[1] |
Nambiar AK, Arlandis S, Bø K, et al. European association of urology guidelines on the diagnosis and management of female non-neurogenic lower urinary tract symptoms. part 1: diagnostics,overactive bladder, stress urinary incontinence, and mixed urinary incontinence[J]. Eur Urol, 2022, 82(1): 49-59.
|
[2] |
宋奇翔, 廖利民. 中华医学会压力性尿失禁指南(2019版)要点解读[J]. 实用妇产科杂志, 2022, 38(6): 419-421.Song QX, Liao LM. Interpretation of the Guidelines for stress urinary incontinence of Chinese medical association (2019 edition)[J]. J Pract Obstet Gynecol, 2022, 38(6): 419-421.
|
[3] |
金鑫悦, 黄锦华, 尤晓凤, 等. 近10年中国成年女性压力性尿失禁患病率及影响因素的Meta分析[J]. 中国疗养医学, 2024,33(3): 24-29.Jin XY, Huang JH, You XF, et al. Prevalence and Influencing factors for stress urinary incontinence in Chinese adult women within the past 10 years: a Meta-analysis[J]. Chin J Conval Med, 2024, 33(3):24-29.
|
[4] |
中华医学会妇产科学分会妇科盆底学组.女性压力性尿失禁诊断和治疗指南(2017)[J]. 中华妇产科杂志, 2017, 52(5): 289-293.Urogynocology Subgroup, Chinese Society of Obstetrics and Gynocology, Chinese Medical Association. Update of Guideline on the diagnosis and treatment of female stress urinary incontinence(2017) [J]. Chin J Obstet Gynecol, 2017, 52(5): 289-293.
|
[5] |
Yang X, Wang X, Gao Z, et al. The anatomical pathogenesis of stress urinary incontinence in women[J]. Medicina, 2022, 59(1): 5.
|
[6] |
Mistry MA, Klarskov N, DeLancey JO, et al. A structured review on the female urethral anatomy and innervation with an emphasis on the role of the urethral longitudinal smooth muscle[J]. Int Urogynecol J,2020, 31(1): 63-71.
|
[7] |
Bodner-Adler B, Bodner K, Kimberger O, et al. Role of serum steroid hormones in women with stress urinary incontinence: a case-control study[J]. BJU Int, 2017, 120(3): 416-421.
|
[8] |
Strasser H, Tiefenthaler M, Steinlechner M, et al. Urinary incontinence in the elderly and age-dependent apoptosis of rhabdosphincter cells[J]. Lancet, 1999, 354(9182): 918-919.
|
[9] |
Attari A, DeLancey JO, Ashton-Miller JA. On structure-function relationships in the female human urethra: a finite element model approach[J]. Ann Biomed Eng, 2021, 49(8): 1848-1860.
|
[10] |
Tunn R, Goldammer K, Neymeyer J, et al. MRI morphology of the levator ani muscle, endopelvic fascia, and urethra in women with stress urinary incontinence[J]. Eur J Obstet Gynecol Reprod Biol,2006, 126(2): 239-245.
|
[11] |
Tsumori T, Tsumiyama W. Sexual and regional differences in myosin heavy chain expression in the rat external urethral sphincter[J]. Anat Rec, 2017, 300(11): 2058-2069.
|
[12] |
Enhorning G. Simultaneous recording of intravesical and intraurethral pressure. A study on urethral closure in normal and stress incontinent women[J]. Acta Chir Scand Suppl, 1961, Suppl(276):1-68.
|
[13] |
DeLancey JO. Structural aspects of the extrinsic continence mechanism[J]. Obstet Gynecol, 1988, 72(3 Pt 1): 296-301.
|
[14] |
Hodges PW, Sapsford R, Pengel LHM. Postural and respiratory functions of the pelvic floor muscles[J]. Neurourol Urodyn, 2007,26(3): 362-371.
|
[15] |
Ghroubi S, Jelassi O, Abidi S, et al. Association between isokinetic abdominal muscle strength, pelvic floor muscle strength and stress urinary incontinence severity[J]. Prog Urol, 2022, 32(11): 727-734.
