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1.
J Minim Invasive Gynecol ; 30(9): 762-767, 2023 09.
Article in English | MEDLINE | ID: mdl-37245672

ABSTRACT

The Sonata System is a minimally invasive, ultrasound-guided transcervical fibroid ablation procedure for the management of symptomatic uterine fibroids. Since its approval by the US Food and Drug Administration in 2018, this procedure has demonstrated an excellent safety profile and postprocedure satisfaction rate. We present the case of a patient treated with Sonata, who subsequently developed bacterial sepsis and Asherman's syndrome-serious complications with long-term sequelae and implications for fertility. A nulligravid woman in her 40s presented in the outpatient setting with dysmenorrhea and bulk symptoms, with imaging showing an enlarged myomatous uterus compressing the urinary bladder. She desired minimally invasive, fertility-preserving management and underwent the Sonata procedure at an outside hospital. On postoperative day 3, she was admitted to our institution with abdominal pain, fever, tachycardia, and Enterococcus faecalis bacteremia. Despite 6 days of culture-directed antibiotic therapy, the patient remained septic with worsening symptoms and imaging findings and with persistent bacteremia. On hospital day 7, the patient underwent laparoscopic myomectomy and excision of hemorrhagic, infected myometrium. She recovered appropriately after surgery and was discharged home on hospital day 11 to continue 2 weeks of intravenous antibiotics. Nine months after myomectomy, the patient was diagnosed as having Asherman's syndrome. She subsequently had an early pregnancy loss with retained products of conception, requiring hysteroscopic lysis of adhesions and dilation and curettage. Ultimately, careful patient selection is critical for the optimal application of the Sonata procedure. Limiting the extent of fibroid necrosis after treatment is a reasonable goal to minimize the risk of secondary bacterial infection and adhesiogenesis as procedural sequelae.


Subject(s)
Bacteremia , Gynatresia , Leiomyoma , Sepsis , Pregnancy , Female , Humans , Gynatresia/surgery , Leiomyoma/complications , Leiomyoma/surgery , Sepsis/complications , Bacteremia/complications
2.
Adv Radiat Oncol ; 7(1): 100804, 2022.
Article in English | MEDLINE | ID: mdl-35079662

ABSTRACT

PURPOSE: There is a paucity of data analyzing the anatomic locations and dose volume metrics achieved for surgically transposed ovaries in patients desiring fertility or hormonal preservation receiving pelvic radiation therapy (RT), which were examined herein. METHODS AND MATERIALS: This is a retrospective study including women who underwent ovarian transposition before pelvic RT between 2010 to 2020. The craniocaudal (CC) distance of the ovary centroid to the (1) plane of the sacral promontory, (2) iliac crest, and (3) the nearest distance between the ovary edge and RT planning target volume (PTV) were measured (cm). The area under the receiver operating characteristic curve and cut-point analysis estimating ovary location outside the PTV was performed. RESULTS: Thirty-one ovaries were analyzed from 18 patients. Thirteen (72.2%) were treated with intensity modulated RT, and 5 (27.8%) were treated with 3-dimensional conformal radiation therapy. Most ovaries were located above the sacral promontory (64.5%, n = 20), below the iliac crest (96.8%, n = 30), and outside the PTV (64.5%, n = 20). The median distance from the ovaries to the sacral promontory, iliac crest, and PTV was 0.8 cm (interquartile range [IQR], -0.83 to 1.59 cm), -3.22 cm (IQR, -5.12 to -1.84 cm), and 0.9 cm (IQR, -1.0 to 1.9 cm), respectively. The area under the receiver operating characteristic curve and cut-point analysis demonstrated that distance from the iliac crest predicted an ovary to be outside the PTV with an optimal cut-point of -3.0 cm (C-index = 0.82). The median mean and maximum (Dmax) ovary doses were 15.5 Gy (IQR, 9.6-20.2 Gy) and 32.2 Gy (IQR 24.8-46.5 Gy), respectively. CONCLUSIONS: Despite most transposed ovaries being located outside the PTV, nearly all remained below the iliac crest and received RT doses associated with a high risk of ovarian failure. These findings deepen our understanding of the spatial relationship between transposed ovaries and dose to inform surgical and pre-RT planning and suggest that more aggressive ovary-sparing strategies are warranted.

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