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中华医学超声杂志(电子版) ›› 2015, Vol. 12 ›› Issue (11) : 849 -852. doi: 10.3877/cma.j.issn.1672-6448.2015.11.007

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综述

超声弹性成像在子宫卵巢病变诊断中的应用
宋金爽1, 刘静华2,()   
  1. 1. 519041 珠海,遵义医学院珠海校区
    2. 518172 深圳市龙岗区妇幼保健院超声科
  • 收稿日期:2015-03-18 出版日期:2015-11-01
  • 通信作者: 刘静华

The application of ultrasound elastography in the diagnosis of uterus and ovary diseases

Jinshuang Song1, Jinghua Liu2()   

  • Received:2015-03-18 Published:2015-11-01
  • Corresponding author: Jinghua Liu
引用本文:

宋金爽, 刘静华. 超声弹性成像在子宫卵巢病变诊断中的应用[J]. 中华医学超声杂志(电子版), 2015, 12(11): 849-852.

Jinshuang Song, Jinghua Liu. The application of ultrasound elastography in the diagnosis of uterus and ovary diseases[J]. Chinese Journal of Medical Ultrasound (Electronic Edition), 2015, 12(11): 849-852.

[1]
Khalil AS, Chan RC, Chau AH, et al. Tissue elasticity estimation with optical coherence elastography: toward mechanical characterization of in vivo soft tissue [J]. Ann Biomed Eng, 2005, 33(11): 1631-1639.
[2]
Han L, Noble JA, Burcher M. A novel ultrasound indentation system for measuring biomechanical properties of in vivo soft tissue [J]. Ultrasound Med Biol, 2003, 29(6): 813-823.
[3]
Thomas A, Kümmel S, Gemeinhardt O, et al. Real-time sonoelastography of the cervix: tissue elasticity of the normal and abnormal cervix [J]. Acad Radiol, 2007, 14(2): 193-200.
[4]
金鑫, 阙艳红, 王学梅, 等. 实时剪切波弹性成像技术定量评价正常宫颈组织 [J]. 中国医学影像技术, 2013, 29(3): 459-462.
[5]
张敏. 超声弹性成像及阴道超声检查在子宫颈占位性病变诊断中的对比研究 [J]. 蚌埠医学院学报, 2011, 36(4): 398-400, 404.
[6]
陆宇萍, 陈守真, 徐泠琳, 等. 妇科普查中宫颈疾病患病情况分析 [J]. 现代妇产科进展, 2010, 19(3): 210-213.
[7]
Lu R, Xiao Y, Liu M, et al. Ultrasound elastography in the differential diagnosis of benign and malignant cervical lesions [J]. J Ultrasound Med, 2014, 33(4): 667-671.
[8]
周霞, 谢阳桂. 超声弹性成像技术在子宫病变的应用现况 [J]. 交通医学, 2014, 4 (1): 42-44.
[9]
付瑶, 邢萍, 张彧, 等. 阴式超声弹性成像技术在宫颈癌诊断中的应用研究[J/CD]. 中华临床医师杂志:电子版, 2013, 7(13): 6109-6111.
[10]
耿京, 唐军, 杨帆, 等. 实时超声弹性成像技术在宫颈癌的应用研究 [J]. 中国超声医学杂志, 2013, 29(10): 914-917.
[11]
刘宏, 刘慧, 郝轶, 等. 超声弹性成像在宫颈病变的初步应用 [J]. 新疆医科大学学报, 2013, 36(10): 1487-1490.
[12]
Beck S, Wojdyla D, Say L, et al. The worldwide incidence of preterm birth: a systematic review of maternal mortality and morbidity [J]. Bull World Health Organ, 2010, 88(1): 31-38.
[13]
Gravett MG, Rubens CE, Nunes TM, et al. Global report on preterm birth and stillbirth (2 of 7): discovery science [J]. BMC Pregnancy Childbirth, 2010, 10(Suppl 1): S2.
[14]
Read CP, Word RA, Ruscheinsky MA, et al. Cervical remodeling during pregnancy and parturition: molecular characterization of the softening phase in mice [J]. Reproduction, 2007, 134(2): 327-340.
[15]
Word RA, Li XH, Hnat M, et al. Dynamics of cervical remodeling during pregnancy and parturition: mechanisms and current concepts [J]. Semin Reprod Med, 2007, 25(1): 69-79.
[16]
Feltovich H, Hall TJ, Berghella V. Beyond cervical length: emerging technologies for assessing the pregnant cervix [J]. Am J Obstet Gynecol, 2012, 207(5): 345-354.
[17]
Swiatkowska-Freund M, Preis K. Elastography of the uterine cervix: implications for success of induction of labor [J]. Ultrasound Obstet Gynecol, 2011, 38(1): 52-56.
[18]
Hwang HS, Sohn IS, Kwon HS. Imaging analysis of cervical elastography for prediction of successful induction of labor at term [J]. J Ultrasound Med, 2013, 32(6): 937-946.
[19]
Fruscalzo A, Steinhard J, Londero AP, et al. Reliability of quantitative elastography of the uterine cervix in at-term pregnancies [J]. J Perinat Med, 2013, 41(4): 421-427.
[20]
Fruscalzo A, Schmitz R. Quantitative cervical elastography in pregnancy [J]. Ultrasound Obstet Gynecol, 2012, 40(5): 612-613.
[21]
Fuchs T, Woytoń R, Pomorski M, et al. Sonoelastography of the uterine cervix as a new diagnostic tool of cervical assessment in pregnant women - preliminary report [J]. Ginekol Pol, 2013, 84(1): 12-16.
[22]
Molina FS, Gómez LF, Florido J, et al. Quantification of cervical elastography: a reproducibility study [J]. Ultrasound Obstet Gynecol, 2012, 39(6): 685-689.
[23]
郭万学. 超声医学[M]. 6版. 北京: 人民军医出版社, 2014: 1180-1183.
[24]
Hobson MA, Kiss MZ, Varghese T, et al. In vitro uterine strain imaging: preliminary results [J]. J Ultrasound Med, 2007, 26(7): 899-908.
[25]
Stoelinga B, Hehenkamp WJ, Brölmann HA, et al. Real-time elastography for assessment of uterine disorders [J]. Ultrasound Obstet Gynecol, 2014, 43(2): 218-226.
[26]
曹丽, 杨新鸣, 周毓青, 等. 实时超声弹性成像技术评估子宫肌瘤 [J]. 复旦大学学报, 2011, 38(6): 501-504.
[27]
耿京, 唐军, 祁文娟. 声触诊组织量化技术在子宫肌层病变中的应用初探 [J]. 中国医疗设备, 2012, 27(5): 140-141.
[28]
周洪雨, 张晶, 王芳, 等. 静态超声弹性成像在子宫肌层良性病变微波消融效果评估中的应用 [J]. 中华超声影像学杂志, 2012, 21(2): 149-152.
[29]
吴宁宁, 申志扬, 喻红霞, 等. 实时超声弹性成像技术对子宫内膜癌浸润子宫肌层的临床诊断价值 [J]. 中国老年学杂志, 2012, 32(22): 4906-4907.
[30]
Ciledag N, Arda K, Aktas E, et al. A pilot study on real-time transvaginal ultrasonographic elastography of cystic ovarian lesions [J]. Indian J Med Res, 2013, 137(6): 1089-1092.
[31]
Xie M, Zhang X, Zhan J, et al. Application of real-time ultrasound elastography for discrimination of low- and high-grade serous ovarian carcinoma [J]. J Ultrasound Med, 2013, 32(2): 257-262.
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