E. Light, J. Fiering, P. Hultman, W. Lee, S.W. Smith
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引用次数: 18
Abstract
The authors have previously described 2-D array transducers with up to several thousand elements operating at frequencies between 2.5 and 5.0 MHz for real time volumetric imaging. Lately, there has been interest in developing catheter based intracardiac imaging systems to aid in the precise tracking of anatomical features and intracardiac devices for improved diagnoses and therapies. The authors constructed several arrays for real time intracardiac volumetric imaging based upon 2 different designs; a 13/spl times/11=143 element 5.0 MHz 2-D array for side scanning applications, and a 10/spl times/10=100 element 7.0 MHz 2-D array for side scanning applications. The 5.0 MHz array fits into a 12 French (3.8 mm OD) catheter and the 7.0 MHz transducer is designed to fit into a 9 French (2.9 mm OD) catheter. The authors also constructed 2 transducers for transthoracic imaging; a 40/spl times/40 5.0 MHz 2-D array, and a 40/spl times/40 7.0 MHz 2-D array. The -6 dB fractional bandwidths for the transducers varied from 27% to 67%. All the transducers were constructed on a 6 layer polyimide interconnect. Both transthoracic and intracardiac volumetric images of ultrasound phantoms and animal models have been obtained using the Duke University real time volumetric imaging system which is capable of generating multiple planes at any desired angle and depth within a pyramidal volume.
作者之前描述了多达数千个元件的二维阵列换能器,工作频率在2.5到5.0 MHz之间,用于实时体积成像。最近,人们对开发基于导管的心内成像系统感兴趣,以帮助精确跟踪解剖特征和心内装置,以改进诊断和治疗。作者基于两种不同的设计构建了几种实时心内容积成像阵列;一个13/spl次/11=143单元5.0 MHz二维阵列用于侧面扫描应用,一个10/spl次/10=100单元7.0 MHz二维阵列用于侧面扫描应用。5.0 MHz阵列适合12 French (3.8 mm OD)导管,7.0 MHz换能器设计适合9 French (2.9 mm OD)导管。作者还构建了2个经胸成像传感器;一个40/spl倍/40 5.0 MHz二维阵列和一个40/spl倍/40 7.0 MHz二维阵列。换能器的- 6db分数带宽从27%到67%不等。所有的换能器都构建在6层聚酰亚胺互连上。使用杜克大学实时体积成像系统,可以在锥体体积内产生任意角度和深度的多个平面,从而获得超声模型和动物模型的经胸和心内体积图像。