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Exercise‐heat stress with and without water replacement alters brain structures and impairs visuomotor performance

机译:有或没有补水的运动热应激都会改变大脑结构损害运动功能

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摘要

Effects of exercise‐heat stress with and without water replacement on brain structure and visuomotor performance were examined. Thirteen healthy adults (23.6 ± 4.2 years) completed counterbalanced 150 min trials of exercise‐heat stress (45°C, 15% RH) with water replacement (EHS) or without (~3% body mass loss; EHS‐DEH) compared to seated rest (CON). Anatomical scans and fMRI Blood‐Oxygen‐Level‐Dependent responses during a visuomotor pacing task were evaluated. Accuracy decreased (P < 0.05) despite water replacement during EHS (−8.2 ± 6.8% vs. CON) but further degraded with EHS‐DEH (−8.3 ± 6.4% vs. EHS and −16.5 ± 10.2% vs. CON). Relative to CON, EHS elicited opposing volumetric changes (P < 0.05) in brain ventricles (−5.3 ± 1.7%) and periventricular structures (cerebellum: 1.5 ± 0.8%) compared to EHS‐DEH (ventricles: 6.8 ± 3.4, cerebellum: −0.7 ± 0.7; thalamus: −2.7 ± 1.3%). Changes in plasma osmolality ( style="fixed-case">EHS: −3.0 ± 2.1; style="fixed-case">EHS‐ style="fixed-case">DEH: 9.3 ± 2.1 style="fixed-case">mOsm/kg) were related (P < 0.05) to thalamus (r = −0.45) and cerebellum volume (r = −0.61) which, in turn, were related (P < 0.05) to lateral (r = −0.41) and fourth ventricle volume (r = −0.67) changes, respectively; but, there were no associations (P > 0.50) between structural changes and visuomotor accuracy. style="fixed-case">EHS‐ style="fixed-case">DEH increased neural activation (P < 0.05) within motor and visual areas versus style="fixed-case">EHS and style="fixed-case">CON. Brain structural changes are related to bidirectional plasma osmolality perturbations resulting from exercise‐heat stress (with and without water replacement), but do not explain visuomotor impairments. Negative impacts of exercise‐heat stress on visuomotor tasks are further exacerbated by dehydration.
机译:研究了在有或没有补水的情况下运动热应激对脑结构和运动功能的影响。与水替代品(EHS)或无水替代品(〜3%体重减轻; EHS-DEH)相比,十三名健康成年人(23.6±4.2年)完成了150分钟的运动热应激(45°C,15%RH)平衡试验坐着休息(CON)。评估了视觉运动起搏任务期间的解剖扫描和fMRI血氧水平依赖性反应。尽管在EHS期间进行了水置换,但精度仍下降(P <0.05)(相对于CON为−8.2±6.8%),但随着EHS-DEH的使用而进一步降低(相对于EHS为−8.3±6.4%和相对于CON为−16.5±10.2%)。相对于CON,EHS与EHS-DEH(脑室:6.8±3.4,小脑:-)相比在脑室(-5.3±1.7%)和室周结构(小脑:1.5±0.8%)引起相反的体积变化(P <0.05) 0.7±0.7;丘脑:-2.7±1.3%)。血浆渗透压的变化( style =“ fixed-case”> EHS :−3.0±2.1; style =“ fixed-case”> EHS - style =“ fixed-case “> DEH :9.3±2.1 style =” fixed-case“> mO sm / kg与丘脑(r = −0.45)和小脑体积(r = -0.61)分别与外侧(r = -0.41)和第四脑室容积(r = -0.67)的变化相关(P <0.05);但是,结构变化与视觉运动准确性之间没有关联(P> 0.50)。 style =“ fixed-case”> EHS - style =“ fixed-case”> DEH 与 style =“ fixed-case“> EHS 和 style =” fixed-case“> CON 。脑结构变化与运动热应激(有或无水置换)引起的双向血浆渗透压摩尔浓度扰动有关,但不能解释视觉运动障碍。脱水进一步加剧了运动热应激对运动功能的负面影响。

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