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1)  helium-argon ratio
氦-氩比<冶>
2)  He-Ar gas ratio
氦-氩混合比
3)  cryoablation
氩氦
1.
Using prospective research method and retrospective research method, the study had adeep and particular research into curative effect on lung cancer patients who had been treatedby a new therapy method, TCM combining with Argon-helium cryoablation.
本课题采用前瞻性与回顾性相结合的研究方法,通过对 65 例经过氩氦刀联合中药治疗的肺癌患者进行疗效及中医证候的观察,总结其规律,为氩氦刀联合中药临床应用提供一定的指导,为肺癌尤其是中晚期的治疗探索一种更成熟的治疗方案,以丰富中晚期肺癌的临床治疗手段,提高中晚期肺癌的临床疗效。
2.
In using of prospective research method, the study had a deep and particular research into the changes of Chinese traditional medicine syndrome before and after the Argon-helium cryoablation on lung cancer patients (stage III or IV) who had lost the chances of Radical excision.
本课题采用前瞻性研究方法,对失去手术机会的中晚期肺癌患者行微创非血管性介入冷冻(氩氦刀)治疗前后证候特征变化规律进行了深入、细致的研究,以探索中晚期肺癌患者新的治疗方法及其证候变化规律,也为探讨中医药参与临床治疗(联合氩氦冷冻)时机,氩氦刀冷冻的中医临床功效,提供有重要实践价值的临床理论基础,以丰富中晚期肺癌的临床治疗手段,提高中晚期肺癌的临床疗效。
4)  Helium and argon contents
氦、氩含量
5)  Argon-Helium Cryosurgery
氩氦冷冻
1.
Objective: To analyze the effect of Argon-Helium Cryosurgery(AHCS) on the differentiation of regulatory CD4+CD25+ T cell(Treg) and its implication in patients with hepatocellular carcinoma(HCC).
目的:探讨氩氦冷冻对肝癌外周血CD4+CD25+调节T细胞的影响及临床意义。
2.
Objective The purpose of this study was to analyze the effect of Argon-Helium Cryosurgery(AHCS)on the cryoimmunologic responses of mice bearing H22 liver cancer through detecting splenocyte cytotoxicity,and expression pattern of cytokines T helper type 1(Th1)/Th2.
材料方法 取Balb/c小鼠72只,随机分三组,A、B、C三组均制成H22皮下移植瘤模型,分别行氩氦冷冻治疗(实验组A,n=24),氩氦冷冻治疗1天后辅以弗氏佐剂(实验组B,n=24),荷瘤对照(对照组C,n=24)。
6)  Cryosurgery [英][,kraiəu'sə:dʒəri]  [美][,kraɪo'sɝdʒərɪ]
氩氦刀
1.
Effect of Cryosurgery on Function of T Cellular Immunity in Mice with Malignant Melanoma Carcinoma;
氩氦刀治疗恶性黑色素瘤对小鼠T细胞免疫的影响
2.
Effect of Specific Cellular Immune Function of Prostate Cancer Treated by Cryosurgery;
氩氦刀治疗前列腺癌对特异性细胞免疫功能的影响
3.
Preliminary Clinical Study of Cryosurgery on Lung Cancer;
氩氦刀治疗晚期肺癌的临床观察
补充资料:氦3-氦4稀释制冷
分子式:
CAS号:

性质:3He-4He混合液在0.867K时出现界限分明的上下两相,上相3He含量高称浓相,下相4He含量高称稀相。稀相中4He的熵比3He的熵小得多,浓相中4He的熵又比稀相中3He的熵小得多。3He从浓相进入稀相或从稀相中抽走都会发生降温。用泵把3He-4He混合室与一个蒸发器和一个冷凝器连接起来就组成稀释制冷器。用抽气泵不断地把蒸发器中的3He抽走,蒸发过程中3He带走大量热量。从蒸发器中抽走的3He经冷凝器液化后再回到混合室。用此法可获得0.0035~0.0055K的超低温。

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