Thermodynamic Work of High-Grade Uterine Prolapse Patients Undergoing Transvaginal Mesh Repair with Total Hysterectomy

Author:

Lau Hui-Hsuan12,Lai Cheng-Yuan3ORCID,Hsieh Ming-Chun2,Peng Hsien-Yu2,Chou Dylan2,Su Tsung-Hsien12,Lee Jie-Jen24,Lin Tzer-Bin567ORCID

Affiliation:

1. Division of Urogynecology, Department of Obstetrics and Gynecology, Mackay Memorial Hospital, Taipei 104217, Taiwan

2. Department of Medicine, Mackay Medical College, New Taipei 25245, Taiwan

3. Institute of Biomedical Sciences, Mackay Medical College, New Taipei 25245, Taiwan

4. Department of Surgery, Mackay Memorial Hospital, Taipei 104217, Taiwan

5. Institute of Translational Medicine and New Drug Development, College of Medicine, China Medical University, Taichung 404328, Taiwan

6. Department of Physiology, School of Medicine, College of Medicine, Taipei Medical University, Taipei 110301, Taiwan

7. Graduate Institute of Biomedical Electronics and Bioinformatics, National Taiwan University, Taipei 10617, Taiwan

Abstract

The objective benefit of transvaginal mesh with concomitant total hysterectomy (TVM-HTX) repair to high-grade uterine prolapse (UP) patients has not been fully established. This study aimed to clarify the impact of TVM-HTX on the voiding function of high-grade UP patients by comparing pre- and post-operatively measured pressure–flow and pressure–volume investigations. Urodynamic and thermodynamic studies were conducted on 15 high-grade UP patients (stage III/IV, POP-Q system) who underwent TVM-HTX (January 2019–December 2022) in a tertiary-care university hospital. The parameters analyzed included voiding resistance (Rvod), voiding pressure (Pvod), voiding flow (Fvod), voided volume (Vvod), voiding time (Tvod), and the trajectory-enclosed area of the pressure–volume loop (Apv). Post-operative results showed a significant reduction in Rvod (p < 0.001, N = 15), Pvod (p = 0.021, N = 15), and Apv (p = 0.006, N = 15), along with an increase in Fvod (p = 0.003, N = 15) and a decrease in Tvod (p < 0.001, N = 15). The operation-associated changes in Rvod (ΔRvod) correlated with alterations in Pvod and Fvod (ΔPvod and ΔFvod, r = 0.444, p = 0.004, r = 0.717, p = 0.003, respectively; both N = 15); ΔFvod correlated with the change in Tvod (ΔTvod, r = 0.629, p = 0.012, N = 15) but not with that in ΔVvod (r = 0.166, p = 0.555, N = 15). Changes in Apv (ΔApv) correlated with ΔPvod (r = 0.563, p = 0.029, N = 15) but not with ΔVvod (r = 0.353, p = 0.197, N = 15). Collectively, TVM-HTX reduced the voiding resistance, which improved the voiding efficacy and decreased the pressure gradient required for driving urine flow, thereby lessening the bladder’s workload.

Funder

Ministry of Science and Technology, Taiwan

Publisher

MDPI AG

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