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Development of Ultrasound Transducers for Gating the Acquisition of Computed Tomography Coronary Angiography (CTCA)

机译:用于门控计算机断层扫描冠状动脉造影(CTCA)的超声换能器的开发

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Cardiovascular disease (CVD) accounts for 30% of deaths. The gold standard for diagnosing coronary artery disease (CAD) is catheter-based coronary angiography, which is expensive and invasive. Computed tomography coronary angiography (CTCA) represents an attractive alternative because it is noninvasive and computed tomography is widely available. However, CTCA is subject to cardiac motion and thus must be gated to acquire images during the quiescent phase of the cardiac cycle. Gating based on mechanical motion using ultrasound has been demonstrated to improve CTCA imaging performance relative to electrocardiogram (ECG) gating. However, most ultrasound transducers produce streak artifacts in the CT image. In order to address this problem, single element and linear array CT-compatible transducers were designed and fabricated with the goal of achieving acceptable imaging performance for gating while maintaining X-ray compatibility for prospective gating of CT acquisitions using ultrasound imaging data. The developed transducers were radiographically and acoustically tested and were used to acquire images both in tissue-mimicking phantoms and in vivo in a healthy volunteer. These results have identified alternative passive materials that can be used in low frequency transducers to improve CT compatibility with >15 cm penetration depth and similar imaging performance to transducers with standard, non-CT-compatible materials.
机译:心血管疾病(CVD)占死亡人数的30%。诊断冠状动脉疾病(CAD)的金标准是基于导管的冠状动脉造影术,它昂贵且具有侵入性。计算机断层扫描冠状动脉血管造影(CTCA)代表了一种有吸引力的替代方法,因为它是无创的,计算机断层扫描技术已经广泛使用。但是,CTCA会受到心脏运动的影响,因此必须在心动周期的静止阶段进行门控以获取图像。相对于心电图(ECG)门控,基于使用超声的机械运动进行门控已被证明可以改善CTCA成像性能。但是,大多数超声换能器会在CT图像中产生条纹​​伪影。为了解决该问题,设计并制造了单元件和线性阵列CT兼容换能器,其目的是在为门控获得可接受的成像性能的同时,保持对X射线的兼容性,以便使用超声成像数据对CT采集进行预期门控。所开发的换能器经过射线照相和声学测试,并用于在模仿组织的幻像和人体模型中获取图像。 体内 在一个健康的志愿者中。这些结果确定了可用于低频换能器的替代无源材料,以改善穿透深度大于15 cm的CT兼容性,并具有与标准的非CT兼容材料的换能器相似的成像性能。

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