Hylander W L
Am J Phys Anthropol. 1977 Mar;46(2):309-26. doi: 10.1002/ajpa.1330460212.
Single element foil strain gages were bonded to mandibular cortical bone in eight specimens of Galago crassicaudatus. The gage was bonded below the Pm4 or M2 adjacent to the lower border of the mandible. The bonded strain gage was connected to form one arm of a Wheatstone bridge. Following recovery from the general anesthetic, the restrained Galago bit either a piece of wood, a food object, or a bite force transducer. During these biting episodes, mandibular bone strain deformed the strain gage and the resulting change in electrical resistance of the gage caused voltage changes across the Wheatstone bridge. These changes, directly proportional to the amount of bone strain along the gage site, were recovered by a strip chart recorder. Bone strain was measured on both the working and balancing sides of the jaws. Maximum values of bone strain and bite force were 435 microstrain (compression) and 8.2 kilograms respectively. During bending of the mandible, the correlation between bone strain (tension or compression) and bite force ranged from -0.893 (tension) to 0.997 (compression). The experiments reported here demonstrate that only a small percentage of the Galago bite force is due to balancing side muscle force during isometric unilateral molar biting. In addition, these experiments demonstrate that the Galago mandible is bent in a predictable manner during biting. The amount of apparent mandibular bone strain is dependent on (1) the magnitude of the bite force and (2) the position of the bite point.
在八只粗尾婴猴标本的下颌皮质骨上粘贴了单元素箔式应变片。应变片粘贴在紧邻下颌骨下缘的Pm4或M2下方。粘贴好的应变片连接起来构成惠斯通电桥的一个臂。从全身麻醉中恢复后,受到约束的婴猴咬一块木头、一个食物或一个咬力传感器。在这些咬的过程中,下颌骨应变使应变片变形,应变片电阻的变化导致惠斯通电桥上的电压变化。这些与应变片部位沿骨应变大小成正比的变化,由条形记录仪记录下来。在颌骨的工作侧和平衡侧都测量了骨应变。骨应变和咬力的最大值分别为435微应变(压缩)和8.2千克。在下颌骨弯曲过程中,骨应变(拉伸或压缩)与咬力之间的相关性在-0.893(拉伸)至0.997(压缩)之间。此处报道的实验表明,在等长单侧磨牙咬合过程中,婴猴咬力中只有一小部分是由平衡侧肌肉力量产生的。此外,这些实验表明,婴猴在下咬时下颌骨以可预测的方式弯曲。下颌骨明显的骨应变大小取决于:(1)咬力大小;(2)咬点位置。