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首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >MR thermometry-based feedback control of efficacy and safety in minimum-time thermal therapies: phantom and in-vivo evaluations.
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MR thermometry-based feedback control of efficacy and safety in minimum-time thermal therapies: phantom and in-vivo evaluations.

机译:基于MR测温的反馈控制在最短时间的热疗中实现疗效和安全性:幻像和体内评估。

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摘要

The experimental validation of a model-based, thermal therapy control system which automatically and simultaneously achieves the specified efficacy and safety objectives of the treatment is reported. MR-thermometry measurements are used in real-time to control the power of a stationary, focused ultrasound transducer in order to achieve the desired treatment outcome in minimum time without violating the imposed safety constraints. Treatment efficacy is quantified in terms of the thermal dose delivered to the target. Normal tissue safety is ensured by automatically maintaining normal tissue temperature below the imposed limit in the user-specified locations. To reflect hardware limitations, constraints on the maximum applied power are also imposed. At the pretreatment stage, MR imaging and thermometry are used to localize the treatment target and identify thermal and actuation models. The results of phantom and canine experiments demonstrate that spatially-distributed, real-time MR temperature measurements enhance one's ability to robustly achieve the desired treatment outcome in minimum time without violating safety constraints. Post-treatment evaluation of the outcome using T2-weighted images of canine muscle showed good spatial correlation between the sonicated area and thermally damaged tissue.
机译:报告了基于模型的热疗控制系统的实验验证,该系统可自动并同时实现治疗的指定功效和安全性目标。 MR测温仪测量值实时用于控制固定的聚焦超声换能器的功率,以便在最短的时间内获得所需的治疗结果,而不会违反所施加的安全性约束。根据递送至靶标的热剂量来量化治疗功效。通过在用户指定的位置自动将正常组织温度保持在规定的限值以下,可以确保正常组织的安全。为了反映硬件限制,还对最大施加功率施加了限制。在预处理阶段,使用MR成像和测温法来确定治疗目标的位置并识别热模型和致动模型。幻像和犬类实验的结果表明,空间分布的实时MR温度测量增强了人们在最短时间内稳固实现所需治疗结果的能力,而没有违反安全性约束。使用犬肌肉的T2加权图像对结果进行治疗后评估,表明超声处理区域与热损伤组织之间具有良好的空间相关性。

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