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Clinical Effect of Intelligent Temperature Control System in Preventing Skin Burns Caused by Tumor Hyperthermia

机译:智能温度控制系统在防止肿瘤热疗引起皮肤烧伤的临床疗效

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摘要

Objective: To investigate the clinical effect of skin's surface temperature using intelligent temperature control system of deep tumor hyperthermia for patients with thorax and abdomen cancer. Methods: Patients with thorax and abdomen cancer were selected to perform the in-house developed intelligent surface temperature control system for hyperthermia, and this method was compared to the conventional manipulating of cooling water bag replacement. Results: The first cooling cycle was started at 24 minute and 22 minute respectively after the beginning of hyperthermia in patients with thorax and abdomen cancer for the treatment group performed intelligent surface temperature control system. The average cycle cooling number was 2.5 for this treatment group. The control group started to replace the water bag with patients reminding at 33 minute and 34 minute respectively. The average replacements number was 3.6 for the control group. The monitoring highest surface temperature at first started cooling circulatory system and cooling water bag replacement were 38.5 degrees, 39.1 degrees, respectively, abdomen cancer were 38.8 degrees, 40.1 degrees, respectively. There were 1 case and 4 cases occurring above II empyrosis between treatment and control group respectively, and 0 case and 3 cases were observed in abdomen cancer. Conclusion: Using intelligent surface temperature control system of deep tumor hyperthermia for the thorax and abdomen cancer could monitor and cooling down the high surface temperature earlier compared with conventional cooling water replacement.
机译:目的:探讨胸腔和腹部癌患者深层肿瘤热疗智能温度控制系统的临床疗效。方法:选择胸部和​​腹部癌癌的患者进行内部发育的智能表面温度控制系统,用于热疗,并将这种方法与冷却水袋更换的传统操纵进行比较。结果:第一种冷却循环分别在24分钟和22分钟开始,分别在胸部和腹部癌患者进行治疗组的患者进行智能表面温度控制系统后。该治疗组的平均循环冷却数为2.5。对照组开始用33分钟和34分钟提醒患者的水袋。控制组的平均替换编号为3.6。首次启动冷却循环系统和冷却水袋的最高表面温度分别为38.5度,39.1度,分别为38.8度,40.1度。治疗和对照组之间有1例和4例偏见,分别在腹部癌症中观察到0例和3例。结论:与胸腔和腹部癌的深肿瘤热疗智能表面温度控制系统可以在常规冷却水更换相比上更早地监测和冷却高表面温度。

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