|
[16] |
毛永江, 张红君, 张新玲, 等. 盆底超声在女性压力性尿失禁分级中的初步应用[J]. 中华腔镜泌尿外科杂志(电子版), 2015,9(6): 12-14.Mao YJ, Zhang HJ, Zhang XL, et al. Preliminary application of pelvic floor ultrasound in female with different classification of stress urinary incontinence[J]. Chin J Endourol (Electronic Edition), 2015,9(6): 12-14.
|
[17] |
Peker H, Haliloglu Peker B. 3D high frequency endovaginal ultrasound evaluation of urethral and pelvic morphology in stress urinary incontinence in first pregnancy[J]. Eur J Obstet Gynecol Reprod Biol, 2021, 261: 148-153.
|
[18] |
Taljanovic MS, Gimber LH, Becker GW, et al. Shear-wave elastography: basic physics and musculoskeletal applications[J].Radiographics, 2017, 37(3): 855-870.
|
[19] |
Kohorn EI, Scioscia AL, Jeanty P, et al. Ultrasound cystourethrography by perineal scanning for the assessment of female stress urinary incontinence[J]. Obstet Gynecol, 1986, 68(2): 269-272.
|
[20] |
AIUM/IUGA practice parameter for the performance of Urogynecological ultrasound examinations: developed in collaboration with the ACR, the AUGS, the AUA, and the SRU[J]. Int Urogynecol J,2019, 30(9): 1389-1400.
|
[21] |
Athanasiou S, Khullar V, Boos K, et al. Imaging the urethral sphincter with three-dimensional ultrasound[J]. Obstet Gynecol, 1999, 94(2):295-301.
|
[22] |
Zhao B, Wen L, Chen W, et al. A preliminary study on quantitative quality measurements of the urethral rhabdosphincter muscle by supersonic shear wave imaging in women with stress urinary incontinence[J]. J Ultrasound Med, 2020, 39(8): 1615-1621.
|
[23] |
于妍妍, 朱雯, 方文静, 等. 经直肠双平面超声检查对绝经后不同分度SUI女性尿道括约肌的评估[J]. 医学影像学杂志, 2023,33(11): 2054-2057.Yu YY, Zhu W, Fang WJ, et al. Evaluation of the urethral sphincter in postmenopausal women with different grades SUI by transrectal biplanar ultra-sound[J]. J Med Imag, 2023, 33(11): 2054-2057.
|
[24] |
Li YQ, Geng J, Tan C, et al. Diagnosis and classification of female stress urinary incontinence by transperineal two-dimensional ultrasound[J]. Technol Health Care, 2017, 25(5): 859-866.
|
[25] |
Turkoglu A, Coskun ADE, Arinkan SA, et al. The role of transperineal ultrasound in the evaluation of stress urinary incontinence cases[J]. Int Braz J Urol, 2022, 48(1): 70-77.
|
[26] |
Bu L, Yang D, Nie F, et al. Correlation of the type and degree of cystocele with stress urinary incontinence by transperineal ultrasound[J]. J Med Ultrason, 2020, 47(1): 123-130.
|
[27] |
Shi Q, Wen L, Zhao B, et al. The association of hiatal dimensions and urethral mobility with stress urinary incontinence[J]. J Ultrasound Med, 2022, 41(3): 671-677.
|
[28] |
Chen Y, Peng L, Liu M, et al. Diagnostic value of transperineal ultrasound in patients with stress urinary incontinence (SUI): a systematic review and meta-analysis[J]. World J Urol, 2023, 41(3):687-693.
|
[29] |
You C, Zhao Y, Zhang C, et al. Pelvic floor parameters predict postpartum stress urinary incontinence: a prospective MRI study[J].Insights Imaging, 2023, 14(1): 160.
|
[30] |
Guo X, Ding C, Zhang S. 4D transperineal ultrasound for the diagnosis and classification of stress urinary incontinence in postmenopausal women[J]. J Coll Physicians Surg Pak, 2023, 33(4):438-442.
|
[31] |
Zhao B, Wen L, Liu D, et al. The visualized urethral mobility profile in stress urinary incontinence described by four-dimensional transperineal ultrasound[J]. J Ultrasound Med, 2022, 41(6): 1439-1445.
|
[32] |
Li X M, Zhang L M, Li Y, et al. Usefulness of transperineal shear wave elastography of levator ani muscle in women with stress urinary incontinence[J]. Abdom Radiol, 2022, 47(5): 1873-1880.
