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海葵寄生小丑海葵(Calliactis parasitica)中SS1脉冲的延迟起始:第四个传导系统的证据。

Delayed initiation of SS1 pulses in the sea anemone Calliactis parasitica: evidence for a fourth conducting system.

作者信息

Jackson A J, McFarlane I D

出版信息

J Exp Biol. 1976 Dec;65(3):539-52. doi: 10.1242/jeb.65.3.539.

Abstract
  1. Single electrical shocks to the column sometimes elicit a series of 1-6 pulses in the SS1 (ectodermal slow system) but the first pulse does not appear until 5-28 s after stimulation. These pulses occur in addition to the early SS1 pulse which follows every shock and which has a conduction delay of less than 1 s. 2. The threshold of the delayed SS1 response is different from the thresholds of the three known conducting systems (through-conducting nerve net, SS1, and SS2). 3. In the case of stimulation of the column, the delayed SS1 pulses do not arise at the point of stimulation but probably originate in the tentacles or upper column. The pulse origin can shift during a single burst. 4. The pathway from the point of stimulation to the site of origin of delayed SS1 pulses is endodermal. We propose that this pathway represents a fourth conducting system (Delayed Initiation System--DIS). The DIS must connect, across the mesogloea, with the ectodermal SS1. The long pulse delay and repetitive firing may derive from pacemaker activity in the DIS. The DIS pacemakers closely resemble the pacemakers connected to the through-conducting nerve net. The DIS may be neuronal. 5. Delayed SS1 pulse bursts from unattached anemones showed an earlier onset, and more pulses/burst, than those from attached anemones. 6. Delayed SS1 pulses can also be evoked by electrical, and in some cases mechanical, stimulation of the pedal disc, tentacles, and pharynx, but there are regional differences in the number of pulses evoked, in their delay, and in their site of origin.
摘要
  1. 对柱体施加单次电击有时会在SS1(外胚层慢系统)中引发一系列1 - 6个脉冲,但第一个脉冲直到刺激后5 - 28秒才出现。这些脉冲是在每次电击后跟随出现的早期SS1脉冲之外额外产生的,早期SS1脉冲的传导延迟小于1秒。2. 延迟的SS1反应阈值与三个已知传导系统(贯穿传导神经网、SS1和SS2)的阈值不同。3. 在刺激柱体的情况下,延迟的SS1脉冲并非在刺激点产生,而是可能起源于触手或柱体上部。脉冲起源在单个爆发过程中可能会发生变化。4. 从刺激点到延迟的SS1脉冲起源部位的路径是内胚层的。我们提出这条路径代表第四个传导系统(延迟起始系统——DIS)。DIS必须穿过中胶层与外胚层的SS1相连。长脉冲延迟和重复发放可能源于DIS中的起搏器活动。DIS起搏器与连接到贯穿传导神经网的起搏器非常相似。DIS可能是神经元性的。5. 未附着海葵的延迟SS1脉冲爆发比附着海葵的爆发起始更早,且每次爆发的脉冲更多。6. 对足盘、触手和咽部进行电刺激,在某些情况下进行机械刺激,也能诱发延迟的SS1脉冲,但诱发的脉冲数量、延迟时间以及起源部位存在区域差异。

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