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冲击波技术在医学领域的应用

陈海斌,杨志焕,宁心,李晓炎

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陈海斌, 杨志焕, 宁心, 李晓炎. 冲击波技术在医学领域的应用[J]. 力学进展, 2012, 42(2): 186-196. doi: 10.6052/1000-0992-2012-2-20120206
引用本文: 陈海斌, 杨志焕, 宁心, 李晓炎. 冲击波技术在医学领域的应用[J]. 力学进展, 2012, 42(2): 186-196.doi:10.6052/1000-0992-2012-2-20120206
CHEN Haibin, YANG Zhihuany, NING Xin, LI Xiaoyan. APPLICATIONS OF SHOCK WAVE TO MEDICAL THERAPY[J]. Advances in Mechanics, 2012, 42(2): 186-196. doi: 10.6052/1000-0992-2012-2-20120206
Citation: CHEN Haibin, YANG Zhihuany, NING Xin, LI Xiaoyan. APPLICATIONS OF SHOCK WAVE TO MEDICAL THERAPY[J].Advances in Mechanics, 2012, 42(2): 186-196.doi:10.6052/1000-0992-2012-2-20120206

冲击波技术在医学领域的应用

doi:10.6052/1000-0992-2012-2-20120206
基金项目:全军“十一五”医药卫生科研基金专项课题(06Z035)资助
详细信息
    通讯作者:

    杨志焕

APPLICATIONS OF SHOCK WAVE TO MEDICAL THERAPY

Funds:The project was supported by the 11th Five-year Plan for Army Medicine and Health Research Fund (06Z035).
More Information
    Corresponding author:YANG Zhihuany
  • 摘要:冲击波研究长期以来用于解决超音速飞行、宇宙飞船重返大气层等相关的高速气体动力学问题.近30年来,冲击波技术成功地应用于医学领域.本文从阐述体外冲击波碎石机的工作原理开始,对体外冲击波碎除肾结石和尿道结石的作用机制(如应力作用、空化效应)进行评述;在此基础上,重点介绍了冲击波治疗骨不连、假关节、肩周炎、网球肘及其他骨科疾病的临床疗效.通过认识气泡崩裂产生的微型水喷射的特点,综述了水中微爆炸、激光聚焦产生的微型水喷射和微型冲击波进行血运重建的理论和方法;通过认识基于冲击波的DNA/药物的定向转运技术,综述了液态DNA转运、粉末状药物转运、分子转移入胞的实验装置和实验结果.此外,还介绍了冲击波在兽医学中用于治疗马、犬等动物的跟腱、韧带和骨的损伤的疗效.最后,展望了今后值得研究的几个领域:冲击波的新波源、冲击波治疗的新设备、冲击波技术在脑血栓血运重建和癌症治疗中的应用.

