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内脏神经在腹部手术内分泌及代谢反应中的作用

Role of the splanchnic nerves in endocrine and metabolic response to abdominal surgery.

作者信息

Shirasaka C, Tsuji H, Asoh T, Takeuchi Y

出版信息

Br J Surg. 1986 Feb;73(2):142-5. doi: 10.1002/bjs.1800730224.

Abstract

The splanchnic nerves are inevitably stimulated during upper abdominal surgery and this may produce various responses. To assess the role of splanchnic nerve stimulation on the endocrine-metabolic responses to abdominal surgery, intra-operative splanchnic nerve blockade was carried out in 12 patients undergoing elective gastrectomy under general anaesthesia and the results compared with those of patients undergoing gastrectomy under general anaesthesia or epidural analgesia alone. In the splanchnic blockade group, intra-operative increase in plasma cortisol, glucose, FFA (free fatty acids) and urinary adrenaline excretion were significantly less than that of the general anaesthesia group. This inhibitory effect of splanchnic blockade on these endocrine-metabolic responses was almost the same as, but slightly less remarkable than, that of high spinal epidural blockade. Urinary noradrenaline excretion reached the highest level on the first postoperative day in the general anaesthesia group. This noradrenaline response was significantly inhibited in the splanchnic group as well as in the epidural group. These results appeared to indicate that mechanical stimulation to the splanchnic nerve due to operative manipulation is largely responsible for the endocrine-metabolic responses in abdominal surgery. The results also suggested that, in addition to the splanchnic nerve stimulation, conscious pain perception is responsible for catecholamine release.

摘要

上腹部手术不可避免地会刺激内脏神经,这可能会产生各种反应。为评估内脏神经刺激对腹部手术内分泌 - 代谢反应的作用,对12例在全身麻醉下接受择期胃切除术的患者进行了术中内脏神经阻滞,并将结果与仅接受全身麻醉或硬膜外镇痛的胃切除术患者的结果进行比较。在内脏神经阻滞组中,术中血浆皮质醇、葡萄糖、游离脂肪酸(FFA)和尿肾上腺素排泄的增加明显少于全身麻醉组。内脏神经阻滞对这些内分泌 - 代谢反应的抑制作用与高位脊髓硬膜外阻滞几乎相同,但稍弱一些。全身麻醉组术后第一天尿去甲肾上腺素排泄达到最高水平。在内脏神经阻滞组和硬膜外阻滞组中,这种去甲肾上腺素反应均受到明显抑制。这些结果似乎表明,手术操作对内脏神经的机械刺激在很大程度上导致了腹部手术中的内分泌 - 代谢反应。结果还表明,除了内脏神经刺激外,有意识的疼痛感知也会导致儿茶酚胺释放。

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