In Vivo Imaging–Based 3-Dimensional Pelvic Prototype Models to Improve Education Regarding Sexual Anatomy and Physiology
Autor: | Diomidis Botsikas, Jorge Remuinan, Patrick Petignat, Jasmine Abdulcadir, Natacha Firmenich, Romain Dewaele, Céline Brockmann |
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Rok vydání: | 2020 |
Předmět: |
Male
Models Anatomic Sexual Behavior Urology Endocrinology Diabetes and Metabolism Population 030232 urology & nephrology Physiology Clitoris Sex Education Sexual Response ddc:616.0757 03 medical and health sciences Imaging Three-Dimensional 0302 clinical medicine Endocrinology Clitoral Reconstruction Sexual medicine medicine Humans Sex organ education Retrospective Studies Reproductive health education.field_of_study ddc:618 Anatomy Education 030219 obstetrics & reproductive medicine medicine.diagnostic_test business.industry Female Genital Mutilation Magnetic resonance imaging Anatomy Magnetic Resonance Imaging 3D Printing Psychiatry and Mental health Cross-Sectional Studies medicine.anatomical_structure Reproductive Medicine Female business Penis Preclinical imaging MRI Model |
Zdroj: | The journal of sexual medicine, Vol. 17, No 9 (2020) pp. 1590-1602 |
ISSN: | 1743-6109 1743-6095 |
DOI: | 10.1016/j.jsxm.2020.05.025 |
Popis: | Background Myths, misconceptions, and taboos about sexual anatomy and physiology are common and can affect sexual health and maintain harmful practices and beliefs. Aim To construct a female and a preliminary male 3-dimensional (3D) pelvic model on the basis of in vivo imaging, which could be studied in sex education and clinical practice. Methods We retrospectively studied the images of 200 female pelvic magnetic resonance examinations and reviewed the literature to choose the optimum magnetic resonance imaging (MRI) protocol for the study of the clitoris and surrounding organs. We also conducted a cross-sectional study of 30 women who were undergoing a pelvic MRI. 15 women had undergone female genital mutilation/cutting involving the clitoris and 15 had not. The best-quality MRI images of 3 uncut and 1 cut clitoris, together with the principal surrounding pelvic organs, were selected to generate 3D reconstructions using dedicated software. The same software was used to reconstruct the anatomy of the penis and the principal surrounding pelvic organs, based on contrast-enhanced computer tomography images. Images of both models were exported in .stl format and cleaned to obtain single manifold objects in free, open source software. Each organ model was sliced and 3D printed. A preliminary feedback was collected from 13 potential users working in urology, gynaecology, sexual medicine, physiotherapy, and education. Outcomes The main outcomes of this study are a kit of 3D pelvic models, 2-dimensional figures of female and male sexual anatomy, and files for 3D printing. Results We present a kit containing 3D models and 2-dimensional figures of female and male sexual anatomy, based on in vivo imaging and, feedbacks and suggestions received from potential users. Clinical Translation Our kit can be used in anatomy and sex education among and by health professionals, teachers, sex educators, students, and the general population. Strengths & Limitations The strengths are that the models were based on in vivo imaging, can be dismantled/reassembled, and show analogous anatomic structures of the clitoris and the penis. The female models represent diversity, including women with female genital mutilation/cutting. The limitations are that the male model is preliminary and can be improved if based on an MRI; that imaging-based anatomic representations can differ from anatomic dissections; and that the models represent the sexual organs at rest or during an unknown state of arousal only. Conclusion Our kit can be studied in anatomy, biology, and sex education, as well as in clinical practice. |
Databáze: | OpenAIRE |
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