首页> 外文会议>Thermal Treatment of Tissue: Energy Delivery and Assessment III; Progress in Biomedical Optics and Imaging; vol.6, no.13 >Constrained model-predictive thermal dose control for MRI-guided ultrasound thermal treatments
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Constrained model-predictive thermal dose control for MRI-guided ultrasound thermal treatments

机译:MRI引导的超声热处理的受限模型预测热剂量控制

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Model identification and automatic thermal dose feedback control techniques that we have developed for MR-thermometry based ultrasound thermal treatments are described and experimentally evaluated. Pre-treatment, low-power ultrasound sonications, and the resulting temperature elevations were measured using fast MR-thermometry, and used to obtain the specific absorption rate and effective perfusion distributions in the phantoms and an in-vivo canine thigh. The identified thermal and ultrasound models were used in our previously developed constrained model predictive controller to automatically and explicitly realize the efficacy and safety objectives of thermal therapies. In the proposed control approach, the treatment efficacy is characterized by the thermal dose delivered to the target, and the safety objective is formulated in terms of the user-specified maximum allowable temperatures in selected normal tissue locations. Phantom and in-vivo subjects, sonicated with a fixed, focused ultrasound transducer, were used to experimentally evaluate the performance and robustness of the modelling and control techniques. The results demonstrate that the presented model predictive controller delivers the desired thermal dose to the target while limiting the temperatures in the selected normal tissue locations below the specified value. The successful implementation of the MRI-based modelling and control techniques for the simplified stationary transducer cases demonstrate the potential of the proposed approach for advanced and clinically realistic cases that involve scanning ultrasound energy fields. Preliminary simulation results are presented extending the control technique to the moving transducer case.
机译:描述并通过实验评估了我们为基于MR体温计的超声热处理开发的模型识别和自动热剂量反馈控制技术。使用快速MR测温仪对预处理,低功率超声超声处理以及由此产生的温度升高进行了测量,并用于获得体模和体内犬大腿的比吸收率和有效灌注分布。在我们先前开发的约束模型预测控制器中使用已识别的热模型和超声模型来自动,明确地实现热疗法的功效和安全性目标。在提出的控制方法中,治疗功效的特征在于传递给目标的热剂量,安全目标是根据用户指定的正常组织位置的最大允许温度制定的。用固定的聚焦超声换能器进行超声处理的虚拟对象和体内对象,通过实验评估了建模和控制技术的性能和鲁棒性。结果表明,提出的模型预测控制器将所需的热剂量传递到目标,同时将所选正常组织位置的温度限制在指定值以下。对于简化的固定换能器病例,基于MRI的建模和控制技术的成功实施证明了该方法在涉及扫描超声能量场的晚期和临床实际病例中的潜力。初步的仿真结果被提出,将控制技术扩展到了移动换能器壳体。

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