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Using vertebral movement and intact paraspinal muscles to determine the distribution of intrafusal fiber innervation of muscle spindle afferents in the anesthetized cat

机译:使用椎体运动和完整的肩部肌肉来确定麻醉猫中肌肉纺锤体引起的血液纤维内纤维的分布

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摘要

Increasing our knowledge regarding intrafusal fiber distribution and physiology of paraspinal proprioceptors may provide key insights regarding proprioceptive deficits in trunk control associated with low back pain and lead to more effective clinical intervention. The use of vertebral movement as a means to reliably stretch paraspinal muscles would greatly facilitate physiological study of paraspinal muscle proprioceptors where muscle tendon isolation is either very difficult or impossible. The effects of succinylcholine (SCh) on 194 muscle spindle afferents from lumbar longissimus or multifidus muscles in response to computer-controlled, ramp and hold movements of the L6 vertebra were investigated in anesthetized cats. Paraspinal muscles were stretched by moving the L6 vertebra 1.5 to1.7mm in the dorsal-ventral direction. Initial frequency (IF), dynamic difference (DD), their changes (Δ) following SCh injection (100-400μg ·kg−1), and post-SCh dynamic difference (SChDD) were measured. Muscle spindle intrafusal fiber terminations were classified as primary or secondary fibers as well as bag1 (b1c), bag2 (b2c), b1b2c, or chain (c) fibers. Intrafusal fiber subpopulations were distinguished using logarithmic transformation of SChDD and ΔIF distributions as established by previous investigators. Increases in DD indicate strength of b1c influence while increases in IF indicate strength of b2c influence. Out of 194 afferents, 46.9% of afferents terminated on b2c fibers, 46.4% on b1b2c fibers, 1% on b1c fibers and 5.7% terminated on c fibers. Based on these intrafusal fiber subpopulation distributions, controlled vertebral movement can effectively substitute for direct tendon stretch and allow further investigation of paraspinal proprioceptors in this anatomically complex body region.
机译:增加关于椎管内纤维分布和椎旁副感受器生理学的知识可能提供有关躯干控制中与下腰痛相关的本体感受性缺陷的关键见解,并导致更有效的临床干预。使用椎骨运动作为可靠地拉伸椎旁肌肉的手段将极大地促进椎旁肌本体感受器的生理学研究,其中肌腱隔离非常困难或不可能。在麻醉的猫中,研究了丁二胆碱(SCh)对腰椎长肌或多指肌对194根肌肉纺锤传入的L6椎体的计算机控制,倾斜和保持运动的影响。通过沿背腹方向将L6椎骨移动1.5到1.7mm,可以拉伸椎旁肌肉。测量了注射SCh后的初始频率(IF),动态差异(DD),其变化(Δ)(100-400μg·kg -1 )和SCh后的动态差异(SChDD)。肌梭状融合纤维内终接点分为初级或次级纤维以及bag1(b1c),bag2(b2c),b1b2c或链(c)纤维。融合内纤维亚群使用先前研究者确定的SChDD和ΔIF分布的对数变换来区分。 DD的增加表示b1c影响的强度,而IF的增加表示b2c影响的强度。在194个传入中,有46.9%的传入终止于b2c光纤,46.4%的传入b1b2c光纤,1%的传入b1c光纤和5.7%的传入c光纤。基于这些融合肌内纤维亚群的分布,受控的椎骨运动可以有效地代替直接的肌腱拉伸,并可以进一步研究这个解剖学上复杂的身体区域中的椎旁本体感受器。

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