Quantitative analysis of uterine peristalsis in women with adenomyosis using optical flow for motion quantification

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Using optical flow analysis of transvaginal sonography, this study found that women with adenomyosis exhibit significantly lower uterine peristalsis coordination than controls, while demonstrating the method's moderate to good reproducibility.

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This prospective observational study evaluated uterine peristalsis in 66 women undergoing assisted conception, comparing those with moderate or severe adenomyosis against a control group with normal uteri. Researchers utilized transvaginal sonography recordings and applied optical flow analysis to quantify wave frequency, amplitude, and coordination at the endometrial-myometrial junction across baseline, ovarian stimulation, and embryo transfer phases. The results indicated that women with adenomyosis exhibited significantly higher fit errors at all timepoints, reflecting lower coordination of uterine peristalsis compared to the control group, while demonstrating moderate to good inter- and intra-observer reproducibility for the measurement tool. This paper is centrally about adenomyosis — specifically investigating how the condition alters the mechanical coordination of uterine peristalsis as measured by novel imaging analysis techniques.

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Abstract

Quantitative analysis of uterine peristalsis in women with adenomyosis using optical flow for motion quantification Sania Latif [1,2,*], Shaheer U. Saeed [3,4], Yipeng Hu [3,4], Lucrezia De Braud [1,2], Ephia Yasmin [1,2], Ertan Saridogan [1,2], Dimitrios Mavrelos [1,2]. [1] Reproductive Medicine Unit, University College London Hospital[2]Institute for Women’s Health, University College London[3] Hawke’s Institute, University College London[4] Department of Medical Physics & Biomedical Engineering, University College London[5] Centre for Bioengineering & School of Engineering and Materials Science, Queen Mary University of London * [email protected] Description: This repository contains data presented in the manscript available at: [link to be added after publication] The naming convention is as follows:X_Y_Z X: A adenomyosis / N normalY: B baseline / O ovarian stimulation / E embryo transferZ: freq frequency / amp aplitude / emj coordination at emj / myo coordination in myometrium Abstract: Research question: Do women with adenomyosis have altered uterine peristalsis and can we develop an objective and reproducible tool to quantify uterine peristalsis on transvaginal sonography (TVS)? Design: Prospective observational cohort study in 66 women with moderate/severe adenomyosis (n=26) or a normal uterus (n=40) undergoing TVS during assisted conception. TVS recordings (n=143) were performed at baseline (BL), day 6-10 of ovarian stimulation (OS) and day of embryo transfer (ET) by operator A, and then repeated by operator A, B or C). Image data were stored offline for optical flow analysis using 3D Slicer software (Ver. 4.11, slicer.org). Pixel-level displacements for points at the endometrial-myometrial junction (EMJ) were used to compute peristalsis frequency and amplitude by fitting to the 2D-wave equation. Fit error was taken as a measure of wave coordination. Inter-class correlation coefficient (ICC) was calculated to assess inter- and intra-observer agreement. Results: Women with adenomyosis had a significantly higher fit error at all timepoints during the IVF cycle (BL (+ 0.725, p<0.001), OS (+ 0.612, p = 0.004), ET (+ 0.627, p<0.001), indicating lower uterine peristalsis coordination compared to women with a normal uterus. Inter- and intra-observer agreement for each wave feature (frequency, amplitude and coordination of uterine peristalsis and myometrial contractility) was found to be moderate to good (intra-observer ICC 0.62-0.75, inter-observer ICC 0.58-0.79). Conclusion: The proposed approach for wave motion quantification offers an objective and reproducible measuring tool to quantify uterine peristalsis using TVS, with potential for wide application across assisted conception and gynaecology settings.
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Abstract

