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猫的双盆神经对大肠运动影响的证据。

Evidence for a dual pelvic nerve influence on large bowel motility in the cat.

作者信息

Fasth S, Hultén L, Nordgren S

出版信息

J Physiol. 1980 Jan;298:159-69. doi: 10.1113/jphysiol.1980.sp013073.

Abstract
  1. The effects of efferent electric pelvic nerve stimulation on colorectal motility and blood flow with emphasis on the motor responses in consecutive colonic and rectal segments were studied in anaesthetized cats. It was considered of particular interest to explore whether selective pharmacological blockade and graded nerve stimulations might reveal the presence of functionally differentiated efferent fibres controlling colonic motility.2. Pelvic nerve stimulation induced immediate and sustained colorectal contractions and a simultaneous increase of the over-all colonic blood flow. The excitatory responses declined immediately on cessation of a shortlasting stimulation (< 2 min); after a longlasting one, however, the rectal contraction was maintained for several min.3. The colonic contraction on pelvic nerve stimulation remained unchanged after atropine but was delayed in onset. Moreover, in the transverse and distal colon it was preceded by a relaxation which was most pronounced in the distal part. The vasodilator response was unchanged.4. After atropine the rectal segment showed a purely relaxatory response. Despite continuous pelvic nerve stimulation the relaxation vanished, however, and rectal volume returned to resting level with 3-5 min. On cessation of such a prolonged stimulation there was a marked rectal ;after-contraction'.5. The excitation thresholds for the efferent nerve fibres eliciting these different responses could not be separated. The motility and the vasodilator responses were not influenced by adrenergic or by serotoninergic blockade.6. The results indicate that direct preganglionic stimulation of the cat pelvic nerves activates intramural cholinergic excitatory neurones as well as non-cholinergic excitatory neurones and furthermore, non-adrenergic non-cholinergic inhibitory neurones, which together result in most complex colonic and rectal motor responses. From a functional point of view these centrally controlled responses may well be independently controlled by separate preganglionic neurones though they do not differ concerning excitation thresholds.7. The effects are consistent with a dual function of the distal colon and rectum. Such a dual parasympathetic influence on the large bowel simulates the vagal control of the stomach, where specific vagal relaxatory fibres convey a reflex widening of the corpus-fundus reservoir during food intake.
摘要
  1. 在麻醉猫身上研究了传出性盆腔神经电刺激对结肠直肠运动和血流的影响,重点关注连续结肠段和直肠段的运动反应。探讨选择性药理学阻断和分级神经刺激是否能揭示控制结肠运动的功能分化传出纤维的存在,被认为具有特别的意义。

  2. 盆腔神经刺激引起结肠直肠立即且持续的收缩,并同时使整个结肠血流增加。短暂刺激(<2分钟)停止后,兴奋反应立即下降;然而,长时间刺激后,直肠收缩会持续几分钟。

  3. 阿托品处理后,盆腔神经刺激引起的结肠收缩保持不变,但起效延迟。此外,在横结肠和远端结肠,收缩之前有一个松弛过程,在远端最为明显。血管舒张反应不变。

  4. 阿托品处理后,直肠段表现出纯粹的松弛反应。尽管持续进行盆腔神经刺激,但松弛反应消失,直肠容积在3 - 5分钟内恢复到静息水平。这种长时间刺激停止后,直肠会出现明显的“收缩后反应”。

  5. 引发这些不同反应的传出神经纤维的兴奋阈值无法区分。运动和血管舒张反应不受肾上腺素能或5-羟色胺能阻断的影响。

  6. 结果表明,直接对猫盆腔神经进行节前刺激会激活壁内胆碱能兴奋性神经元以及非胆碱能兴奋性神经元,此外还激活非肾上腺素能非胆碱能抑制性神经元,这些共同导致了最复杂的结肠和直肠运动反应。从功能角度来看,这些中枢控制的反应很可能由单独的节前神经元独立控制,尽管它们在兴奋阈值方面没有差异。

  7. 这些效应与远端结肠和直肠的双重功能一致。这种对大肠的双重副交感神经影响类似于迷走神经对胃的控制,在进食期间,特定的迷走神经松弛纤维会使胃体-胃底储器反射性扩张。

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本文引用的文献

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The movements and the innervation of the large intestine.大肠的运动和神经支配。
J Physiol. 1900 Dec 31;26(1-2):107-18. doi: 10.1113/jphysiol.1900.sp000825.
7
Nerve-mediated excitation of the taenia of the guinea-pig caecum.豚鼠盲肠带的神经介导兴奋
J Physiol. 1966 Jul;185(1):148-59. doi: 10.1113/jphysiol.1966.sp007977.
10
Secondary excitation of intestinal smooth muscle.肠道平滑肌的继发性兴奋
Br J Pharmacol. 1971 Feb;41(2):213-26. doi: 10.1111/j.1476-5381.1971.tb08023.x.

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