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Muscle function in animal movement: passive mechanical properties of leech muscle

机译:动物运动中的肌肉功能:le肌的被动机械特性

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We investigated passive properties of leech body wall as part of a larger project to understand better mechanisms that control locomotion and to establish mathematical models that predict such dynamical behavior. In tests of length-tension relationships in 2-segment-long preparations of body wall through step-stretch manipulations (step size = 1 mm), we discovered that these relationships are nonlinear, with significant hysteresis, even for the relatively small changes in length that occur during swimming. We developed a mathematical model comprising three nonlinear springs, two in series with nonlinear dashpots that describe well the tension statics and dynamics for step-stretch experiments. This model suggested that body wall dynamics are slow enough to be neglected when predicting the tension generated by imposed sinusoidal length changes (about ±10% of nominal) at 1–3 Hz, mimicking swimming. We derived a static model, comprising one nonlinear spring, which predicts sinusoidal data accurately, even when preparations were exposed to serotonin (0.1–10 μM). Preparations bathed in saline-serotonin had significantly reduced steady-state and peak tensions, without alterations in tension dynamics. Anesthetizing preparations (8% ethanol) reduced body wall tension by 77%, indicating that passive tension in the obliquely striated longitudinal muscles of leeches results primarily from a resting tonus.
机译:作为一个较大的项目的一部分,我们调查了水ech体壁的被动特性,以了解更好的控制运动的机制并建立可预测这种动态行为的数学模型。在通过逐步拉伸操作(步长= 1 mm)进行的2段长车身壁的长度-张力关系测试中,我们发现这些关系是非线性的,具有显着的滞后作用,即使长度变化相对较小在游泳期间发生。我们开发了一个数学模型,其中包括三个非线性弹簧,其中两个与非线性阻尼器串联,可以很好地描述阶跃拉伸实验的张力静力学和动力学。该模型表明,在模拟游泳时,在预测由1-3 Hz施加的正弦波长度变化(约为名义值的±10%)产生的张力时,体壁动力学足够慢,可以忽略不计。我们推导了一个静态模型,其中包括一个非线性弹簧,即使将制剂暴露于5-羟色胺(0.1-10μM),也能准确预测正弦数据。沐浴在盐水5-羟色胺中的制剂可显着降低稳态和峰值张力,而不会改变张力动态。麻醉制剂(8%的乙醇)使体壁张力降低了77%,这表明水斜纹肌的纵向肌肉中的被动张力主要是由静止的眼睑张力引起的。

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