|
[33] |
李晓阳, 刘柏隆, 周祥福. 大数据及人工智能对女性盆底功能障碍性疾病的诊断及风险预测[J/OL]. 中华腔镜泌尿外科杂志(电子版), 2023, 17(6): 549-552.Li XY, Liu BL, Zhou XF. Diagnosis and risk prediction of female pelvic floor dysfunction diseases using big data and artificial intelligence[J/OL].Chin J Endourol (Electronic Edition), 2023, 17(6): 549-552.
|
[34] |
Bonmati E, Hu Y, Sindhwani N, et al. Automatic segmentation method of pelvic floor levator hiatus in ultrasound using a selfnormalizing neural network[J]. J Med Imaging, 2018, 5(2): 021206.
|
[35] |
van den Noort F, van der Vaart CH, Grob A TM, et al. Deep learning enables automatic quantitative assessment of puborectalis muscle and urogenital hiatus in plane of minimal hiatal dimensions[J].Ultrasound Obstet Gynecol, 2019, 54(2): 270-275.
|
[36] |
Zhang M, Lin X, Zheng Z, et al. Artificial intelligence models derived from 2D transperineal ultrasound images in the clinical diagnosis of stress urinary incontinence[J]. Int Urogynecol J, 2022, 33(5): 1179-1185.
|
[37] |
李多, 鲁蓉. 盆底超声评估女性肛提肌形态及功能的研究进展[J]. 中南大学学报(医学版), 2023, 48(8): 1267-1273.Li D, Lu R. Research progress in pelvic floor ultrasound for assessing the morphology and function of levator ani muscle in women[J]. J Cent South Univ Med Sci, 2023, 48(8): 1267-1273.
|
[38] |
Sahiner Z, Mangır N, Güner M, et al. The relationship between urinary incontinence and abdominal muscle thickness in communitydwelling older women undergoing comprehensive geriatric assessment[J]. Eur Geriatr Med, 2023, 14(6): 1319-1325.
|
[39] |
Braga A, Caccia G, Nasi I, et al. Diastasis recti abdominis after childbirth: is it a predictor of stress urinary incontinence?[J]. J Gynecol Obstet Hum Reprod, 2019: 101657.
|
[40] |
Yu H, Zheng H, Zhang X, et al. Association between elastography findings of the levator ani and stress urinary incontinence[J]. J Gynecol Obstet Hum Reprod, 2021, 50(4): 101906.
|
[41] |
Bø K, Hilde G, Stær-Jensen J, et al. Postpartum pelvic floor muscle training and pelvic organ prolapse—a randomized trial of primiparous women[J]. Am J Obstet Gynecol, 2015, 212(1): 38.e1-38.e7.
|
[42] |
Hubka P, Masata J, Martan A, et al. Association between sonographic sling location and success of surgery for stress urinary incontinence[J].Ultrasound Obstet Gynecol, 2023, 62(1): 143-147.
|
[43] |
Huang WC, Yang JM, Chen HF. Five-year clinical and imaging outcomes of primary transobturator midurethral sling procedures for uncomplicated urodynamic stress incontinence[J]. Maturitas, 2020,138: 42-50.
|
[44] |
Qu P, Hai N, Lv Z, et al. Midurethral sling position and surgical outcome: a meta-analysis[J]. Medicine, 2024, 103(2): e36115.
|
[45] |
González-Díaz E, Fernández Fernández C, Martin Corral A V, et al. Use of intraoperative ultrasound to improve tension-free vaginal tape-obturator placement: a pilot study[J]. Int J Gynaecol Obstet,2023, 161(3): 833-838.
|
[46] |
Ros C, Escura S, Anglès-Acedo S, et al. Readjustable sling in women with stress urinary incontinence and hypomobile urethra:understanding the mechanisms of closure by transperineal ultrasound[J]. J Ultrasound Med, 2022, 41(12): 3069-3078.
|
[47] |
Ros C, Escura S, Anglès-Acedo S, et al. Mid-term results of the Remeex® readjustable sling for female complex stress urinary incontinence and sonographic hypomobile urethra[J]. Int Urogynecol J, 2022, 33(4): 903-910.
|