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环形阵换能器的实时三维血管内超声新技术。

New fabrication techniques for ring-array transducers for real-time 3D intravascular ultrasound.

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.

出版信息

Ultrason Imaging. 2009 Oct;31(4):247-56. doi: 10.1177/016173460903100403.

Abstract

We have previously described miniature 2D array transducers integrated into a Cook Medical, Inc. vena cava filter deployment device. While functional, the fabrication technique was very labor intensive and did not lend itself well to efficient fabrication of large numbers of devices. We developed two new fabrication methods that we believe can be used to efficiently manufacture these types of devices in greater than prototype numbers. One transducer consisted of 55 elements operating near 5 MHz. The interelement spacing is 0.20 mm. It was constructed on a flat piece of copper-clad polyimide and then wrapped around an 11 French catheter of a Cook Medical, Inc. inferior vena cava (IVC) filter deployment device. We used a braided wiring technology from Tyco Electronics Corp. to connect the elements to our real-time 3D ultrasound scanner. Typical measured transducer element bandwidth was 20% centered at 4.7 MHz and the 50 Omega round trip insertion loss was --82 dB. The mean of the nearest neighbor cross talk was -37.0 dB. The second method consisted of a 46-cm long single layer flex circuit from MicroConnex that terminates in an interconnect that plugs directly into our system cable. This transducer had 70 elements at 0.157 mm interelement spacing operating at 4.8 MHz. Typical measured transducer element bandwidth was 29% and the 50 Omega round trip insertion loss was -83 dB. The mean of the nearest neighbor cross talk was -33.0 dB.

摘要

我们之前曾描述过集成到库克医疗公司(Cook Medical, Inc.)腔静脉滤器展开装置中的微型二维数组换能器。虽然其功能正常,但制造工艺非常繁琐,不适合高效制造大量设备。我们开发了两种新的制造方法,我们相信这两种方法可以有效地制造出这种类型的设备,而且数量远远超过原型。一个换能器由 55 个工作在近 5MHz 的元件组成。元件之间的间距为 0.20 毫米。它是在一块铜包聚酰亚胺的平板上构建的,然后缠绕在库克医疗公司(Cook Medical, Inc.)的一个 11 法国腔静脉(IVC)滤器展开装置的导管上。我们使用泰科电子公司(Tyco Electronics Corp.)的编织布线技术将元件连接到我们的实时 3D 超声扫描仪。典型的测量换能器元件带宽为 20%,中心频率为 4.7MHz,50 欧姆往返插入损耗为-82dB。最近邻串扰的平均值为-37.0dB。第二种方法是由 MicroConnex 提供的 46 厘米长的单层柔性电路板,在连接到我们系统电缆的互连处结束。这个换能器有 70 个元件,元件之间的间距为 0.157 毫米,工作频率为 4.8MHz。典型的测量换能器元件带宽为 29%,50 欧姆往返插入损耗为-83dB。最近邻串扰的平均值为-33.0dB。

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