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Ultrasound interstitial thermal therapy (USITT) for the treatment of uterine myomas

机译:超声间质热疗法(USITT)用于治疗子宫肌瘤

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Uterine myomas (fibroids) are the most common pelvic tumors occurring in women, and are the leading cause of hysterectomy. Symptoms can be severe, and traditional treatments involve either surgical removal of the uterus (hysterectomy), or the fibroids (myomectomy). Interstitial ultrasound technologies have demonstrated potential for hyperthermia and high temperature thermal therapy in the treatment of benign and malignant tumors. These ultrasound devices offer favorable energy penetration allowing large volumes of tissue to be treated in short periods of time, as well as axial and angular control of heating to conform thermal treatment to a targeted tissue, while protecting surrounding tissues from thermal damage. The goal of this project is to evaluate interstitial ultrasound for controlled thermal coagulation of fibroids. Multi-element applicators were fabricated using tubular transducers, some of which were sectored to produce 180° directional heating patterns, and integrated with water cooling. Human uterine fibroids were obtained after routine myomectomies, and instrumented with thermocouples spaced at 0.5, 1.0, 1.5, 2.0, 2.5 and 3.0 cm from the applicator. Power levels ranging from 8-15 W per element were applied for up to 15 minute heating periods. Results demonstrated that therapeutic temperatures > 50℃ and cytotoxic thermal doses (t_(43)) extended beyond 2 cm radially from the applicator (> 4 cm diameter). It is anticipated that this system will make a significant contribution toward the treatment of uterine fibroids.
机译:子宫肌瘤(肌瘤)是女性中最常见的盆腔肿瘤,是子宫切除术的主要原因。症状可能很严重,传统的治疗方法包括手术切除子宫(子宫切除术)或肌瘤(子宫肌瘤切除术)。间质超声技术已证明在治疗良性和恶性肿瘤方面具有热疗和高温热疗的潜力。这些超声设备提供了良好的能量穿透能力,允许在短时间内治疗大量组织,以及轴向和角度控制加热以使热处理与目标组织相符,同时保护周围组织免受热损伤。该项目的目的是评估组织间超声以控制肌瘤的热凝结。使用管状换能器制造多元件施涂器,其中一些被扇形以产生180°定向加热模式,并与水冷却集成。常规子宫切开术后获得人子宫肌瘤,并用距涂药器0.5、1.0、1.5、2.0、2.5和3.0 cm的热电偶进行检测。每个元件施加8-15 W的功率水平,持续15分钟的加热时间。结果表明,治疗温度> 50℃和细胞毒性热剂量(t_(43))从施药器径向延伸超过2 cm(直径> 4 cm)。预期该系统将对子宫肌瘤的治疗做出重要贡献。

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