Shear wave elastography to assess stiffness of the human ovary and other reproductive tissues across the reproductive lifespan in health and disease

Author:

Zaniker Emily J12,Zhang Man34,Hughes Lydia12,La Follette Lizellen5,Atazhanova Tomiris12,Trofimchuk Alexis12,Babayev Elnur12,Duncan Francesca E1267

Affiliation:

1. Department of Obstetrics and Gynecology , Feinberg School of Medicine, , Chicago, IL , USA

2. Northwestern University , Feinberg School of Medicine, , Chicago, IL , USA

3. Department of Radiology , Michigan Medicine, , Ann Arbor, MI , USA

4. University of Michigan , Michigan Medicine, , Ann Arbor, MI , USA

5. Greenbrae , CA , USA

6. Center for Reproductive Longevity and Equality , , Novato, CA , USA

7. Buck Institute for Research on Aging , , Novato, CA , USA

Abstract

Abstract The ovary is one of the first organs to show overt signs of aging in the human body, and ovarian aging is associated with a loss of gamete quality and quantity. The age-dependent decline in ovarian function contributes to infertility and an altered endocrine milieu, which has ramifications for overall health. The aging ovarian microenvironment becomes fibro-inflammatory and stiff with age, and this has implications for ovarian physiology and pathology, including follicle growth, gamete quality, ovulation dynamics, and ovarian cancer. Thus, developing a non-invasive tool to measure and monitor the stiffness of the human ovary would represent a major advance for female reproductive health and longevity. Shear wave elastography is a quantitative ultrasound imaging method for evaluation of soft tissue stiffness. Shear wave elastography has been used clinically in assessment of liver fibrosis and characterization of tendinopathies and various neoplasms in thyroid, breast, prostate, and lymph nodes as a non-invasive diagnostic and prognostic tool. In this study, we review the underlying principles of shear wave elastography and its current clinical uses outside the reproductive tract as well as its successful application of shear wave elastography to reproductive tissues, including the uterus and cervix. We also describe an emerging use of this technology in evaluation of human ovarian stiffness via transvaginal ultrasound. Establishing ovarian stiffness as a clinical biomarker of ovarian aging may have implications for predicting the ovarian reserve and outcomes of Assisted Reproductive Technologies as well as for the assessment of the efficacy of emerging therapeutics to extend reproductive longevity. This parameter may also have broad relevance in other conditions where ovarian stiffness and fibrosis may be implicated, such as polycystic ovarian syndrome, late off target effects of chemotherapy and radiation, premature ovarian insufficiency, conditions of differences of sexual development, and ovarian cancer. Summary sentence:  Shear Wave Elastography is a non-invasive technique to study human tissue stiffness, and here we review its clinical applications and implications for reproductive health and disease.

Funder

Global Consortium for Reproductive Longevity and Equality

Northwestern Department of Obstetrics and Gynecology Startup Funds

Eunice Kennedy Shriver National Institute of Child Health and Human Development

Publisher

Oxford University Press (OUP)

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