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低频超声在治疗中的应用 被引量:8

The therapeutic application of low-frequency ultrasound
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摘要 近年来随着对超声波生物学效应研究的深入,超声医学已远远超出经典的超声诊断学范畴。目前超声治疗方法依频率的不同可分为3种类型:①高频常规超声疗法,常用频率为0.4、0.5、0.8、1.0、2.5、3.0MHz及其以上的更高频率等多种;
作者 杨少玲 胡兵
出处 《中华超声影像学杂志》 CSCD 北大核心 2012年第1期79-81,共3页 Chinese Journal of Ultrasonography
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参考文献24

  • 1O'Brien WD Jr. Ultrasound-biophysics mechanisms. Prog Biophys Mol Biol,2007,93:212-255.
  • 2Xie B, Wang L, Liu H. Using low intensity ultrasound to improve the efficiency of biological phosphorus removal. Ultrason Sonochem, 2008,15: 775-781.
  • 3Robertson VJ, Ward AR. Longwave ultrasound reviewed and reconsidered. Physiotherapy, 1997,83 : 123-130.
  • 4Trubstein G, Engel C, Etzerl F, et al. Thrombolysis by ultrasound. Clin Sci Mol Med, 1976,51 : 697s-698s.
  • 5Hitchcock KE, Holland CK. Ultrasound-assisted thromboiysis for stroke therapy: better thrombus break-up with bubbles. Stroke,2010,41(10 Suppl):S50-S53.
  • 6Zhou XB, Qin H, Li J, et al. Platelet-targeted microbubbles inhibit reocclusion after thrombolysis with transcutaneous ultrasound and microbubbles. Ultrasonics, 2011,51 : 270-274.
  • 7Kudo S. Thrombolysis with ultrasound effect. Tokyo Jikeikai Med, 1989,104:1005-1012.
  • 8Wang Z, Moehring MA, Voie AH, et al. In vitro evaluation of dual mode ultrasonic thrombolysis method for transcranial application with an occlusive thrombosis model. Ultrasound Med Biol, 2008,34 : 96-102.
  • 9Alexandrov AV. Cavitational mechanisms in ultrasound- accelerated fibrinolysis ultrasound enhancement of fibrinolysis. Stroke, 2009,40 (3 Suppl): S107-S110.
  • 10Prokop AF, Soltani A, Roy RA. Ultrasound enhancement of thrombolytic therapy: observations and mechanisms. Ultrasound Med Biol, 2007,33 : 924-933.

二级参考文献34

  • 1岳殿超,徐辉雄,吕明德,汤庆,李宝金,向邦德.声诺维(Sono Vue)增强超声辐照对HepG2细胞膜通透性的影响[J].中国医学影像技术,2005,21(4):510-512. 被引量:14
  • 2王志刚.超声微泡造影剂在疾病诊断与治疗中的研究进展[J].中国医学影像技术,2005,21(8):1148-1150. 被引量:46
  • 3彭晓琼,王志刚,冉海涛,杨春江,景香香,张群霞.低频超声辐射微泡造影剂对人乳腺癌细胞的生物学效应研究[J].中国超声医学杂志,2005,21(11):807-809. 被引量:18
  • 4Kurtz SM, Lau E, Schrnier J, et al. Infection burden for hip and knee arthroplasty in the United States. J Arthroplasty, 2308; 23(7):984-991.
  • 5Bartley J, Young D. Ultrasound as a treatment for chronic rhlnosinusitis. Med Hypotheses, 2009; 73(1):15-17.
  • 6Anderl JN, Franklin MJ, Stewart PS. Role of antibiotic penetration limitation in Klebsiella pneumoniae biofilm resistance to ampicillin and ciprofloxacin. Antimicrob Agents Chemother, 2000; 44(7):1818-1824.
  • 7Pitt WG, McBride MO, Lunceford JK, et al. Ultrasonic enhancement of antibiotic action on gram-negative bacteria. Antirnicrob Agents Chemother, 1994,38(11):2577-2582.
  • 8Walters MC 3rd, Roe F, Buqniconrt A, et al. Contributions of antibiotic penetration, oxygen limitation, and low metabolic activity to tolerance of Pseudomonas aeruginosa biofilms to ciprofloxacin and tobramycin. Antimicrob Agents Chemother, 2003; 47(1):317-323.
  • 9Bagge N, Hentzer M, Andersen JB, et al. Dynamics and spatial distribution of beta-lactarnase expression in Pseudomonas aeruginosa biofilms. Antimicrob Agents Chemother, 2004; 48(4):1168-1174.
  • 10Zhang L, Mah TF. Involvement of a novel efflux system in biofilm-specific resistance to antibiotics. J Bacteriol, 2008; 190(13):4447-4452.

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