Zehr E P, Stein R B
Neurophysiology Laboratory, Faculty of Physical Education and Recreation, University of Alberta, Edmonton, Canada.
Exp Brain Res. 1999 Feb;124(4):474-80. doi: 10.1007/s002210050643.
Since its initial description in 1883, the Jendrássik maneuver (JM) has been used in clinical neurological practice as an effective means of potentiating the tendon tap in neurologically impaired patients. The JM also potentiates its electrical analogue, the Hoffman (H-) reflex, but the mechanism of the reflex modulation has not been clearly established. We studied soleus H-reflex modulation in neurologically intact subjects while at rest and during a mild plantarflexion contraction (EMG level equivalent to approximately 10% maximum voluntary contraction). The control H-reflex was elicited by stimulating the tibial nerve in the popliteal fossa with single pulses of 1 ms duration. Conditioning of the reflex was by: (1) increasing segmental presynaptic inhibition via common peroneal nerve (CP) stimulation; (2) pulling the arms and clenching the teeth (JM); or (3) applying both together (JM+CP). CP stimulation significantly (P<0.05) suppressed the H-reflex (50% Hmax), while JM significantly (P<0.05) facilitated it during contraction. From either an analysis of the grouped data or by a within-subject analysis, we found that the combined effect of stimulating JM+CP was significantly lower than JM alone, but did not differ from control values or from CP alone. The simplest mechanism would be that the effects of the two sum algebraically on the interneurones producing segmental presynaptic inhibition of the H-reflex.
自1883年首次被描述以来,延德拉斯西克手法(JM)在临床神经学实践中一直被用作增强神经功能受损患者腱反射的有效手段。JM也能增强其电模拟形式,即霍夫曼(H-)反射,但反射调制的机制尚未明确确立。我们研究了神经功能正常的受试者在静息状态和轻度跖屈收缩(肌电图水平相当于最大自主收缩的约10%)期间比目鱼肌H反射的调制情况。通过在腘窝处用持续时间为1毫秒的单脉冲刺激胫神经来引出对照H反射。反射的条件作用方式为:(1)通过刺激腓总神经(CP)增加节段性突触前抑制;(2)牵拉手臂并咬紧牙关(JM);或(3)两者同时应用(JM+CP)。CP刺激显著(P<0.05)抑制了H反射(Hmax的50%),而JM在收缩期间显著(P<0.05)促进了H反射。无论是通过对分组数据的分析还是通过受试者内分析,我们发现刺激JM+CP的联合效应显著低于单独的JM,但与对照值或单独的CP没有差异。最简单的机制可能是两者对产生H反射节段性突触前抑制的中间神经元的作用在代数上相加。