CERF J A, GRUNDFEST H, HOYLE G, McCANN F V
J Gen Physiol. 1959 Nov;43(2):377-95. doi: 10.1085/jgp.43.2.377.
Dually innervated Romalea muscle fibers which respond differently to stimulation of their fast and slow axons are excited by intracellularly applied depolarizing stimuli. The responses, though spike-like in appearance, are graded in amplitude depending upon the strength of the stimuli and do not exceed about 30 mv. in height. In other respects, however, these graded responses possess properties that are characteristic of electrically excitable activity: vanishingly brief latency; refractoriness; a post-spike undershoot. They are blocked by hyperpolarizing the fiber membrane; respond repetitively to prolonged depolarization, and are subject to depolarizing inactivation. As graded activity, these responses propagate decrementally. The fast and slow axons of the dually responsive muscle fibers initiate respectively large and small postsynaptic potentials (p.s.p.'s) in the muscle fiber. These responses possess properties that characterize electrically inexcitable depolarizing activity. They are augmented by hyperpolarization and diminished by depolarization. Their latency is independent of the membrane potential. They have no refractory period, thus being capable of summation. The fast p.s.p. evokes a considerable or maximal electrically excitable response. The combination, which resembles a spike, leads to a twitch-like contraction of the muscle fiber. The individual slow p.s.p.'s elicit no or only little electrically excitable responses, and they evoke slower smaller contractile responses. The functional aspects of dual responsiveness and the several aspects of the theoretical importance of the gradedly responsive, electrically excitable component are discussed.
双重支配的罗马丽金龟肌肉纤维对其快轴突和慢轴突的刺激反应不同,可被细胞内施加的去极化刺激所兴奋。这些反应虽然外观上类似锋电位,但幅度随刺激强度分级,高度不超过约30毫伏。然而,在其他方面,这些分级反应具有电兴奋性活动的特征:潜伏期极短;有不应期;锋电位后有超极化。它们可通过使纤维膜超极化而被阻断;对长时间去极化有重复反应,并会经历去极化失活。作为分级活动,这些反应呈递减性传播。双重反应性肌肉纤维的快轴突和慢轴突分别在肌肉纤维中引发大的和小的突触后电位(p.s.p.)。这些反应具有电非兴奋性去极化活动的特征。它们会因超极化而增强,因去极化而减弱。它们的潜伏期与膜电位无关。它们没有不应期,因此能够总和。快突触后电位引发相当大或最大的电兴奋性反应。这种类似锋电位的组合会导致肌肉纤维出现类似抽搐的收缩。单个慢突触后电位不引发或仅引发很少的电兴奋性反应,且它们引发的收缩反应较慢且较小。文中讨论了双重反应性的功能方面以及分级反应性、电兴奋性成分的理论重要性的几个方面。