Stevens Nancy Jeanne
Department of Biomedical Sciences, College of Osteopathic Medicine, Ohio University, Athens, Ohio 45701, USA.
Am J Primatol. 2008 Apr;70(4):356-62. doi: 10.1002/ajp.20499.
Most mammals use lateral sequence gaits during quadrupedal locomotion, a pattern characterized by the touchdown of a forelimb directly following the ipsilateral hind limb in a given stride cycle. Primates, however, tend to use diagonal sequence (DS) gaits, whereby it is the touchdown of a contralateral forelimb that follows that of a given hind limb most closely in time. A number of scenarios have been offered to explain why primates favor DS gaits, most of them relating to the use of the arboreal habitat and, in particular, the exploitation of a narrow branch niche. This experimental study explores the potential explanation for the use of DS gaits by examining the relationship between branch diameter and gait patterns in 360 strides collected from six species of quadrupedal strepsirrhine primates on broad and narrow diameter supports. Gait sequence is quantified using limb phase, or the percentage of time during a stride cycle that a forelimb touchdown follows an ipsilateral hind limb touchdown. Although Loris, Nycticebus and Eulemur rubriventer individuals in this study did exhibit significantly lower locomotor velocities on narrower supports (P<0.01 in all three species), analyses of covariance showed no significant differences in limb phase values between broad and narrow diameter supports. Hence, results indicate surprisingly little evidence to suggest that alterations in gait sequence pattern provide a specific advantage for negotiating narrow supports.
大多数哺乳动物在四足运动时采用侧序步态,这种模式的特征是在给定的步幅周期中,前肢的着地直接跟随同侧后肢。然而,灵长类动物倾向于使用对角序(DS)步态,即对侧前肢的着地在时间上最接近给定后肢的着地。已经提出了多种情形来解释为什么灵长类动物偏爱DS步态,其中大多数与树栖栖息地的使用有关,特别是对狭窄树枝生态位的利用。这项实验研究通过检查从六种四足狐猴灵长类动物在宽直径和窄直径支撑物上收集的360个步幅中树枝直径与步态模式之间的关系,探索了使用DS步态的潜在解释。步态序列通过肢体相位来量化,即前肢着地跟随同侧后肢着地的步幅周期时间百分比。尽管本研究中的懒猴、蜂猴和红腹美狐猴个体在较窄支撑物上的运动速度明显较低(所有三个物种的P均<0.01),但协方差分析表明宽直径和窄直径支撑物之间的肢体相位值没有显著差异。因此,结果令人惊讶地几乎没有证据表明步态序列模式的改变为通过狭窄支撑物提供了特定优势。