Wang Ruiyan, Treviño Isaias, Fleischman Aaron J, Majerus Steve J A
Dept. of Electrical Engineering, Case Western Reserve University, Cleveland, Ohio, USA.
Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio, USA.
IEEE Biomed Circuits Syst Conf. 2023 Oct;2023. doi: 10.1109/biocas58349.2023.10388745.
Intravascular ultrasound (IVUS) provides sufficient spatial resolution and penetration depth for use during radiological interventions and for detecting lesion morphology and pathology. Increased use of IVUS in peripheral arteries requires ever-smaller catheters with broader bandwidth to achieve microscopic resolution. This work advances the development of sub-mm IVUS catheters that have greatly improved resolution using broad-band polymer transducers. The high transducer impedance prevents direct attachment to standard 50-Ω micro-coaxial cables and requires high voltage excitation (50 - 100 V typically). To enable broadbandwidth IVUS in a sub-mm catheter, a custom analog front end (AFE) ASIC was developed. The AFE used an active limiter with a regenerative clamping structure to safely withstand large voltages using low-V FETs. AFE characterization in series and shunt configurations demonstrated a typical signal-to-noise ratio of 33.3 dB over a 105 MHz imaging bandwidth. SNR was limited by the wide fractional bandwidth; AFEs demonstrated a 2.1 nV/√Hz noise floor. Pulse recovery to >230-Vpp excitation was measured between 325 - 450 ns, allowing imaging as close as 0.5 mm. The presented design achieves a broader imaging fractional bandwidth than previous interface amplifiers in a sub-millimeter form factor. Example images obtained from a 0.8-mm, 40 MHz transducer showed sufficient resolution for the detection of individual stent struts within a simulated artery with a wall thickness of 0.35 mm.
血管内超声(IVUS)在放射介入过程中提供了足够的空间分辨率和穿透深度,可用于检测病变形态和病理情况。在周围动脉中对IVUS的使用增加,需要更小的导管以及更宽的带宽来实现微观分辨率。这项工作推动了亚毫米级IVUS导管的发展,这种导管使用宽带聚合物换能器,分辨率有了显著提高。换能器的高阻抗使其无法直接连接到标准的50Ω微同轴电缆,并且需要高电压激励(通常为50 - 100V)。为了在亚毫米导管中实现宽带IVUS,开发了一种定制的模拟前端(AFE)专用集成电路。该AFE采用了具有再生钳位结构的有源限幅器,以使用低电压场效应晶体管安全地承受大电压。在串联和并联配置下对AFE的特性进行表征,结果表明在105MHz的成像带宽上典型信噪比为33.3dB。信噪比受宽分数带宽限制;AFE的本底噪声为2.1nV/√Hz。在325 - 450ns之间测量到脉冲恢复到>230Vpp激励,允许进行近至0.5mm的成像。所展示的设计在亚毫米外形尺寸下实现了比以前的接口放大器更宽的成像分数带宽。从0.8mm、40MHz换能器获得的示例图像显示,对于检测壁厚为0.35mm的模拟动脉内的单个支架支柱具有足够的分辨率。