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Acoustic Focusing Enhancement In Fresnel Zone Plate Lenses

机译:菲涅耳波带片透镜的声聚焦增强

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The development of flat acoustic lenses for different applications such as biomedical engineering is a topic of great interest. Flat lenses like Fresnel Zone Plates (FZPs) are capable of focusing energy beams without the need of concave or convex geometries, which are more difficult to manufacture. One of the possible applications of these type of lenses is tumor ablation through High Intensity Focused Ultrasound (HIFU) therapies with real time Magnetic Resonance Imaging (MRI) monitoring. In order to be MRI compatible, the FZP material cannot have electromagnetic interaction. In this work, a Phase-Reversal FZP (PR-FZP) made of Polylactic Acid (PLA) manufactured with a commercial 3D printer is proposed as a better, more efficient and MRI compatible alternative to conventional Soret FZPs. Phase-Reversal lenses, unlike traditional FZPs, take advantage of all the incident energy by adding phase compensation regions instead of pressure blocking regions. The manufactured PR-FZP achieves 21.9?dB of focal gain, which increases the gain compared to a Soret FZP of its same size by a factor of 4.0?dB. Both numerical and experimental results are presented, demonstrating the improved focusing capabilities of these types of lenses.
机译:对于诸如生物医学工程等不同应用的平面声透镜的开发是非常感兴趣的主题。像菲涅耳波带片(FZPs)这样的平面透镜能够聚焦能量束,而无需凹形或凸形几何形状,而这更难于制造。这些类型的镜片的可能应用之一是通过高强度聚焦超声(HIFU)疗法和实时磁共振成像(MRI)监测进行肿瘤消融。为了与MRI兼容,FZP材料不能发生电磁相互作用。在这项工作中,提出了一种由商用3D打印机制造的由聚乳酸(PLA)制成的逆相FZP(PR-FZP),作为传统Soret FZP的更好,更有效且与MRI兼容的替代品。与传统的FZP不同,相位反转透镜通过添加相位补偿区域而不是压力阻挡区域来利用所有入射能量。制成的PR-FZP的聚焦增益达到21.9?dB,与相同尺寸的Soret FZP相比,增益提高了4.0?dB。同时给出了数值和实验结果,证明了这些类型的透镜的改进的聚焦能力。

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