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World J Clin Cases
WJCC
World Journal of Clinical Cases
2307-8960
Baishideng Publishing Group Inc

jWJCC.v12.i26.pg5968
10.12998/wjcc.v12.i26.5968
94831
Case Report
Uterine artery pseudoaneurysm caused by hysteroscopic surgery: A case report
Kakinuma K et al. Uterine artery pseudoaneurysm and hysteroscopic surgery
Kakinuma Kaoru Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan

Kakinuma Toshiyuki Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan. tokakinuma@gmail.com

Ueyama Kyouhei Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan

Okamoto Rora Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan

Yanagida Kaoru Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan

Takeshima Nobuhiro Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan

Ohwada Michitaka Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan

Author contributions: Kakinuma K and Kakinuma T contributed to conceptualization, methodology, software, validation, original draft preparation, manuscript review and editing, visualization, supervision, and project administration; Ueyama K, Okamoto R, Yanagida K, Takeshima N, Ohwada M contributed to the formal analysis, investigation, resources, and data curation; All authors have read and agreed to the published version of the manuscript.

Corresponding author: Toshiyuki Kakinuma, MD, PhD, Doctor, Professor, Department of Obstetrics and Gynecology, International University of Health and Welfare Hospital, 537-3 Iguchi, Nasushiobara, Tochigi 329-2763, Japan. tokakinuma@gmail.com

16 9 2024
16 9 2024
12 26 59685973
26 3 2024
19 6 2024
5 7 2024
©The Author(s) 2024. Published by Baishideng Publishing Group Inc. All rights reserved.
2024
https://creativecommons.org/licenses/by-nc/4.0/ This article is an open-access article that was selected by an in-house editor and fully peer-reviewed by external reviewers. It is distributed in accordance with the Creative Commons Attribution NonCommercial (CC BY-NC 4.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial.
BACKGROUND

We report a case of uterine artery pseudoaneurysm (UAP) occurrence during hysteroscopic endometrial polypectomy and its treatment via uterine artery embolization (UAE).

CASE SUMMARY

A 48-year-old primigravid, primiparous patient was incidentally found to have an endometrial polyp during a health checkup, and underwent a hysteroscopic polypectomy at another hospital. Her cervix was dilated with a Laminken-R® device. After the Laminken-R® was withdrawn, a large amount of genital bleeding was observed. This bleeding persisted after the hysteroscopic polypectomy, and, as hemostasis became impossible, the patient was transferred to our hospital by ambulance. On arrival, transvaginal ultrasonography revealed a 3-cm hypoechoic mass with a swirling internal pulse on the right side of the uterus, and color Doppler ultrasonography showed feeder vessels penetrating the mass. Pelvic contrast-enhanced computed tomography (CT) confirmed the presence of a mass at this site, and vascular proliferation was observed within the uterine cavity. Consequently, UAP was diagnosed, and UAE was performed. The patient’s postoperative course was uneventful, and 6 mo post-UAE, no recurrence of blood flow to the UAP was observed.

CONCLUSION

When abnormal genital bleeding occurs during hysteroscopic surgery, ultrasonography and contrast-enhanced CT can assist in the detection of early UAPs.

Cervical dilation
Hysteroscopic surgery
Uterine artery pseudoaneurysm
Uterine artery embolization
Case report
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pmc Core Tip: When abnormal uterine bleeding occurs after hysteroscopic surgery, the possibility of uterine artery pseudoaneurysm (UAP) must be considered. Confirmed UAP must be managed promptly and appropriately.

INTRODUCTION

Uterine artery pseudoaneurysm (UAP) is an acquired condition in which the wall of the uterine artery collapses, and the arterial wall layers engulf the blood that has leaked from the vessel[1]. UAPs generally occur after delivery or miscarriage and often cause massive hemorrhage, but cases of its occurrence unrelated to pregnancy, such as during myomectomies, have also been reported. Although UAP is rare, it is a potentially life-threatening condition that can cause massive hemorrhage when it ruptures[2]. We report our experience of uterine artery embolization (UAE) to treat a patient who developed a UAP during hysteroscopic surgery.

