Calabrese Daniel R, Hullar Timothy E
Department of Otolaryngology-Head and Neck Surgery, Washington University School of Medicine, 660 South Euclid Avenue #8115, Saint Louis, MO 63110, USA.
J Assoc Res Otolaryngol. 2006 Jun;7(2):151-9. doi: 10.1007/s10162-006-0031-1. Epub 2006 Apr 22.
The mouse is increasingly important as a subject of vestibular research. Although many studies have focused on the vestibular responses of mice to angular rotation, the geometry of their semicircular canals has not been described. High-voltage X-ray computed tomography was used to measure the anatomy of the semicircular canals of two strains of mice, C57Bl/6J and CBA/CaJ. The horizontal plane of a stereotaxic coordinate system was defined by the midpoints of the external auditory meati and the point where the incisors emerge from the maxilla. The centroids of the lumens of the bony canals were calculated, and planes that describe the canals were fit using a least-squares regression analysis to the resulting points. Vectors normal to each regressed plane were used to represent the corresponding canal's axis of rotation, and angles of these vectors relative to skull landmarks as well as to each other were calculated. The horizontal canal of the mouse was found to be angled anteriorly upward 17.8 degrees for CBA/CaJ and 32.6 degrees for C57Bl/6J from the reference horizontal plane. Angles between ipsilateral canals deviated up to 12.3 degrees from orthogonal, and angles between contralateral synergistic canals (left anterior-right posterior, right anterior-left posterior, and horizontal-horizontal) deviated from parallel by up to 14.8 degrees. The orientations of the canals within the head as well as the orientations of the canals relative to each other were significantly different between the two strains, suggesting that care must be taken in the design and interpretation of developmental and physiologic studies involving different mouse strains.
小鼠作为前庭研究的对象越来越重要。尽管许多研究集中在小鼠对角向旋转的前庭反应,但它们半规管的几何结构尚未被描述。使用高电压X射线计算机断层扫描来测量两种小鼠品系C57Bl/6J和CBA/CaJ的半规管解剖结构。立体定位坐标系的水平面由外耳道中点和上颌门齿露出点确定。计算骨管腔的质心,并使用最小二乘回归分析将描述这些管的平面拟合到所得点。垂直于每个回归平面的向量用于表示相应管的旋转轴,并计算这些向量相对于颅骨标志以及彼此之间的角度。发现CBA/CaJ小鼠的水平半规管相对于参考水平面向上向前倾斜17.8度,C57Bl/6J小鼠为32.6度。同侧半规管之间的角度与正交方向的偏差高达12.3度,对侧协同半规管(左前-右后、右前-左后和水平-水平)之间的角度与平行方向的偏差高达14.8度。两种品系小鼠头部内半规管的方向以及半规管彼此之间的方向存在显著差异,这表明在涉及不同小鼠品系的发育和生理研究的设计和解释中必须谨慎。