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The effect of humidified heated breathing circuit on core body temperature in perioperative hypothermia during thyroid surgery

机译:加湿的热呼吸回路对甲状腺手术围手术期体温过低的核心体温的影响

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摘要

>Purpose: During general anesthesia, human body easily reaches a hypothermic state, which is mainly caused by heat redistribution. Most studies suggested that humidified heated breathing circuits (HHBC) have little influence on maintenance of the core temperature during early phase of anesthesia. This study was aimed at examining heat preservation effect with HHBC in case of undergoing surgery with less exposure of surgical fields and short surgical duration.>Methods: Patients aged 19 to 70 yr - old, ASA-PS I or II who were scheduled for elective thyroidectomy were assigned and divided to the group using HHBC (G1) and the group using conventional circuit (G2) by random allocation. During operation, core, skin, and room temperatures were measured every 5minutes by specific thermometer.>Results: G1 was decreased by a lesser extent than G2 in core temperature, apparently higher at 30 and 60 minutes after induction. Skin and room temperatures showed no differences between the two groups (p>0.05). Consequently, we confirmed HHBC efficiently prevented a decrease in core temperature during early period in small operation which has difficulty in preparing warming devices or environments were not usually considered.>Conclusions: This study showed that HHBC influences heat redistribution in early period of operation and can lessen the magnitude of the decrease in core body temperature. Therefore, it can be applied efficiently for other active warming devices in mild hypothermia.
机译:>目的:在全身麻醉过程中,人体容易达到体温过低状态,这主要是由于热量的重新分配所致。大多数研究表明,在麻醉早期,加湿的加热呼吸回路(HHBC)对维持核心温度几乎没有影响。这项研究的目的是检查在进行手术且手术区域暴露较少且手术持续时间较短的情况下,HHBC的保温效果。>方法: 19至70岁的ASA-PS I或安排进行择期甲状腺切除术的II被分配并通过随机分配分为使用HHBC(G1)和使用常规回路(G2)的组。在操作过程中,使用特定的温度计每5分钟测量一次核心,皮肤和室温。>结果:核心温度下G1的下降幅度小于G2,在感应后30分钟和60分钟时明显升高。两组之间的皮肤和室温均无差异(p> 0.05)。因此,我们证实了HHBC有效地防止了小规模操作早期早期核心温度的下降,这通常不考虑准备加热装置或环境的困难。>结论:该研究表明,HHBC影响了热量的重新分配。手术初期,可以减轻核心体温下降的幅度。因此,它可以有效地应用于轻度体温过低的其他主动加温装置。

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