...
首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Feasibility of Using Lateral Mode Coupling Method for a Large Scale Ultrasound Phased Array for Noninvasive Transcranial Therapy
【24h】

Feasibility of Using Lateral Mode Coupling Method for a Large Scale Ultrasound Phased Array for Noninvasive Transcranial Therapy

机译:横向模式耦合方法在大规模超声相控阵无创经颅治疗中的可行性

获取原文
获取原文并翻译 | 示例

摘要

A hemispherical-focused, ultrasound phased array was designed and fabricated using 1372 cylindrical piezoelectric transducers that utilize lateral coupling for noninvasive transcranial therapy. The cylindrical transducers allowed the electrical impedance to be reduced by at least an order of magnitude, such that effective operation could be achieved without electronic matching circuits. In addition, the transducer elements generated the maximum acoustic average surface intensity of $hbox{27 W/cm}^{2}$. The array, driven at the low (306-kHz) or high frequency (840-kHz), achieved excellent focusing through an ex vivo human skull and an adequate beam steering range for clinical brain treatments. It could electronically steer the ultrasound beam over cylindrical volumes of 100-mm in diameter and 60-mm in height at 306 kHz, and 30-mm in diameter and 30-mm in height at 840 kHz. A scanning laser vibrometer was used to investigate the radial and length mode vibrations of the element. The maximum pressure amplitudes through the skull at the geometric focus were predicted to be 5.5 MPa at 306 kHz and 3.7 MPa at 840 kHz for RF power of 1 W on each element. This is the first study demonstrating the feasibility of using cylindrical transducer elements and lateral coupling in construction of ultrasound phased arrays.
机译:使用1372圆柱形压电换能器设计和制造了一个半球形聚焦超声相控阵,该换能器利用横向耦合进行无创经颅治疗。圆柱形换能器使电阻抗降低至少一个数量级,从而无需电子匹配电路即可实现有效操作。此外,换能器元件产生的最大声平均表面强度为$ hbox {27 W / cm} ^ {2} $。该阵列以低频(306 kHz)或高频(840 kHz)驱动,通过离体人类颅骨实现了出色的聚焦,并为临床脑部治疗提供了足够的光束控制范围。它可以通过电子方式将超声束控制在直径为306 kHz,直径为100 mm,高度为60 mm的圆柱体上,直径为840 kHz,直径为30 mm,高度为30 mm。扫描激光振动计用于研究元件的径向和长度模式振动。对于每个元件上1 W的RF功率,预计在几何焦点处穿过头骨的最大压力幅度在306 kHz时为5.5 MPa,在840 kHz时为3.7 MPa。这是第一个证明在超声相控阵构造中使用圆柱形换能器元件和横向耦合的可行性的研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号