Diaphragm: The Relationship between Blood Supply Regulation and Characteristics of the Contractile Function

被引:1
作者
Borzykh A.A. [1 ]
Vinogradova O.L. [1 ,2 ]
Tarasova O.S. [1 ,3 ]
机构
[1] Institute for Biomedical Problems, Russian Academy of Sciences, Moscow
[2] Faculty of Basic Medicine, Moscow State University, Moscow
[3] Faculty of Biology, Moscow State University, Moscow
基金
俄罗斯科学基金会;
关键词
exercise hyperemia; metabolic types of muscle fibers; myosin heavy chain isoforms; nitric oxide; resistance arteries; respiratory muscles; sympathetic nervous system;
D O I
10.3103/S0096392520020029
中图分类号
学科分类号
摘要
Abstract: The diaphragm is a unique skeletal muscle; it is active throughout the lifetime and, therefore, differs from locomotor muscles in the properties of muscle fibers and the mechanisms of blood supply control. The aim of this review was to survey the structural characteristics of diaphragm muscle tissue, which provide its integral contractile properties; to compare the activity of vascular tone control mechanisms in the diaphragm and locomotor muscles; and to explore their relationship with the regulation of contractile function. The diaphragm differs from the majority of skeletal muscles by a high content of both slow fatigue-resistant muscle fibers of type I and fast fibers of type IIb, which provides endurance and high force-velocity characteristics of the diaphragm. The muscle fibers in the diaphragm are smaller, and the density of capillarization is much higher than in locomotor muscles. Arteries and arterioles that regulate blood supply to the diaphragm capillary bed combine the properties of arteries from muscles composed mainly of oxidative or mainly of glycolytic fibers. Such variety provides blood flow in the diaphragm adequate to its functional load with various patterns of activity. The mechanisms of vasoregulation in the diaphragm can qualitatively differ in the proximal and distal parts of the vascular bed. The functional properties of the proximal arteries can in part be explained by their proximity to the aorta and their small length. The contractile characteristics and blood supply of the diaphragm in various conditions should be considered when conducting respiratory muscle training in sports and rehabilitation medicine. © 2020, Allerton Press, Inc.
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页码:41 / 49
页数:8
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共 54 条
  • [11] Tarasova O.S., Kalenchuk V.U., Borzykh A.A., Andreev-Andrievsky A.A., Buravkov S.V., Sharova A.P., Vinogradova O.L., A comparative analysis of the vasomotor responses and innervation of small arteries in rat locomotor and respiratory muscles, Biophysics, 53, pp. 621-625, (2008)
  • [12] Borzykh A.A., Andreev-Andrievskiy A.A., Kalenchuk V.U., Mochalov S.V., Buravkov S.V., Kuzmin I.V., Borovik A.S., Vinogradova O.L., Tarasova O.S., Strategies of adaptation of small arteries in diaphragm and gastrocnemius muscle to aerobic exercise training, Hum. Physiol., 43, pp. 437-445, (2017)
  • [13] Metzger J.M., Scheidt K.B., Fitts R.H., Histochemical and physiological characteristics of the rat diaphragm, J. Appl. Physiol., 58, pp. 1085-1091, (1985)
  • [14] Borzykh A.A., Gainullina D.K., Kuz'min I.V., Sharova A.P., Tarasova O.S., Vinogradova O.L., Comparative analysis of gene expression in locomotor muscles and rat diaphragm, Ross. Fiziol. Zh. im. I.M. Sechenova, 98, pp. 1587-1594, (2012)
  • [15] Uribe J.M., Stump C.S., Tipton C.M., Fregosi R.F., Influence of exercise training on the oxidative capacity of rat abdominal muscles, Respir. Physiol., 88, pp. 171-180, (1992)
  • [16] Metzger J.M., Fitts R.H., Contractile and biochemical properties of diaphragm: Effects of exercise training and fatigue, J. Appl. Physiol., 60, pp. 1752-1758, (1986)
  • [17] Popov D.V., Adaptation of skeletal muscles to contractile activity of varying duration and intensity: The role of PGC-1α, Biochemistry, 83, pp. 613-628, (2018)
  • [18] Suzuki J., Microvascular remodelling after endurance training with Co<sup>2+</sup> treatment in the rat diaphragm and hind-leg muscles, Jpn. J. Physiol., 52, pp. 409-419, (2002)
  • [19] Gute D., Fraga C., Laughlin M.H., Amann J.F., Regional changes in capillary supply in skeletal muscle of high-intensity endurance-trained rats, J. Appl. Physiol., 81, pp. 619-626, (1996)
  • [20] Green H.J., Plyley M.J., Smith D.M., Kile J.G., Extreme endurance training and fiber type adaptation in rat diaphragm, J. Appl. Physiol., 66, pp. 1914-1920, (1989)