Nardone A, Grasso M, Giordano A, Schieppati M
Posture and Movement Laboratory, Fondazione Salvatore Maugeri, IRCCS, Veruno, NO, Italy.
Neurosci Lett. 1996 Mar 15;206(2-3):89-92. doi: 10.1016/s0304-3940(96)12430-7.
In standing humans, platform perturbations evoked short- (SLR) and medium-latency responses (MLR) in soleus (Sol), tibialis anterior (TA) and flexor digitorum brevis (FDB) muscles. The latency of all responses significantly increased with subjects' height. The slope of the regression lines for the MLRs versus height was significantly steeper than that for the SLRs. The conduction velocity of the afferent fibres mediating the FDB MLR, calculated on the basis of the regression, was 17.5 m/s. These findings indicate that the MLRs are transmitted through afferent fibres slower than those mediating the SLRs. While the latter fibres are spindle group Ia afferents, the former are suggested to be group II fibres.
在站立的人体中,平台扰动会在比目鱼肌(Sol)、胫骨前肌(TA)和趾短屈肌(FDB)中诱发短潜伏期反应(SLR)和中潜伏期反应(MLR)。所有反应的潜伏期均随受试者身高显著增加。MLR与身高的回归线斜率明显比SLR的更陡。根据回归计算得出,介导FDB MLR的传入纤维传导速度为17.5米/秒。这些发现表明,MLR通过比介导SLR的传入纤维更慢的纤维进行传导。虽然介导SLR的纤维是肌梭Ia类传入纤维,但推测介导MLR的纤维是II类纤维。