Significant mechanical interactions at physiological lengths and relative positions of rat plantar flexors

被引:32
作者
Bernabei, Michel [1 ]
van Dieen, Jaap H. [1 ]
Baan, Guus C. [1 ]
Maas, Huub [1 ]
机构
[1] Vrije Univ Amsterdam, Fac Human Movement Sci, Res Inst MOVE, Amsterdam, Netherlands
关键词
myofascial force transmission; connective tissue; soleus muscle; passive slack length; length-force characteristics; MYOFASCIAL FORCE TRANSMISSION; HUMAN GASTROCNEMIUS-MUSCLE; DIGITORUM LONGUS MUSCLE; HUMAN RECTUS FEMORIS; IN-VIVO; SYNERGISTIC MUSCLES; EXTENSOR DIGITORUM; HUMAN HAND; MUSCULOSKELETAL MODEL; ANTAGONISTIC MUSCLES;
D O I
10.1152/japplphysiol.00703.2014
中图分类号
Q4 [生理学];
学科分类号
071003 [生理学];
摘要
In situ studies involving supraphysiological muscle lengths and relative positions have shown that connective tissue linkages connecting adjacent muscles can transmit substantial forces, but the physiological significance is still subject to debate. The present study investigates effects of such epimuscular myofascial force transmission in the rat calf muscles. Unlike previous approaches, we quantified the mechanical interaction between the soleus (SO) and the lateral gastrocnemius and plantaris complex (LG + PL) applying a set of muscle lengths and relative positions corresponding to the range of knee and ankle angles occurring during normal movements. In nine deeply anesthetized Wistar rats, the superficial posterior crural compartment was exposed, and distal and proximal tendons of LG + PL and the distal SO tendon were severed and connected to force transducers. The target muscles were excited simultaneously. We found that SO active and passive tendon force was substantially affected by proximally lengthening of LG + PL mimicking knee extension (10% and 0.8% of maximal active SO force, respectively; P < 0.05). Moreover, SO relative position significantly changed the LG + PL length-force relationship, resulting in nonunique values for passive slack-length and optimum-length estimates. We conclude that also, for physiological muscle conditions, isometric force of rat triceps surae muscles is determined by its muscle-tendon unit length as well as by the length and relative position of its synergists. This has implications for understanding the neuromechanics of skeletal muscle in normal and pathological conditions, as well as for studies relying on the assumption that muscles act as independent force actuators.
引用
收藏
页码:427 / 436
页数:10
相关论文
共 67 条
[1]
Muscle lengthening surgery causes differential acute mechanical effects in both targeted and non-targeted synergistic muscles [J].
Ates, Filiz ;
Ozdeslik, Rana N. ;
Huijing, Peter A. ;
Yucesoy, Can A. .
JOURNAL OF ELECTROMYOGRAPHY AND KINESIOLOGY, 2013, 23 (05) :1199-1205
[2]
High-speed X-ray video demonstrates significant skin movement errors with standard optical kinematics during rat locomotion [J].
Bauman, Jay M. ;
Chang, Young-Hui .
JOURNAL OF NEUROSCIENCE METHODS, 2010, 186 (01) :18-24
[3]
THE FORCE-LENGTH RELATIONSHIP OF A MUSCLE-TENDON COMPLEX - EXPERIMENTAL RESULTS AND MODEL-CALCULATIONS [J].
BOBBERT, MF ;
ETTEMA, GC ;
HUIJING, PA .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY AND OCCUPATIONAL PHYSIOLOGY, 1990, 61 (3-4) :323-329
[4]
Intermuscular force transmission between human plantarflexor muscles in vivo [J].
Bojsen-Moller, Jens ;
Schwartz, Sidse ;
Kalliokoski, Kari K. ;
Finni, Taija ;
Magnusson, S. Peter .
JOURNAL OF APPLIED PHYSIOLOGY, 2010, 109 (06) :1608-1618
[5]
A 3D analysis of fore- and hindlimb motion during overground and ladder walking: Comparison of control and unloaded rats [J].
Canu, Marie-Helene ;
Garnier, Cyril .
EXPERIMENTAL NEUROLOGY, 2009, 218 (01) :98-108
[6]
2 STRATEGIES OF TRANSFERRING FROM SIT-TO-STAND - THE ACTIVATION OF MONOARTICULAR AND BIARTICULAR MUSCLES [J].
DOORENBOSCH, CAM ;
HARLAAR, J ;
ROEBROECK, ME ;
LANKHORST, GJ .
JOURNAL OF BIOMECHANICS, 1994, 27 (11) :1299-1307
[7]
Gillis GB, 2001, J EXP BIOL, V204, P2717
[8]
Quantifying the independence of human finger movements:: Comparisons of digits, hands, and movement frequencies [J].
Häger-Ross, C ;
Schieber, MH .
JOURNAL OF NEUROSCIENCE, 2000, 20 (22) :8542-8550
[9]
Are muscles mechanically independent? [J].
Herbert, Robert D. ;
Hoang, Phu D. ;
Gandevia, Simon C. .
JOURNAL OF APPLIED PHYSIOLOGY, 2008, 104 (06) :1549-1550
[10]
FORCE-LENGTH RELATION OF INVIVO HUMAN RECTUS FEMORIS MUSCLES [J].
HERZOG, W ;
TERKEURS, HEDJ .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1988, 411 (06) :642-647