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Mechanical activation of the contractile system in skeletal muscle.

作者信息

Rüegg J C, Steiger G J, Schädler M

出版信息

Pflugers Arch. 1970;319(2):139-45. doi: 10.1007/BF00592492.

DOI:10.1007/BF00592492
PMID:5465856
Abstract
摘要

相似文献

1
Mechanical activation of the contractile system in skeletal muscle.骨骼肌收缩系统的机械激活。
Pflugers Arch. 1970;319(2):139-45. doi: 10.1007/BF00592492.
2
Effect of calcium on force-velocity characteristics of glycerinated skeletal muscle.钙对甘油处理的骨骼肌力量-速度特性的影响。
Am J Physiol. 1971 Oct;221(4):973-9. doi: 10.1152/ajplegacy.1971.221.4.973.
3
Activation of contractile system in depolarized skeletal muscle fibers.去极化骨骼肌纤维中收缩系统的激活。
Am J Physiol. 1969 Aug;217(2):364-9. doi: 10.1152/ajplegacy.1969.217.2.364.
4
Activation of the contractile system of insect fibrillar muscle at very low concentrations of Mg2+ and Ca2+.在极低浓度的镁离子和钙离子条件下昆虫纤维状肌肉收缩系统的激活。
Pflugers Arch. 1979 Nov;382(2):155-63. doi: 10.1007/BF00584217.
5
Control of the contractile mechanism of smooth and cardiac muscle.平滑肌和心肌收缩机制的控制
Am J Physiol. 1968 Aug;215(2):509-12. doi: 10.1152/ajplegacy.1968.215.2.509.
6
Effecss of subcellular fractions of the dog small intestinal smooth muscle on acetylcholine-induced contraction of glycerol extracted skeletal muscle.犬小肠平滑肌亚细胞组分对乙酰胆碱诱导的甘油提取骨骼肌收缩的影响。
Jpn J Pharmacol. 1970 Sep;20(3):448-50. doi: 10.1254/jjp.20.448.
7
Anions and the contraction of glycerol-extracted muscle fibers.阴离子与甘油抽提肌纤维的收缩
Arch Biochem Biophys. 1970 Jan;136(1):36-40. doi: 10.1016/0003-9861(70)90323-1.
8
Effect of pCa on series-elastic component of glycerinated skeletal muscle.
Am J Physiol. 1973 Mar;224(3):576-9. doi: 10.1152/ajplegacy.1973.224.3.576.
9
Frog tonic muscle fibers: extracellular calcium and excitation-contraction coupling.青蛙强直性肌纤维:细胞外钙与兴奋-收缩偶联
Am J Physiol. 1970 Nov;219(5):1446-50. doi: 10.1152/ajplegacy.1970.219.5.1446.
10
Recovery of osometric twitches after glycerol removal.甘油去除后等长收缩的恢复。
Experientia. 1972 Apr 15;28(4):424-5. doi: 10.1007/BF02008317.

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1
Stretch activation combats force loss from fatigue in fast-contracting mouse skeletal muscle fibers.伸展激活可对抗快速收缩的小鼠骨骼肌纤维因疲劳导致的力量损失。
J Gen Physiol. 2025 Sep 1;157(5). doi: 10.1085/jgp.202413679. Epub 2025 Aug 11.
2
The Drosophila indirect flight muscle myosin heavy chain isoform is insufficient to transform the jump muscle into a highly stretch-activated muscle type.果蝇间接飞行肌肌球蛋白重链异构体不足以将跳跃肌转变为高度拉伸激活的肌肉类型。
Am J Physiol Cell Physiol. 2017 Feb 1;312(2):C111-C118. doi: 10.1152/ajpcell.00284.2016. Epub 2016 Nov 23.
3
Two-state model of acto-myosin attachment-detachment predicts C-process of sinusoidal analysis.