  • 1 Shrivastava S K. Shock wave treatment in medicine. J. Biosci, 2005, 30(2): 269-275
    2 韩见知, 吴开俊. 体外冲击波碎石技术. 北京: 人民卫生出 版社, 2004. 15-22, 247-248
    3 Toth-Kischkat A. Physical principles of shockwave. In: Proc. of the 3rd Congress of the International Society of Musculoskeletal Shockwave Therapy, Naples, Italy, June,2000
    4 Asgari M A, Safarinejad M R, Hosseini S Y, et al. Extracorporeal shock wave lithotripsy of renal calculi during early pregnancy. Br J Urol, 1999, 84(6): 615-618
    5 孙西钊. 冲击波碎石技术. 上海: 上海交通大学出版社, 2001
    6 Singh I. Impact of power index, hydroureteronephrosis, stone size, and composition on the efficacy of in situ boosted ESWL for primary proximal urethral calculi. Urol, 2001, 58(1): 16-22
    7 Takayama K, Saito T. Shock wave/geophysical and medical applications. Annu Rev Fluid Mech, 2004, 36: 347-379
    8 张泽, 李逊, 夏明义, 等. 复式脉冲低能量体外冲击碎石术治 疗上尿路结石(附717 例报告). 中华泌尿外科杂志, 2004,25(7): 448-449
    9 Valchanou V D, Michailov P. High energy shock waves in the treatment of delayed and nonunion of fractures. Int. Orthop, 1991, 15: 181-184
    10 邢更彦, 井茹芳, 刘树茂, 等. 体外冲击波对骨膜组织骨不连 及骨折延迟愈合的影响. 中华理疗杂志, 1998, 21(6): 331-333
    11 Loew M, Jurgowski W. Initial experiences with extracorporeal shockwave lithotripsy (ESWL) in treatment of tendinosis calcarea of the shoulder. Z Orthop, 1993, 131:470-473
    12 Rompe J D, Burger R, Hogf C, et al. Shoulder function after extracorporal shock wave therapy for calcific tendonitis. Journal of Shoulder and Elbow surgery, 1998,7(5): 505-509
    13 何梓铭. 体外冲击波碎石机临床应用的扩展. 中华泌尿外科 杂志, 1999, 20:127-128
    14 Kodama T, Takayama K, Nagayasu N, et al. Basic study of shock wave revascularization therapy for cerebral embolism. Neurosonology, 1997, 10: 79-83
    15 Kodama T, Takayama K, Uenohara H. A new technology for revascularization of cerebral embolism using liquid jet impact. Phys. Med. Biol, 1997, 42:2355-2367
    16 Hosseini S H R, HiranoT, Onodera O, et al. Study of laser driven underwater shock waves for medical application. In: Proc Jpn Shock Wave Symp. Ed. K Takayama,2000. 613-616
    17 Hirano T, Komatsu M, Saeki T, et al. Enhancement of fibrinolytics with a laser-induced liquid jets. Laser Surg Med, 2001, 29: 360-368
    18 Menezes V, Kanno A, Takayama K. Shock waves for ballistic delivery of DNA droplets into living cells. Int J of Aerospace Innovations, 2009, 1(3): 111-116
    19 Menezes V, Takayama K, Ohki T, et al. Laser-ablationassisted microparticle acceleration for drug delivery. Appl. Phy. Lett., 2005, 87: 163504
    20 Kendal M, Mitchell T J, Costigan G, et al. Downregulation of IgE antibody and allergic responses in the lung by epidermal biolistic microparticle delivery. J. Allergy Clin. Immunol., 2006, 117: 275-282
    21 Morishita R. Adventure of gene therapy into the brain: a New era for cardiovascular gene therapy. Circ. Res.,2000, 87: 719-721
    22 Quinlan N J, Kendall M A F, Bellhouse B J, et al. Investigations of gas and particle dynamics in first generation needle-free drug delivery devices. Shock Waves, 2001, 10:395-404
    23 Johnston S A. Biollstic transformation: microbes to mice. Nature, 1990, 346: 777-778
    24 Bellhouse B J, Quilan N J, Ainsworth R W. Needle-less delivery of drug in dry powder form, using shock waves and supersonic gas flow. In: Houwing A F P, Paul A, Boyce R R, et al. eds. Proc 21st Int Symp Shock Waves.1997. 51-56
    25 Kendall M A F. The delivery of particulate vaccines and drugs to human skin with a practical, hand-held shock tube-based system. Shock Wave J, 2002, 12: 23-33
    26 Jagadeesh G, Kawagishi J, Takayama K, et al. A new micro particle delivery system using laser ablation. In: Lu F. ed. Proc 23rd Int Symp Shock Waves. 2001. 859-866
    27 Pavlov A I. Needle-free drug delivery using shock wave techniques: [Master Thesis]. City-name(State-name): Massachusetts Institute of Technology, 2006
    28 McClure S R, Van Sickle D, White M R. Effects of extracorporeal shock wave therapy on bone. Vet Surg, 2004,33(1): 40-48
    29 Bosch G, de Mos M, van Binsbergen R, et al. The effect of focused extracorporeal shock wave therapy on collagen matrix and gene expression in normal tendons and ligaments. Equine Vet J, 2009, 41(4): 335-341
    30 Komatsu M. Study of applications of shockwaves to medicine: [PhD thesis]. Tohoku: Tohoku Univ, 2002
    31 Vogel A, Busch S. Shock wave emission and cavitation bubble generation by picosecond and nanosecond optical breakdown in water. J. Acoust. Soc. Am., 1996, 100:148-165
    32 Nakagawa A. Application of shockwaves as a treatment modality in the vicinity of brain and skull. J. Neurosurg,2003, 99:156-162
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出版历程
  • 收稿日期:2010-12-16
  • 修回日期:2011-04-19
  • 刊出日期:2012-03-25

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