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MRI 引导经尿道超声治疗局限性前列腺癌。

MRI-controlled transurethral ultrasound therapy for localised prostate cancer.

机构信息

Imaging Research, Centre for Research in Image-Guided Therapeutics, Sunnybrook Health Sciences Centre, Toronto, Ontario, Canada.

出版信息

Int J Hyperthermia. 2010;26(8):804-21. doi: 10.3109/02656736.2010.503670.

Abstract

Minimally invasive treatments for localised prostate cancer are being developed with the aim of achieving effective disease control with low morbidity. High-temperature thermal therapy aimed at producing irreversible thermal coagulation of the prostate gland is attractive because of the rapid onset of thermal injury, and the immediate visualisation of tissue response using medical imaging. High-intensity ultrasound therapy has been shown to be an effective means of achieving thermal coagulation of prostate tissue using minimally invasive devices inserted into the rectum, urethra, or directly into the gland itself. The focus of this review is to describe the work done in our group on the development of MRI-controlled transurethral ultrasound therapy. This technology utilises high intensity ultrasound energy delivered from a transurethral device to achieve thermal coagulation of prostate tissue. Control over the spatial pattern of thermal damage is achieved through closed-loop temperature feedback using quantitative MR thermometry during treatment. The technology, temperature feedback algorithms, and results from numerical modelling, along with experimental results obtained in animal and human studies are described. Our experience suggests that this form of treatment is technically feasible, and compatible with existing MR imaging systems. Temperature feedback control algorithms using MR thermometry can achieve spatial treatment accuracy of a few millimetres in vivo. Patient-specific simulations predict that surrounding tissues can be spared from thermal damage if appropriate measures are taken into account during treatment planning. Recent human experience has been encouraging and motivates further evaluation of this technology as a potential treatment for localised prostate cancer.

摘要

正在开发针对局限性前列腺癌的微创治疗方法,旨在实现低发病率的有效疾病控制。高温热疗旨在通过不可逆的前列腺热凝固来实现,这是因为其热损伤的快速发生,以及使用医学成像即时可视化组织反应。高强度超声疗法已被证明是一种通过插入直肠、尿道或直接进入腺体的微创装置来实现前列腺组织热凝固的有效手段。本综述的重点是描述我们小组在开发 MRI 控制经尿道超声治疗方面所做的工作。该技术利用高强度超声能量从经尿道装置传递来实现前列腺组织的热凝固。通过在治疗过程中使用定量磁共振测温进行闭环温度反馈,可以实现热损伤空间模式的控制。本文描述了该技术、温度反馈算法以及数值建模的结果,以及在动物和人体研究中获得的实验结果。我们的经验表明,这种治疗形式在技术上是可行的,并且与现有的磁共振成像系统兼容。使用磁共振测温的温度反馈控制算法可以在体内实现几毫米的空间治疗精度。基于患者的模拟预测,如果在治疗计划中考虑到适当的措施,可以避免周围组织受到热损伤。最近的人体经验令人鼓舞,并促使进一步评估这种技术作为局限性前列腺癌的潜在治疗方法。

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