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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >N*N square-element ultrasound phased-array applicator: simulated temperature distributions associated with directly synthesized heating patterns
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N*N square-element ultrasound phased-array applicator: simulated temperature distributions associated with directly synthesized heating patterns

机译:N * N方阵超声相控阵喷枪:与直接合成的加热模式相关的模拟温度分布

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Computer simulations to demonstrate the possibility of heating small tumors by appropriately driving the electronic control circuitry of an n*n square-element ultrasonic phased array are conducted. The synthesis method consists of simultaneously focusing the ultrasonic beam at different points uniformly distributed along the tumor periphery and, hence, involves no scanning. It is demonstrated that by combining the multiple focusing feature with a new field phasing concept, typical undesired hot spots can be eliminated. The tissue thermal response to this heating modality is investigated by iteratively solving the three-dimensional steady-state bioheat equation. Temperature distributions associated with different directly synthesized power deposition patterns are simulated and discussed.
机译:进行了计算机仿真,以证明通过适当驱动n * n方形元素超声相控阵的电子控制电路来加热小肿瘤的可能性。合成方法包括将超声束同时聚焦在沿肿瘤周边均匀分布的不同点上,因此不涉及扫描。事实证明,通过将多重聚焦功能与新的场相位概念相结合,可以消除典型的不良热点。通过迭代求解三维稳态生物热方程来研究组织对这种加热方式的热响应。模拟和讨论了与不同的直接合成的功率沉积图案相关的温度分布。

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