本文引用的文献

1
The relation between force and speed in muscular contraction.肌肉收缩中力与速度的关系。
J Physiol. 1939 Jun 14;96(1):45-64. doi: 10.1113/jphysiol.1939.sp003756.
2
The force exerted by active striated muscle during and after change of length.主动横纹肌在长度改变期间及之后所施加的力。
J Physiol. 1952 May;117(1):77-86.
3
Auto-oscillations in extracted muscle fibre systems.提取的肌纤维系统中的自激振荡。
肌动蛋白-肌球蛋白附着-分离的双态模型预测了正弦分析的C过程。
Biophys J. 2007 Aug 1;93(3):760-9. doi: 10.1529/biophysj.106.101626. Epub 2007 May 11.
4
Energy transfer during stress relaxation of contracting frog muscle fibres.收缩的青蛙肌肉纤维应力松弛过程中的能量转移。
J Physiol. 2001 Dec 15;537(Pt 3):923-39. doi: 10.1111/j.1469-7793.2001.00923.x.
5
The effects of ramp stretches on active contractions in intact mammalian fast and slow muscle fibres.斜坡拉伸对完整哺乳动物快、慢肌纤维主动收缩的影响。
J Muscle Res Cell Motil. 2001;22(2):175-84. doi: 10.1023/a:1010556623905.
6
Action of caffeine in excitation-contraction coupling of frog skeletal muscle fibres.咖啡因对青蛙骨骼肌纤维兴奋-收缩偶联的作用。
J Physiol. 1982 Apr;325:195-211. doi: 10.1113/jphysiol.1982.sp014145.
7
Stretch activation and myogenic oscillation of isolated contractile structures of heart muscle.心肌分离收缩结构的牵张激活与肌源性振荡
Pflugers Arch. 1971;330(4):347-61. doi: 10.1007/BF00588586.
8
Mechanical activation and isometric oscillation in insect fibrillar muscle.昆虫纤维状肌肉中的机械激活和等长振荡
Pflugers Arch. 1971;330(3):217-29. doi: 10.1007/BF00588613.
9
[Mechanical activation and deactivation of isolated contractile structure of the frog sartorius following rectangular and sinoidal length changes].[蛙缝匠肌孤立收缩结构在矩形和正弦形长度变化后的机械激活与失活]
Pflugers Arch. 1972;333(3):213-26. doi: 10.1007/BF00592684.
10
Mechanical response to stretch of depolarized vascular smooth muscle fibres.去极化血管平滑肌纤维对拉伸的机械反应。
Basic Res Cardiol. 1974 Jan-Feb;69(1):1-10. doi: 10.1007/BF01910783.
Nature. 1956 Jun 30;177(4522):1239. doi: 10.1038/1771239a0.
4
Auto-oscillations in extracted muscle fibre systems.提取的肌纤维系统中的自振荡。
Nature. 1956 Jun 30;177(4522):1238-9. doi: 10.1038/1771238b0.
5
Contraction kinetics of striated muscle fibres following quick changes in load.负荷快速变化后横纹肌纤维的收缩动力学
J Physiol. 1966 Jun;184(3):511-34. doi: 10.1113/jphysiol.1966.sp007929.
6
Tension transients in glycerol-extracted fibres of insect fibrillar muscle (Lethocerus maximus).大负蝽昆虫肌原纤维甘油抽提纤维中的张力瞬变
Experientia. 1969 Sep 15;25(9):942-3. doi: 10.1007/BF01898077.
7
Mechanical properties of glycerinated fibres from the tymbal muscles of a Brazilian cicada.巴西蝉鼓膜肌甘油化纤维的力学性能
J Physiol. 1969 Nov;205(1):179-92. doi: 10.1113/jphysiol.1969.sp008959.
8
Transient changes in isotonic shortening velocity of frog rectus abdominis muscles in potassium contracture.钾离子挛缩时青蛙腹直肌等张收缩速度的短暂变化。
Proc R Soc Lond B Biol Sci. 1965 Oct 12;163(991):215-23. doi: 10.1098/rspb.1965.0068.
9
The contractile mechanism of insect fibrillar muscle.昆虫纤维状肌肉的收缩机制。
Prog Biophys Mol Biol. 1967;17:1-60. doi: 10.1016/0079-6107(67)90003-x.