CASE PRESENTATION

Chief complaints

A 48-year-old primigravid, primiparous patient (vaginal delivery) was transferred to our clinic for persistent genital bleeding after hysteroscopic polypectomy.

History of present illness

An endometrial polyp was incidentally identified during a health checkup, and a hysteroscopic polypectomy was conducted at another hospital. The cervix was dilated with a 5-mm Laminken-R® device (Ken Medical Company Ltd., Hyogo, Japan). After the Laminken-R® was withdrawn, a large amount of genital bleeding was observed, but transcervical resection was nevertheless performed. A rigid OLYMPUS hystero-resectoscope (OES Pro Resectoscope, Olympus Medical Systems Corporation, Japan) was used with 3% D-sorbitol (UromaticS®, Baxter Ltd., United States) as the perfusion solution. Although the procedure only took 15 min, the genital bleeding persisted even after the hysteroscopic polypectomy. As hemostasis proved impossible, the patient was brought to our hospital by ambulance for further investigation and treatment.

History of past illness

Nothing of note.

Personal and family history

Nothing of note.

Physical examination

On examination upon arrival, her vital signs were as follows: Blood pressure, 108/72 mmHg; heart rate, 72 beats/min; and body temperature, 36.8 ºC.

Laboratory examinations

Colposcopy revealed persistent bleeding from the external uterine orifice. Blood test results revealed anemia, with a hemoglobin level of 8.3 g/dL, but all other test results were unremarkable.

Imaging examinations

Transvaginal ultrasonography: A 3-cm hypoechoic mass with a swirling internal pulse was apparent in the right wall of the uterus (Figure 1A), and color Doppler revealed abundant turbulent blood flow into the mass (Figure 1B).

Figure 1 Transvaginal ultrasonography. A: A 3-cm echo-free space is evident in the right wall of the uterus; B: Color Doppler reveals abundant blood flow at the same site.

FINAL DIAGNOSIS

Pelvic contrast-enhanced computed tomography (CT) showed the presence of a contrast-enhanced mass at the site identified on ultrasonography (Figure 2A). Three-dimensional image reconstruction showed that the aneurysm was continuous with the right uterine artery. A UAP in the right uterine artery trunk was diagnosed (Figure 2B).

Figure 2 Pelvic contrast-enhanced computed tomography. A: A contrast-enhanced mass (arrow) is evident in the arterial phase; a uterine artery pseudoaneurysm was diagnosed (dynamic imaging); B: Three-dimensional image reconstruction shows the uterine artery and the uterine artery pseudoaneurysm (arrow) continuous with it.

TREATMENT

Because of the risk of bleeding, UAE was chosen as the treatment method. Angiography showed the formation of a 3-cm UAP in the descending branch of the right uterine artery (Figure 3A). There was no sign of extravasation. Since the blood flow to the UAP was observed, and this patient did not want to have a baby and wanted to ensure hemostasis, the feeder artery was subjected to coil embolization (Figure 3B). The patient’s post-treatment course was uneventful, and, after color Doppler ultrasonography confirmed that there was no recurrence of blood flow to the uterine pseudoaneurysm, she was discharged on postoperative day 4.

Figure 3 Pelvic angiography. A: Selective contrast in the right uterine artery allows visualization of the contrast-enhanced uterine artery pseudoaneurysm (arrow); B: As blood flow from the right uterine artery to the uterine artery pseudoaneurysm was evident, coil embolization (arrow) was conducted.

OUTCOME AND FOLLOW-UP

Presently, 6 mo post-UAE, her course has been uneventful, with no recurrence of blood flow to the UAP.

DISCUSSION

UAP is a condition in which the wall of a uterine blood vessel collapses due to some invasive event, and the resulting leaked blood is engulfed by soft tissue, forming a cavity that is in communication with the vessel. The walls of the cavity are fragile and break down easily, frequently causing massive hemorrhage[1]. UAPs frequently develop during the puerperal period or after a miscarriage and reportedly occur in 0.2–0.3% of all pregnancies[2,3]. The most reported cause unrelated to pregnancy is myomectomy[4]. In rare cases, it is caused by adeno myomectomy, cervical conization, abdominal total hysterectomy, transvaginal simple total hysterectomy, and robot-assisted total hysterectomy[5-9].

