both translational and rotational stimuli in the retroinsular (Ri) and adjacent secondary somatosensory (S2) cortices. PIVC neurons did not respond to optic flow stimulation, and vestibular responses were similar in darkness and during visual fixation. Cells in the upper bank and tip of the lateral sulcus (Ri and S2) responded to sinusoidal vestibular stimuli with modulation at the first harmonic frequency and were directionally tuned. Cells in the lower bank of the lateral sulcus (mostly Ri) often modulated at the second harmonic frequency and showed either bimodal spatial tuning or no tuning at all. All directions of 3D motion were represented in PIVC, with direction preferences distributed approximately uniformly for translation, but showing a preference for roll rotation. Spatiotemporal profiles of responses to translation revealed that half of PIVC cells followed the linear velocity profile of the stimulus, one-quarter carried signals related to linear acceleration (in the form of two peaks of direction selectivity separated in time), and a few neurons followed the derivative of linear acceleration (jerk). In contrast, mainly velocity-coding cells were found in response to rotation. Thus, PIVC comprises a large functional region in macaque areas Ri and S2, with robust responses to 3D rotation and translation, but is unlikely to play a significant role in visual/vestibular integration for self-motion perception.
顶内/岛叶前庭皮质(PIVC)被认为包含重要的前庭信息代表。在这里,我们描述了猕猴 PIVC 神经元对三维(3D)前庭和视流刺激的反应。我们发现,在 retroinsular(Ri)和相邻的次级体感(S2)皮质中,前庭对平移和旋转刺激有强烈的反应。PIVC 神经元对光流刺激没有反应,在黑暗中和视觉固定时,前庭反应相似。侧裂上bank 和尖端(Ri 和 S2)的细胞对正弦前庭刺激的反应以第一谐频调制,且具有方向调谐性。侧裂下bank 的细胞(主要是 Ri)经常以第二谐频调制,表现出双模态空间调谐或根本没有调谐。3D 运动的所有方向都在 PIVC 中得到表示,平移的方向偏好分布大致均匀,但对滚动旋转有偏好。对平移的反应时空分布揭示了一半的 PIVC 细胞跟随刺激的线性速度分布,四分之一的细胞携带与线性加速度相关的信号(以时间上分离的两个方向选择性峰值的形式),而少数细胞跟随线性加速度的导数(急动)。相比之下,在旋转反应中主要发现了速度编码细胞。因此,PIVC 在猕猴的 Ri 和 S2 区域包含一个大的功能区域,对 3D 旋转和平移有强烈的反应,但不太可能在自我运动感知的视觉/前庭整合中发挥重要作用。