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首页> 外文期刊>British journal of anaesthesia >Forced convective head cooling device reduces human cross-sectional brain temperature measured by magnetic resonance: a non-randomized healthy volunteer pilot study.
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Forced convective head cooling device reduces human cross-sectional brain temperature measured by magnetic resonance: a non-randomized healthy volunteer pilot study.

机译:强制对流头部冷却装置可降低通过磁共振测量的人体横断面大脑温度:这是一项非随机健康志愿者试验研究。

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BACKGROUND: This pilot study in five healthy adult humans forms the pre-clinical assessment of the effect of a forced convective head cooling device on intracranial temperature, measured non-invasively by magnetic resonance spectroscopy (MRS). METHODS: After a 10 min baseline with no cooling, subjects received 30 min of head cooling followed by 30 min of head and neck cooling via a hood and neck collar delivering 14.5 degrees C air at 42.5 litre s(-1). Over baseline and at the end of both cooling periods, MRS was performed, using chemical shift imaging, to measure brain temperature simultaneously across a single slice of brain at the level of the basal ganglia. Oesophageal temperature was measured continuously using a fluoroptic thermometer. RESULTS: MRS brain temperature was calculated for baseline and the last 10 min of each cooling period. The net brain temperature reduction with head cooling was 0.45 degrees C (SD 0.23 degrees C, P=0.01, 95% CI 0.17-0.74 degrees C) and with head and neck cooling was 0.37 degrees C (SD 0.30 degrees C, P=0.049, 95% CI 0.00-0.74 degrees C). The equivalent net reductions in oesophageal temperature were 0.16 degrees C (SD 0.04 degrees C) and 0.36 degrees C (SD 0.12 degrees C). Baseline-corrected brain temperature gradients from outer through intermediate to core voxels were not significant for either head cooling (P=0.43) or head and neck cooling (P=0.07), indicating that there was not a significant reduction in cooling with progressive depth into the brain. CONCLUSIONS: Convective head cooling reduced MRS brain temperature and core brain was cooled.
机译:背景:这项对五名健康成年人的初步研究对强制对流头部冷却装置对颅内温度的影响进行了临床前评估,这是通过磁共振波谱(MRS)无创测量的。方法:在没有冷却的情况下进行10分钟的基线测试之后,受试者接受了30分钟的头部冷却,然后通过引擎盖和颈圈进行了30分钟的头部和颈部冷却,以42.5升s(-1)的速度输送了14.5摄氏度的空气。在基线以上和两个冷却期结束时,使用化学位移成像技术进行MRS,以同时测量单个神经片在基底神经节水平的脑温。使用荧光温度计连续测量食道温度。结果:计算了基线和每个降温期的最后10分钟的MRS脑温。头部冷却时的净脑温降低为0.45摄氏度(SD为0.23摄氏度,P = 0.01,95%CI为0.17-0.74摄氏度),头部和颈部冷却时为0.37摄氏度(SD为0.30摄氏度,P = 0.049 ,95%CI 0.00-0.74摄氏度)。食道温度的等效净降低量为0.16摄氏度(标准差0.04摄氏度)和0.36摄氏度(标准差0.12摄氏度)。经过基线校正的脑部温度从外部到中间到核心体素对于头部冷却(P = 0.43)或头部和颈部冷却(P = 0.07)均不显着,表明随着深度的增加,冷却没有明显降低。大脑。结论:对流头部冷却降低了MRS脑部温度,核心脑部也得到了冷却。

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