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犬膈肌的肌纤维结构

Muscle fiber architecture of the dog diaphragm.

作者信息

Boriek A M, Miller C C, Rodarte J R

机构信息

Department of Medicine, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Appl Physiol (1985). 1998 Jan;84(1):318-26. doi: 10.1152/jappl.1998.84.1.318.

Abstract

Previous measurements of muscle thickness and length ratio of costal diaphragm insertions in the dog (A. M. Boriek and J. R. Rodarte. J. Appl. Physiol. 77: 2065-2070, 1994) suggested, but did not prove, discontinuous muscle fiber architecture. We examined diaphragmatic muscle fiber architecture using morphological and histochemical methods. In 15 mongrel dogs, transverse sections along the length of the muscle fibers were analyzed morphometrically at x20, by using the BioQuant System IV software. We measured fiber diameters, cross-sectional fiber shapes, and cross-sectional area distributions of fibers. We also determined numbers of muscle fibers per cross-sectional area and ratio of connective tissue to muscle fibers along a course of the muscle from near the chest wall (CW) to near the central tendon (CT) for midcostal left and right hemidiaphragms, as well as ventral, middle, and dorsal regions of the left costal hemidiaphragm. In six other mongrel dogs, the macroscopic distribution of neuromuscular junctions (NMJ) on thoracic and abdominal diaphragm surfaces was determined by staining the intact diaphragmatic muscle for acetylcholinesterase activity. The average major diameter of muscle fibers was significantly smaller, and the number of fibers was significantly larger midspan between CT and CW than near the insertions. The ratio of connective tissues to muscle fibers was largest at CW compared with other regions along the length of the muscle. The diaphragm is transversely crossed by multiple scattered NMJ bands with fairly regular intervals offset in adjacent strips. Muscle fascicles traverse two to five NMJ, consistent with fibers that do not span the entire fascicle from CT to CW. These results suggest that the diaphragm has a discontinuous fiber architecture in which contractile forces may be transmitted among the muscle fibers through the connective tissue adjacent to the fibers.

摘要

先前对狗肋膈插入部肌肉厚度和长度比的测量(A.M. 博里克和J.R. 罗达特。《应用生理学杂志》77: 2065 - 2070, 1994)表明,但未证实,存在不连续的肌纤维结构。我们使用形态学和组织化学方法检查了膈肌纤维结构。在15只杂种狗中,使用BioQuant System IV软件在x20放大倍数下对沿肌纤维长度的横切面进行形态计量分析。我们测量了纤维直径、纤维横截面积形状以及纤维横截面积分布。我们还确定了左、右半肋膈中从胸壁(CW)附近到中央腱(CT)附近的肌肉横截面积中的肌纤维数量,以及左肋半膈的腹侧、中间和背侧区域结缔组织与肌纤维的比例。在另外6只杂种狗中,通过对完整膈肌进行乙酰胆碱酯酶活性染色来确定胸段和腹段膈表面神经肌肉接头(NMJ)的宏观分布。肌纤维的平均长径在CT和CW之间的中点处明显较小,纤维数量明显多于插入部附近。与肌肉长度上的其他区域相比,CW处结缔组织与肌纤维的比例最大。膈被多个分散的NMJ带横向穿过,相邻条带中的间隔相当规则。肌束穿过两到五个NMJ,这与不跨越从CT到CW的整个肌束的纤维一致。这些结果表明,膈具有不连续的纤维结构,收缩力可能通过与纤维相邻的结缔组织在肌纤维之间传递。

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