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bladder
    Treatment of Bladder Cancer with Ho∶YAG Laser
    Ho:YAG激光治疗膀胱癌
    In vitro photodynamic therapy of the human bladder cancer cells
    体外膀胱癌细胞光动力学杀伤效应的研究
    Method:The photodynamic cytotoxicity of human bladder cancer cells(T-24 and SCaBER) was studied by MTT rapid colormetric assay referring to different CPD 4 concentration,laser energy and wavelength.
    方法:采用MTT比色分析法判别体外人膀胱癌T-24和SCaBER细胞对不同的激光波长、能量和CPD4浓度的光敏效应。
    From May 1995 to April 1998,56 cases with benign prostata hyperplasia,9 cases with bladder cancer, and 7 cases with urethral stricture, have been treated transurethrally by KTP/YAG laser system.
    自1995年5月~1998年4月用KTP/YAG激光经尿道治疗前列腺增生症56例,膀胱癌9例,尿道狭窄7例。
    Results: The bladder cancer is more in bladder tumors.
    结果得到膀胱肿瘤以膀胱癌多见,各种膀胱病变可以百瘤样改变。
    The results of measurement showed that the parameters of optical properties of human normal bladder and human bladder cancer tissue at 808 nm laser and the linearly polarized laser in Kubelka-Munk two-flux model had prominent distinction (P<0.01).
    结果表明 ,Kubelka Munk二流模型下 ,人正常膀胱组织与人膀胱癌组织对 80 8nm激光及其线偏振激光的各个光学特性参量均有非常显著的差异 (P <0 0 1)。
    CONCLUSION: SDIO N could connect with GFP plasmid by oxidation-reduction reaction,and success to transfer GFP gene into human bladder cancer BIU-87 cells in vitro.
    结论:SDION可通过氧化还原反应与GFP质粒相连,在体外可将GFP基因成功转染入人膀胱癌BIU-87细胞。
 

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