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Introduction: Pregnancy induces physiological changes, including alterations in cardiovascular dynamics, predisposing pregnant women to supine hypotension syndrome (SHS) during lower-segment cesarean section (LSCS) under spinal anesthesia. Various methods, including manual displacement of the uterus and use of wedges or cushions, have been proposed to prevent SHS, but their effectiveness remains variable. This study aimed to compare the efficacy of a novel 3D-printed uterine displacement device with that of a traditional wedge in preventing SHS during LSCS after spinal anesthesia.

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Step-by-step hysteroscopic treatment of FIGO type 3 myoma with the cold loop technique.

Fertil Steril

December 2024

Section of Obstetrics and Gynecology, Department of Medicine and Surgery, University of Perugia, Perugia, Italy. Electronic address:

Objective: To demonstrate the "cold loop technique" for the hysteroscopic treatment of FIGO type 3 myomas.

Design: Step-by-step demonstration of the technique using educative video.

Subject: A 45-year-old infertile patient with repeated oocyte donor IVF failures affected by a FIGO type 3 myoma.

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The intrauterine device (IUD) is a widely utilized contraceptive method. In cases of uterine rupture, an IUD can migrate to the intra-abdominal or pelvic cavity, leading to various complications such as gastrointestinal perforation. The aim of this study was to report a case of a 29-year-old woman presented with acute left lumber pain.

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Ectopic pregnancy is associated with increased risk of displaced implantation window: a retrospective study.

BMC Pregnancy Childbirth

December 2024

Department of Reproductive Medicine Center, Xiangya Hospital, Central South University, Changsha, 410008, Hunan, China.

Background: To evaluate the risk factors associated with WOI (window of implantation) displacement based on ERT (endometrial receptivity test), and to confirm the association of ectopic pregnancy with WOI displacement.

Methods: This is a retrospective study at the Reproductive Medicine Center of Xiangya Hospital from January 2020 to April 2024, consisting of 934 patients who performed ERT. The patients underwent 3771 assisted reproductive technology (ART) cycles and 2629 embryo transfer (ET) cycles, with each patient experiencing at least one implantation failure.

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Purpose: The purpose of this study was to quantify the intra- and interfraction motion of the target volume and organs at risk (OARs) during adaptive radiotherapy (ART) for uterine cervical cancer (UCC) using MR-Linac and to identify appropriate UCC target volume margins for adapt-to-shape (ATS) and adapt-to-position (ATP) workflows. Then, the dosimetric differences caused by motion were analyzed.

Methods: Thirty-two UCC patients were included.

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