Smith K K, Hylander W L
J Exp Biol. 1985 Jan;114:53-70. doi: 10.1242/jeb.114.1.53.
Single-element strain gauges were placed across the mesokinetic joint of the skull of the savanna monitor lizard, Varanus exanthematicus Bosc, in order to document the extent and timing of mesokinetic movement. In addition, rosette strain gauges were placed on various points of the palato-maxillary segment. Strain recordings and simultaneous cineradiographic films or videotapes were taken during normal feeding activities, including the strike, prey manipulation, ingestion and pharyngeal compression. Tensile strain, indicating lowering (retraction) of the palato-maxillary segment, was observed during all stages of feeding. Compressive strain, indicating lifting (protraction) of the palato-maxillary segment, generally appeared briefly in the strike and during pharyngeal compression. Maximum tensile strains were always larger than maximum compressive strains within each sequence. The highest levels of tensile strain occurred during prey manipulation periods, which were characterized by isometric biting. Strain on the palato-maxillary segment revealed a pattern of timing similar to the one at the mesokinetic joint, although strain levels were at least an order of magnitude lower. These data directly contradict conventional models of the function of the kinetic skull in lizards. We conclude that the kinetic apparatus in lizards is not a mechanism for actively moving the palato-maxillary unit and is therefore not a mechanism for increasing gape or actively controlling upper jaw movements.
为记录中动运动的程度和时间,在草原巨蜥(Varanus exanthematicus Bosc)颅骨的中动关节处放置了单元素应变片。此外,在腭上颌段的不同点放置了应变花。在正常进食活动期间,包括攻击、处理猎物、吞咽和咽部压缩,进行应变记录以及同步拍摄X线电影或录像。在进食的各个阶段均观察到拉伸应变,这表明腭上颌段下降(回缩)。压缩应变表明腭上颌段抬起(前伸),通常在攻击和咽部压缩期间短暂出现。在每个序列中,最大拉伸应变总是大于最大压缩应变。最高水平的拉伸应变出现在处理猎物期间,其特征是等长咬嚼。腭上颌段的应变显示出与中动关节处相似的时间模式,尽管应变水平至少低一个数量级。这些数据直接与蜥蜴头骨运动功能的传统模型相矛盾。我们得出结论,蜥蜴的头骨运动装置不是主动移动腭上颌单元的机制,因此不是增加张口度或主动控制上颌运动的机制。