Research question: Do women with adenomyosis have altered uterine peristalsis and can we develop an objective and reproducible tool to quantify uterine peristalsis on transvaginal sonography (TVS)? Design: Prospective observational cohort study in 66 women with moderate/severe adenomyosis (n=26) or a normal uterus (n=40) undergoing TVS during assisted conception. TVS recordings (n=143) were performed at baseline (BL), day 6-10 of ovarian stimulation (OS) and day of embryo transfer (ET) by operator A, and then repeated by operator A, B or C). Image data were stored offline for optical flow analysis using 3D Slicer software (Ver. 4.11, slicer.org). Pixel-level displacements for points at the endometrial-myometrial junction (EMJ) were used to compute peristalsis frequency and amplitude by fitting to the 2D-wave equation. Fit error was taken as a measure of wave coordination. Inter-class correlation coefficient (ICC) was calculated to assess inter- and intra-observer agreement.

Results

Women with adenomyosis had a significantly higher fit error at all timepoints during the IVF cycle (BL (+ 0.725, p<0.001), OS (+ 0.612, p = 0.004), ET (+ 0.627, p<0.001), indicating lower uterine peristalsis coordination compared to women with a normal uterus. Inter- and intra-observer agreement for each wave feature (frequency, amplitude and coordination of uterine peristalsis and myometrial contractility) was found to be moderate to good (intra-observer ICC 0.62-0.75, inter-observer ICC 0.58-0.79).

Conclusion

The proposed approach for wave motion quantification offers an objective and reproducible measuring tool to quantify uterine peristalsis using TVS, with potential for wide application across assisted conception and gynaecology settings. Files A_B_amp.txt Files (13.8 kB) | Name | Size | Download all | |---|---|---| | md5:e82a559087b7a84d398b3e7b66ee87ee | 675 Bytes | Preview Download | | md5:3ab6f72ee178a09b8e9b75aa9c9a800e | 675 Bytes | Preview Download | | md5:fbffa14921eccf5b8da8d2f7abaf876e | 675 Bytes | Preview Download | | md5:2e9700185ee259ab1af8b49dda624c82 | 675 Bytes | Preview Download | | md5:0e0ce500b63fc42bb03ce0f0536be7cd | 375 Bytes | Preview Download | | md5:4a8ba70f3b0a9798f70780b3bdbf432c | 375 Bytes | Preview Download | | md5:20632a9e8596083a6dc19085e735c3df | 375 Bytes | Preview Download | | md5:2e2ad83918a3cdb67a9926d5fb4db4b6 | 375 Bytes | Preview Download | | md5:1f663e455ca5f82a6c58e0a06e04e5c3 | 400 Bytes | Preview Download | | md5:ae82fb9f04ed9700d0ad0a4af6ac22e9 | 400 Bytes | Preview Download | | md5:dd2538bcd100396a7036c86129d5a0c1 | 400 Bytes | Preview Download | | md5:68f1fdb133d96aa52604d71886c2e549 | 400 Bytes | Preview Download | | md5:b3d9f867207a96e8f4f2a8b621a7b827 | 525 Bytes | Preview Download | | md5:0ffc177384658eaded6813853769c010 | 525 Bytes | Preview Download | | md5:acfd79d80b772d57e656575206442284 | 525 Bytes | Preview Download | | md5:d1bdd31409ec91ccdf3c5e69191b4d0d | 525 Bytes | Preview Download | | md5:9805a1e19cd19ddac03db5a6e67b732b | 475 Bytes | Preview Download | | md5:76d9f1eceb3fa1cdba88cdb60c28bd6d | 475 Bytes | Preview Download | | md5:2eb5634f8248099bfe60f021c5e764b1 | 475 Bytes | Preview Download | | md5:7ccfc3c88e3f2ac914238047565e0c53 | 475 Bytes | Preview Download | | md5:7b6f7b063b1e62b983a7892a9bd3e63d | 1.0 kB | Preview Download | | md5:b63a6e2313001667cd59a11a0fa6e94a | 1.0 kB | Preview Download | | md5:f41eacaee107346d9772f24e411519f8 | 1.0 kB | Preview Download | | md5:ed2f14074b8f04f34f8883f065069088 | 1.0 kB | Preview Download |

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