正文:[10] Tubaro A, Koelbl H, Laterza R, et al. Ultrasound imaging of the pelvic floor: where are we going?[J]. Neurourol Urodyn, 2011,30(5):729-734.
[11] Romosan G, Valentin L. The sensitivity and specificity of transvaginal ultrasound with regard to acute pelvic inflammatory disease: a review of the literature[J]. Arch Gynecol Obstet, 2014,289(4):705-714.
[12] Pysz M A, Willmann J K. Targeted contrast-enhanced ultrasound: an emerging technology in abdominal and pelvic imaging[J]. Gastroenterology, 2011,140(3):785-790.
[13] Coakley F V, Foster B R, Farsad K, et al. Pelvic applications of MR-guided high intensity focused ultrasound[J]. Abdom Imaging, 2013,38(5):1120-1129.
[14] Griffiths A, TerHaar G, Rivens I, et al. High-intensity focused ultrasound in obstetrics and gynecology: the birth of a new era of noninvasive surgery?[J]. Ultraschall Med, 2012,33(7):E8-E15.
[15] 赵俊, 庄天戈. 多层螺旋CT研究进展[J]. 国外医学(生物医学工程分册), 2004(02).
[16] 张挽时, 徐家兴. 多层面螺旋CT和CT三维成像技术的临床应用[J]. 中国医学影像学杂志, 2001(05).
[17] Yitta S, Hecht E M, Mausner E V, et al. Normal or abnormal? Demystifying uterine and cervical contrast enhancement at multidetector CT[J]. Radiographics, 2011,31(3):647-661.
[18] Potter A W, Chandrasekhar C A. US and CT evaluation of acute pelvic pain of gynecologic origin in nonpregnant premenopausal patients[J]. Radiographics, 2008,28(6):1645-1659.
[19] Kim S M, Haider M A, Milosevic M, et al. A comparison of dynamic contrast-enhanced CT and MR imaging-derived measurements in patients with cervical cancer[J]. Clin Physiol Funct Imaging, 2013,33(2):150-161.
[20] Zhang X, Yu H. Evaluation of pelvic lymph node coverage of conventional radiotherapy fields based on bony landmarks in Chinese cervical cancer patients using CT simulation[J]. J Zhejiang Univ Sci B, 2009,10(9):683-688.
[21] Hancke K, Heilmann V, Straka P, et al. Pretreatment staging of cervical cancer: is imaging better than palpation?: Role of CT and MRI in preoperative staging of cervical cancer: single institution results for 255 patients[J]. Ann Surg Oncol, 2008,15(10):2856-2861.
[22] Hricak H, Gatsonis C, Coakley F V, et al. Early invasive cervical cancer: CT and MR imaging in preoperative evaluation - ACRIN/GOG comparative study of diagnostic performance and interobserver variability[J]. Radiology, 2007,245(2):491-498.
[23] 张坤毅. 核磁共振(MRI)的成像原理与临床应用[J]. 中国医疗设备, 2008(05).
[24] Thomassin-Naggara I, Bazot M. [MRI and CT-scan in presumed benign ovarian tumors][J]. J Gynecol Obstet Biol Reprod (Paris), 2013,42(8):744-751.
[25] de Boer P, Adam J A, Buist M R, et al. Role of MRI in detecting involvement of the uterine internal os in uterine cervical cancer: systematic review of diagnostic test accuracy[J]. Eur J Radiol, 2013,82(9):e422-e428.
[26] Hou B, Xiang S F, Yao G D, et al. Diagnostic significance of diffusion-weighted MRI in patients with cervical cancer: a meta-analysis[J]. Tumour Biol, 2014.
[27] Michielsen K, Vergote I, Op D B K, et al. Whole-body MRI with diffusion-weighted sequence for staging of patients with suspected ovarian cancer: a clinical feasibility study in comparison to CT and FDG-PET/CT[J]. Eur Radiol, 2014,24(4):889-901.
[28] 朱朝晖. PET-CT技术的发展现状与展望[J]. 现代仪器, 2004(04).
[29] Hoshikawa H, Kishino T, Mori T, et al. Comparison of ( 18 ) F-FLT PET and ( 18 ) F-FDG PET for detection of cervical lymph node metastases in head and neck cancers[J]. Acta Otolaryngol, 2012,132(12):1347-1354.
[30] Nogami Y, Iida M, Banno K, et al. Application of FDG-PET in cervical cancer and endometrial cancer: utility and future prospects[J]. Anticancer Res, 2014,34(2):585-592.
[31] Sawicki S, Kobierski J, Lapinska-Szumczyk S, et al. Comparison of SPECT-CT results and intraoperative detection of sentinel lymph nodes in endometrial cancer[J]. Nucl Med Commun, 2013,34(6):590-596.
[32] Pandit-Taskar N, Gemignani M L, Lyall A, et al. Single photon emission computed tomography SPECT-CT improves sentinel node detection and localization in cervical and uterine malignancy[J]. Gynecol Oncol, 2010,117(1):59-64.
[33] Klapdor R, Mucke J, Schneider M, et al. Value and advantages of preoperative sentinel lymph node imaging with SPECT/CT in cervical cancer[J]. Int J Gynecol Cancer, 2014,24(2):295-302.
[34] Ozcan K P, Kara T, Kaya B, et al. The value of FDG-PET/CT in the post-treatment evaluation of endometrial carcinoma: a comparison of PET/CT findings with conventional imaging and CA 125 as a tumour marker[J]. Rev Esp Med Nucl Imagen Mol, 2012,31(5):257-260.
[35] Grant P, Sakellis C, Jacene H A. Gynecologic Oncologic Imaging With PET/CT[J]. Semin Nucl Med, 2014,44(6):461-478.
[36] Ding X P, Feng L, Ma L. Diagnosis of recurrent uterine cervical cancer: PET versus PET/CT: a systematic review and meta-analysis[J]. Arch Gynecol Obstet, 2014,290(4):741-747.
[37] Antonsen S L, Loft A, Fisker R, et al. SUVmax of 18FDG PET/CT as a predictor of high-risk endometrial cancer patients[J]. Gynecol Oncol, 2013,129(2):298-303.
[38] Fularz M, Adamiak P, Czepczynski R, et al. [Positron emission tomography (PET) in malignant ovarian tumors][J]. Ginekol Pol, 2013,84(8):720-725.
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