首页> 外文期刊>Behavioural Brain Research: An International Journal >Quantification of three-dimensional exploration in the cylinder test by the common marmoset (Callithrix jacchus).
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Quantification of three-dimensional exploration in the cylinder test by the common marmoset (Callithrix jacchus).

机译:普通mar猴(Callithrix jacchus)在圆柱体试验中对三维勘探的量化。

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The increasing trend in use of marmoset monkeys in behavioral studies has necessitated a greater understanding of their natural behavior, especially within confined spatial environments. One way to approach this issue is to examine locomotor and exploratory strategies using the cylinder test, as done recently for the rat by Gharbawie et al. [Gharbawie OA, Whishaw PA, Whishaw IQ. The topography of three-dimensional exploration: a new quantification of vertical and horizontal exploration, postural support, and exploratory bouts in the cylinder test. Behav Brain Res 2004;151:125-35]. We have used this paradigm in conjunction with Eshkol-Wachmann movement analysis in marmoset monkeys. We provide evidence that marmosets display systematic changes in both horizontal and vertical progressions during exploration. Quantitative analysis and comparison with the extant data in rats showed both similarities and differences. For example, both species display horizontal and vertical scanning movements, although the variability is considerably greater for the marmoset. The horizontal progressions consist of head scans, turning, and stepping. The amplitude of these progressions oscillates and decreases with trial duration. Vertical progressions, which consist of rears, head scans, and descent, also strongly oscillate but with constant mean amplitude during a trial. The difference between the two species is most evident in locomotor behavior. Rats use their forepaws primarily for postural support and follow forequarter movements while body weight shifts are generated by the hind limbs. Marmosets, however, can hold a vertical position without hand support and display more complex movement characteristics during exploration. The data from this study should be of use in designing experiments in which marmosets are engaged in free-roaming behavior within a confined space.
机译:在行为研究中使用of猴的趋势日益增加,这就需要对它们的自然行为有更多的了解,尤其是在狭窄的空间环境中。解决这个问题的一种方法是使用汽缸测试来检查运动和探索策略,就像Gharbawie等人最近对老鼠所做的那样。 [Gharbawie OA,Whisaw PA,Whishaw IQ。三维勘探的地形:垂直和水平勘探的新量化,姿势支持和气瓶测试中的探索性反弹。 Behav Brain Res 2004; 151:125-35]。我们已经将这种范例与Eshkol-Wachmann运动分析一起用于this猴中。我们提供的证据表明,mos猴在勘探过程中显示出水平和垂直方向的系统变化。定量分析和与大鼠现有数据的比较显示出相同点和不同点。例如,两个物种都显示水平和垂直扫描运动,尽管the的变异性更大。水平进程包括头部扫描,转弯和步进。这些进展的幅度随着试用期的增加而振荡和降低。在试验过程中,由后部,头部扫描和下降组成的垂直进程也剧烈振荡,但平均振幅恒定。这两个物种之间的差异在运动行为上最为明显。大鼠的前脚主要用于姿势支撑,并跟随前肢运动,而后肢则产生体重变化。但是,猴可以在没有手支撑的情况下保持垂直位置,并且在勘探过程中显示出更复杂的运动特性。这项研究的数据应在设计试验中使用,在这些试验中,mar猴参与了密闭空间内的自由漫游行为。

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