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Two dimensional arrays for real time 3D intravascular ultrasound

机译:实时3D血管内超声二维阵列

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We have previously described 2D arrays operating at up to 10.0 MHz consisting of several thousand elements for transthoracic cardiac imaging and over a hundred elements for intracardiac imaging using 7 Fr to 12 Fr catheters. Other laboratories have proposed doing real time 3D intravascular ultrasound (IVUS) with synthetic aperture techniques. We have begun to explore forward looking real time 3D phased array intravascular ultrasound, which may require imaging depths of a few centimeters to look down the axis of a coronary vessel to view vulnerable atherosclerotic plaque. We obtained a new non-coaxial based cable technology that allowed 100 signal wires to be placed inside a 4.8 French IVUS lumen with an inner diameter of 1.3 mm. In order to obtain the desired penetration depth, we constructed an 8.5 MHz transducer array which includes 11/spl times/11=121 elements for real time 3D intravascular imaging. The transducer was constructed in the forward viewing configuration to allow simultaneous real time B-scans, C-scans and volumetric rendering of vessels and vascular stents. In order to conform to the round aperture of the IVUS lumen, the corners were cut off resulting in a total of 100 signal channels. Field simulations show a -6dB spatial resolution of 1.6 mm at a depth of 10 mm. The 50 Ohm insertion loss is -83 dB and the -6 dB bandwidth is 17%. Average cross talk on nearest neighbor elements is -27.6 dB when loaded by the Volumetrics Medical Imaging (Durham, NC) scanner, and -31.6 dB when loaded by 50 Ohms. Real time 3D images in tissue vascular phantoms have been made within a 4.5 mm diameter lumen. These in vitro images include the real time 3D rendering of a vascular stent.
机译:我们之前描述的2D阵列高达10.0 MHz,该阵列包括用于Transthoracic心脏成像的数千元素,并且使用7FR至12 FR导管的颅内成像超过一百个元素。其他实验室已经提出了具有合成孔技术的实时3D血管内超声(IVUS)。我们已经开始探索正常的实时3D相位阵列血管内超声,这可能需要几厘米的成像深度,以查看冠状动脉血管的轴以观察脆弱的动脉粥样硬化斑块。我们获得了一种新的基于非同轴的电缆技术,使100个信号线允许放置在4.8法国IVUS管腔内,内径为1.3毫米。为了获得所需的渗透深度,我们构造了一个8.5MHz的换能器阵列,其包括11 / SPL时/ 11 = 121元元素,用于实时3D血管内成像。换能器以前向观察配置构建以允许同时实时B扫描,C扫描和容器和血管支架的体积渲染。为了符合IVUS腔的圆形孔径,切断拐角,导致总共100个信号通道。现场模拟显示为1.6毫米的-6dB空间分辨率,深度为10毫米。 50欧姆插入损耗为-83 dB,-6 dB带宽为17%。在最近的邻居元素上的平均串扰是-27.6 dB时由大量医学成像(Durham,NC)扫描仪加载时,在50欧姆加载时-31.6 dB。组织血管幽灵中的实时3D图像在直径4.5毫米的腔内制成。这些体外图像包括血管支架的实时3D渲染。

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