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首页> 外文期刊>Pain research & management: the journal of the Canadian Pain Society = journal de la socie?te? canadienne pour le traitement de la douleur >Pain and Vertebral Dysfunction in Dry Immersion: A Model of Microgravity Simulation Different from Bed Rest Studies
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Pain and Vertebral Dysfunction in Dry Immersion: A Model of Microgravity Simulation Different from Bed Rest Studies

机译:干燥浸泡的疼痛和椎体功能障碍:与卧床休息研究不同的微匍匐模拟模型

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摘要

Background. Astronauts frequently experience back pain during and after spaceflight. The aim of this study was to utilize clinical methods to identify potential vertebral somatic dysfunction (VD) in subjects exposed to dry immersion (DI), a model of microgravity simulation. Method. The experiment was performed in a space research clinic, respecting all the ethical rules, with subjects completing three days of dry immersion (n = 11). Assessments of VD, spine height, and back pain were made before and after simulated microgravity. Results. Back pain was present in DI with great global discomfort during the entire protocol. A low positive correlation was found (Pearson r = 0.44; P < 0.001) between VD before DI and pain developed in the DI experiment. Conclusions. There is a specific location of pain in both models of simulation. Our analysis leads to relativizing constraints on musculoskeletal system in function of simulation models. This study was the first to examine manual palpation of the spine in a space experience. Additionally, osteopathic view may be used to select those individuals who have less risk of developing back pain.
机译:背景。宇航员经常在空间和之后经历疼痛。本研究的目的是利用临床方法来鉴定暴露于干燥浸渍(DI)的受试者中的潜在椎体体细胞功能障碍(VD),微匍匐模拟模型。方法。实验在空间研究诊所进行,尊重所有道德规范,受试者完成三天的干浸(n = 11)。在模拟微匍匐之前和之后进行VD,脊柱高度和背部疼痛的评估。结果。在整个协议期间,在DI具有巨大的全球性不适的腰部存在。在DI实验中产生的DI和疼痛之前,发现了低正相关(Pearson r = 0.44; p <0.001)。结论。两种模拟模型都有一种疼痛的特定位置。我们的分析导致在模拟模型功能中对肌肉骨骼系统的约束。本研究是第一个检查空间体验中手动触觉的手动触觉。另外,骨质疗法视图可用于选择那些具有较小风险的患者发育背部疼痛的个体。

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