Sensory-motor responses to mechanical stimulation of the esophagus after sensitization with acid Sensory-motor responses to mechanical stimulation of the esophagus after sensitization with acid

Sensory-motor responses to mechanical stimulation of the esophagus after sensitization with acid

  • 期刊名字:世界胃肠病学杂志(英文版)
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  • 论文作者:Asbjrn Mlohr Drewes,Hariprasad
  • 作者单位:Asbj(ф)rn Mlohr Drewes,Department of Surgical Gastroenterology L,Center for Sensory-Motor Interactions (SMI)
  • 更新时间:2022-12-23
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论文简介

AIM: Sensitization most likely plays an important role in chronic pain disorders, and such sensitization can be mimicked by experimental acid perfusion of the esophagus.The current study systematically investigated the sensory and motor responses of the esophagus to controlled mechanical stimuli before and after sensitization.METHODS: Thirty healthy subjects were included.Distension of the distal esophagus with a balloon was performed before and after perfusion with 0.1 mol/L hydrochloric acid for 30 min. An impedance planimetry system was used to measure cross-sectional area,volume, pressure, and tension during the distensions. A new model allowed evaluation of the phasic contractions by the tension during contractions as a function of the initial muscle length before the contraction (comparable to the Frank-Starling law for the heart). Length-tension diagrams were used to evaluate the muscle tone before and after relaxation of the smooth muscle with butylscopolamine.RESULTS: The sensitization resulted in allodynia and hyperalgesia to the distension volumes, and the degree of sensitization was related to the infused volume of acid. Furthermore, a nearly 50% increase in the evoked referred pain was seen after sensitization. The mechanical analysis demonstrated hyper-reactivity of the esophagus following acid perfusion, with an increased number and force of the phasic contractions, but the muscle tone did not change.CONCLUSION: Acid perfusion of the esophagus sensitizes the sensory pathways and facilitates secondary contractions.The new model can be used to study abnormal sensorymotor mechanisms in visceral organs.

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