Ultrasonography is regarded as a helpful modality in diagnosing UAPs[10]. On transvaginal ultrasonography, a UAP can be visualized as an area of low brightness, and on color Doppler ultrasonography, pulsatile spiral blood flow, known as “swirling blood flow” is evident at the same site. Dynamic CT is another useful imaging modality[11] that enables the visualization of not only UAP as an area of early enhancement continuous with a blood vessel, but also of the responsible vessel, thus enabling timely diagnosis. Whether or not the UAP has ruptured can easily be determined from the presence or absence of extravasation, making this an essential modality to decide on the management and treatment strategy for UAPs.

The treatment method used in this case, UAE, is used in almost all cases of genital bleeding, and it is reportedly effective[12-14]. Regarding the incidence of complications of UAE, those associated with vascular contrast procedures account for approximately 6%–9% of total complications. The most common complication is post-UAE fever, and other symptoms, including pain, endometritis, intrauterine adhesions, uterine necrosis, pelvic infections, and reduced ovarian function, may also occur[15-18]. Although post-UAE fertility is believed to be comparatively good, some studies have reported significant increases in the rates of miscarriage, postpartum hemorrhage, premature birth, and abnormal fetal presentation following UAE, as well as cases of intrauterine fetal growth restriction. Thus, women who become pregnant after UAE require careful perinatal management[1,19].

In cases where the UAP is asymptomatic, there is no consensus on whether UAE should be conducted prophylactically or whether the watch-and-wait strategy should be adopted. Although some asymptomatic UAPs resolve spontaneously, others rupture and cause massive bleeding; currently, it is difficult to predict whether a UAP will rupture. The treatment strategy for an unruptured UAP merits further investigation. At this stage, indications for treatment must be determined according to individual patient factors, such as changes in the size of the UAP and treatment resources available at specific institutions, including the feasibility of emergency UAE when bleeding occurs.

In the present case, a UAP that had not been evident on preoperative imaging was observed after hysteroscopic surgery, suggesting that the surgery may have induced the UAP. Cervical dilation is not always necessary for small-diameter hysteroscopic surgery. However, in our patient, the procedure was conducted with a conventional rigid hysteroscope, and the cervix was therefore dilated preoperatively with a 5-mm Laminken-R® before performing the hysteroscopic polypectomy. The profuse genital bleeding observed after the Laminken-R® was withdrawn suggests that the UAP was caused either by direct injury from the Laminken-R® or due to over-dilation. The perfusion solution used during hysteroscopic surgery increases the intrauterine pressure, and this could also have led to the collapse of the vascular wall. Laminken-R® insertion involves blunt manipulation and must be conducted with caution since it is an invasive device. When inserting the Laminken-R®, the direction of the uterine cavity should be checked, and a uterine probe must be used to measure its length. Furthermore, the Laminken-R® comes in a range of sizes, and observing the cervix before dilation is important for choosing the correct size. In addition, the appropriate flow rate for the perfusion solution used during hysteroscopy may vary between individuals, depending on factors such as the volume of the uterine cavity and the flexibility of the myometrium, and attention must also be paid to this flow rate to avoid an excessive increase in intrauterine pressure.

CONCLUSION

In the event of abnormal uterine bleeding after hysteroscopic surgery, the possibility of a UAP must be considered; transvaginal ultrasonography and tomography using color Doppler ultrasonography and dynamic CT must be conducted to ensure prompt and appropriate management.

Informed consent statement: Informed written consent was obtained from the patient for publication of this report and any accompanying images.

Conflict-of-interest statement: The authors declare that they have no conflict of interest to disclose.

CARE Checklist (2016) statement: The authors have read the CARE Checklist (2016), and the manuscript was prepared and revised according to the CARE Checklist (2016).

Provenance and peer review: Unsolicited article; Externally peer reviewed.

Peer-review model: Single blind

Specialty type: Medicine, research and experimental

Country of origin: Japan

Peer-review report’s classification

Scientific Quality: Grade C

Novelty: Grade B

Creativity or Innovation: Grade C

Scientific Significance: Grade C

P-Reviewer: Tsibouris P S-Editor: Liu H L-Editor: Filipodia P-Editor: Cai YX
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