Blanks R H, Curthoys I S, Bennett M L, Markham C H
Brain Res. 1985 Aug 12;340(2):315-24. doi: 10.1016/0006-8993(85)90928-x.
The technique of principal-component analysis was used to define anatomically the semicircular canal planes of the rhesus and squirrel monkeys with respect to the stereotaxic coordinate system. The analyses were performed on a series of points obtained from the dissected osseous labyrinths. A planar equation was defined for each canal plane in the stereotaxic coordinate system and angles were calculated between the 3 ipsilateral canal planes, between synergistic canal pairs and between each canal plane and the stereotaxic planes. The data from both species are similar: the ipsilateral canal planes are nearly orthogonal; synergistic pairs of canal planes are approximately parallel with angles of 2 degrees-12 degrees between pairs in the rhesus monkey and 13 degrees-16 degrees between pairs in the squirrel monkey. The horizontal canal planes form angles of 22 degrees and 18 degrees with the horizontal stereotaxic plane in the rhesus and squirrel monkeys, respectively. A head position of 15 degrees (pitch nose-down) was calculated to produce an optimal head position in both species for maximally stimulating the horizontal canals and minimally stimulating the vertical canals during horizontal angular acceleration. The radii of curvature (R) of the horizontal, anterior and posterior canals were also measured for both species using a calibrated reticle. These measurements indicate that the anterior canal of both species has the largest radius of curvature. This anatomical information is discussed in relation to the available physiological data.
主成分分析技术被用于在立体定向坐标系中从解剖学上定义恒河猴和松鼠猴的半规管平面。分析是在从解剖的骨迷路获得的一系列点上进行的。在立体定向坐标系中为每个半规管平面定义了一个平面方程,并计算了同侧三个半规管平面之间、协同半规管对之间以及每个半规管平面与立体定向平面之间的角度。两种物种的数据相似:同侧半规管平面几乎相互垂直;协同半规管对大致平行,恒河猴中各对之间的角度为2度至12度,松鼠猴中各对之间的角度为13度至16度。在恒河猴和松鼠猴中,水平半规管平面与水平立体定向平面分别形成22度和18度的角度。计算得出,在两种物种中,头部位置为15度(鼻尖向下倾斜)时,在水平角加速度期间能产生最佳头部位置,以最大程度刺激水平半规管并最小程度刺激垂直半规管。还使用校准的标线片测量了两种物种水平、前和后半规管的曲率半径(R)。这些测量表明,两种物种的前半规管曲率半径最大。结合现有的生理学数据对这些解剖学信息进行了讨论。