Griffith W H, Gallagher J P, Shinnick-Gallagher P
Brain Res. 1981 Mar 30;209(2):446-51. doi: 10.1016/0006-8993(81)90168-2.
The sucrose-gap recording technique was used to study mammalian parasympathetic ganglionic transmission. Both a fast nicotinic depolarization potential and a slow muscarinic hyperpolarizing potential were recorded in vesical pelvic ganglia (VPG). A long afterhyperpolarization caused by an electrical response of through-fibers was also recorded. However, a slow excitatory postsynaptic potential (S-EPSP) was not readily observed and may be masked by the long afterhyperpolarization. In addition, the slow inhibitory postsynaptic potential (S-IPSP) of the VPG was due to a direct effect of acetylcholine (ACh). Thus, sucrose-gap recordings of VPG potentials are similar to those obtained in sympathetic ganglia, but the mechanism for transmission of the S-IPSP may be different in the respective ganglia.
采用蔗糖间隙记录技术研究哺乳动物副交感神经节传递。在膀胱盆神经节(VPG)中记录到快速烟碱去极化电位和缓慢毒蕈碱超极化电位。还记录到由贯穿纤维的电反应引起的长时超极化后电位。然而,缓慢兴奋性突触后电位(S-EPSP)不易观察到,可能被长时超极化后电位掩盖。此外,VPG的缓慢抑制性突触后电位(S-IPSP)是乙酰胆碱(ACh)直接作用的结果。因此,VPG电位的蔗糖间隙记录与在交感神经节中获得的记录相似,但S-IPSP在各自神经节中的传递机制可能不同。