Comparative study of female pelvic floor among undeformed high‐resolution thin‐sectional anatomical (visible human) images and MRI and ultrasound images

Author:

Gong Qingfang1ORCID,Wang Yangyun2,Duan Li3,Lei Ling4,Liu Jia1,Yao Jie1,Qi Jing1,Xu Zhou1,Nian Yongjian1,Wu Yi1

Affiliation:

1. Department of Digital Medicine, School of Biomedical Engineering and Imaging Medicine Army Military Medical University (Third Military Medical University) Chongqing China

2. Department of Urology Shanghai Fifth People's Hospital, Fudan University Shanghai China

3. Department of Ultrasound Shanghai Fifth People's Hospital, Fudan University Shanghai China

4. Department of Gynecology and Obstetrics People's Hospital of Anshun Anshun City Guizhou Province China

Abstract

AbstractPurposeUsing visible human, MRI and ultrasound images, we aim to provide an anatomical basis for the identification and diagnosis of pelvic floor structure and disease by ultrasound imaging.MethodsOne Chinese visible human (CVH) image, one American visible human image, 9 MRI images of normal volunteers, and 40 ultrasound images of normal volunteers or pelvic organ prolapse patients were used. Pelvic organs, pelvic floor muscles, and the connective tissue in CVH, VHP, MRI, and ultrasound images were selected for comparative study.ResultsWe successfully identified the boundary of the anal sphincter complex, including the subcutaneous, superficial, and deep parts of the external anal sphincter, conjoined longitudinal muscles and internal anal sphincter; the levator ani muscle (LAM),including the internal and external parts of the pubovisceral muscle and the superficial and deep parts of the puborectal muscle; the urethral sphincter complex, including the urethral sphincter proper and the urethral compressor; and the perineal body, the rectoperineal muscle and superficial transverse perineal muscle.ConclusionsWe successfully recognized and studied the location, subdivisions, 2D morphology and spatial relationships of the LAM, anal sphincter complex, urethral sphincter complex and perineal body in ultrasound images, thereby helping sonologists or clinicians accurately identify pelvic floor muscles and supporting structures in ultrasound images.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Radiology, Nuclear Medicine and imaging

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