Suppr超能文献

大鼠比目鱼肌被动力学特性的宏观-微观表征

Macroscopic-microscopic characterization of the passive mechanical properties in rat soleus muscle.

作者信息

Bensamoun S, Stevens L, Fleury M J, Bellon G, Goubel F, Ho Ba Tho M C

机构信息

Laboratoire de Biomécanique et Génie Biomédical, CNRS-UMR 6600, Université de Technologie de Compiègne, BP 20529, F-60205 Compiègne cedex, France.

出版信息

J Biomech. 2006;39(3):568-78. doi: 10.1016/j.jbiomech.2004.04.036.

Abstract

The purpose of the study was to investigate changes in passive mechanical properties of the soleus muscle of the rat during the first year of life. These mechanical changes were quantified at a macroscopic (whole muscle) and a microscopic level (fiber) and were correlated with biochemical and morphological properties. Three passive mechanical tests (a relaxation test, a ramp stretch test and a stretch release cycle test) with different amplitudes and velocities were performed on isolated soleus muscles and fibers in rats at ages 1 (R1), 4 (R4) and 12 (R12) months. Mechanical parameters (dynamic and static forces, stresses and normalized stiffness) were recorded and measured. The morphological properties (size of fibers and muscles) for the three groups of rats were assessed by light microscopy which allowed us to observe the evolution of the fiber type (I, IIc and IIa) in the belly region and along the longitudinal axis of the muscle. In addition, biochemical analyses were performed at the level of the whole muscle in order to determine the collagen content. The results of the passive mechanical properties between the macroscopic (muscle) and microscopic (fiber) levels showed a similar evolution. Thus, an increase of the dynamic and static forces appeared between 1 and 4 months while a decrease of the passive tension occurred between 4 and 12 months. These mechanical changes were correlated to the morphological properties. In addition, the size of the three fibers type which grew with age could explain the increase of forces between 1 and 4 months. Furthermore, the biochemical analysis showed an increase of the collagen content during the same period which could also be associated with the increase of the passive forces. After 4 months, the passive tension decreased while the size of the fiber continued to increase. The biochemical analysis showed a decrease of the collagen content after 4 months, which could explain the loss of passive tension in the whole muscle. Concerning the similar loss at the fiber level, other assumptions are required such as a myofibril loss process and an increase of intermyofibrillar spaces. The originality of this present study was to compare the passive mechanical properties between two different levels of anatomical organization within the soleus muscle of the rat and to explain these mechanical changes in terms of biochemical and morphological properties.

摘要

本研究的目的是调查大鼠比目鱼肌在出生后第一年的被动力学特性变化。这些力学变化在宏观(整块肌肉)和微观水平(肌纤维)上进行量化,并与生化和形态学特性相关联。对1月龄(R1)、4月龄(R4)和12月龄(R12)大鼠的离体比目鱼肌和肌纤维进行了三种不同幅度和速度的被动力学测试(松弛测试、斜坡拉伸测试和拉伸-释放循环测试)。记录并测量力学参数(动态和静态力、应力和归一化刚度)。通过光学显微镜评估三组大鼠的形态学特性(肌纤维和肌肉大小),这使我们能够观察肌腹区域和肌肉纵轴上肌纤维类型(I型、IIc型和IIa型)的演变。此外,在整块肌肉水平进行生化分析以确定胶原蛋白含量。宏观(肌肉)和微观(肌纤维)水平的被动力学特性结果显示出相似的演变。因此,动态和静态力在1至4个月之间出现增加,而被动张力在4至12个月之间下降。这些力学变化与形态学特性相关。此外,三种肌纤维类型的大小随年龄增长,这可以解释1至4个月之间力的增加。此外,生化分析显示同期胶原蛋白含量增加,这也可能与被动力的增加有关。4个月后,被动张力下降,而肌纤维大小继续增加。生化分析显示4个月后胶原蛋白含量下降,这可以解释整块肌肉中被动张力的丧失。关于肌纤维水平的类似丧失,需要其他假设,例如肌原纤维丧失过程和肌原纤维间间隙增加。本研究的独特之处在于比较大鼠比目鱼肌内两个不同解剖组织水平的被动力学特性,并从生化和形态学特性方面解释这些力学变化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验