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清醒猫中脑导水管周围灰质腹侧区与垂直眼动相关神经元的空间特性

Spatial properties of vertical eye movement-related neurons in the region of the interstitial nucleus of Cajal in awake cats.

作者信息

Fukushima K, Harada C, Fukushima J, Suzuki Y

机构信息

Department of Physiology, Hokkaido University School of Medicine, Sapporo, Japan.

出版信息

Exp Brain Res. 1990;79(1):25-42. doi: 10.1007/BF00228871.

Abstract
  1. Maximal activation directions of vertical burst-tonic and tonic neurons in the region of the interstitial nucleus of Cajal (INC) were examined in alert cats during vertical vestibulo-ocular reflex induced by sinusoidal rotation (at 0.11 Hz +/- 10 deg, or 0.31 Hz +/- 5 deg) in a variety of vertical planes using a null point analysis. The results were compared with the angles of anatomical and functional planes of vertical canals reported by Blanks et al. (1972) and Robinson (1982), and with the angles of vertical eye muscles measured in this study and by Ezure and Graf (1984). 2. Maximal activation directions of 23 cells (21 burst-tonic and 2 tonic neurons) were determined from their responses during rotation in 4 or more different vertical planes. All cells showed sinusoidal gain curves and virtually constant phase values except near the null regions, suggesting that their responses were evoked primarily by canal inputs. Phase values of 5 cells near the null regions depended on the rotation plane, suggesting additional otolith inputs. We used a measurement error range of +/- 10 deg for calculating the maximal activation directions from the null regions of individual cells and the values of error ranges of null calculation. Of the 23, the maximal activation directions of 7 cells were outside the measurement error ranges of vertical eye muscle angles and within the ranges of vertical canal angles (class A), those of 5 cells were within the ranges of eye muscle angles and outside the ranges of vertical canal angles (class B), and those of the remaining 11 cells were in the overlapping ranges for both angles (class C). Even if only the cells in which 5 or more measurement points were taken to determine maximal activation directions (n = 15), the results were similar. During vertical rotation with the head orientation +60 deg off the pitch plane, dissociation of cell activity and vertical compensatory eye movement was observed in 5 cells in class A or C that had null angles near +45 deg. These results suggest that the cells in class A and B carried individual vertical canal and oculomotor signals, respectively, although it is difficult to tell for the majority of cells (class C) which signals they reflected. Some cells in class A and C were antidromically activated from the medial longitudinal fasciculus at the level of abducens nucleus, suggesting that the signals carried by these cells may be sent to the lower brainstem.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用零点分析,在警觉猫身上,于多种垂直平面内通过正弦旋转(0.11Hz±10度,或0.31Hz±5度)诱发垂直前庭眼反射期间,检查了 Cajal间质核(INC)区域内垂直爆发 - 紧张性神经元和紧张性神经元的最大激活方向。将结果与Blanks等人(1972年)和Robinson(1982年)报告的垂直半规管解剖和功能平面角度,以及本研究和Ezure与Graf(1984年)测量的垂直眼肌角度进行了比较。2. 根据23个细胞(21个爆发 - 紧张性神经元和2个紧张性神经元)在4个或更多不同垂直平面旋转期间的反应,确定了它们的最大激活方向。除了在零点区域附近外,所有细胞均显示出正弦增益曲线和几乎恒定的相位值,这表明它们的反应主要由半规管输入诱发。5个靠近零点区域的细胞的相位值取决于旋转平面,表明存在额外的耳石输入。我们使用±10度的测量误差范围,从单个细胞的零点区域计算最大激活方向以及零点计算的误差范围值。在这23个细胞中,7个细胞的最大激活方向在垂直眼肌角度的测量误差范围之外,而在垂直半规管角度范围内(A类),5个细胞的最大激活方向在眼肌角度范围内,而在垂直半规管角度范围之外(B类),其余11个细胞的最大激活方向在两个角度的重叠范围内(C类)。即使仅对为确定最大激活方向而获取了5个或更多测量点的细胞(n = 15)进行分析,结果也是相似的。在头部方向偏离俯仰平面60度的垂直旋转过程中,在A类或C类中零点角度接近+45度的5个细胞中观察到细胞活动与垂直代偿性眼动的分离。这些结果表明,A类和B类细胞分别携带单个垂直半规管和动眼神经信号,尽管对于大多数细胞(C类)来说,难以判断它们反映的是哪些信号。A类和C类中的一些细胞在展神经核水平从内侧纵束被逆向激活,这表明这些细胞携带的信号可能被发送到脑桥下部。(摘要截断于400字)

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