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Pattern Interference Radiation Force (PIRF) Based on Large-scale Focused Transducer Using Fresnel Lens

机译:基于菲涅耳透镜的大型聚焦换能器的模式干涉辐射力(PIRF)

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Using a focused ultrasound transducer is one of the most preferred methods for neurostimulation. Due to its high spatial resolution, high penetration depth, ultrasonic property, and its ability to be combined with other methods, a focused ultrasound transducer is suitable for non-invasive brain neurostimulation and is widely used. Generally, only one transducer is used or all transducers face one direction for focusing. Unlike previous cases, neurostimulation using a pattern interface radiation force (PIRF) uses more than two focused transducers and makes standing wave patterns inside the brain for neurostimulation. This paper presents the fabrication and application of a large-scale focused transducer using a Fresnel lens for PIRF application. The focused transducer is made with polydimethylsiloxane (PDMS) and a hybrid-type piezoelectric (PZT) ceramic plate similar to PZT-4 with a size of 100 mm × 80 mm × 2.2 mm. The lens was designed for a 1-MHz frequency, which is the center frequency of the PZT plate. Using these two transducers, a standing wave pattern was created inside the skull, and the radiation force was calculated using the measured pressure field.
机译:使用聚焦超声换能器是神经刺激的最优选方法之一。由于其高的空间分辨率,高的穿透深度,超声特性以及与其他方法相结合的能力,聚焦超声换能器适用于非侵入性脑神经刺激并被广泛使用。通常,仅使用一个换能器,或者所有换能器都面向一个方向聚焦。与以前的情况不同,使用模式界面辐射力(PIRF)进行神经刺激使用了两个以上的聚焦换能器,并在大脑内部制作了驻波模式以进行神经刺激。本文介绍了使用菲涅耳透镜进行PIRF应用的大型聚焦换能器的制造和应用。聚焦换能器由聚二甲基硅氧烷(PDMS)和类似于PZT-4的混合型压电(PZT)陶瓷板制成,尺寸为100 mm×80 mm×2.2 mm。镜头的设计频率为1 MHz,这是PZT板的中心频率。使用这两个传感器,在颅骨内部创建了驻波图,并使用测得的压力场计算了辐射力。

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