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A high-frame rate duplex ultrasound biomicroscopy for small animal imaging in vivo

机译:用于体内小动物成像的高帧频双工超声生物显微镜

摘要

Much of the current knowledge of human cardiovascular pathologies and treatment strategies has been gained from understanding the cardiac physiologies and functions in small animal models, such as mice, rats, and zebraflsh. In this paper, we present the development of a high-frame-rate duplex ultrasound biomicroscopy (UBM) capable of B-mode imaging and pulsed-wave (PW) Doppler measurement for in vivo cardiovascular investigation in small animals. A frame rate of 200 frames per second (fps) was accomplished at a view of 5 mm times 8 mm, using a novel highspeed sector probe and specially designed lightweight transducers. In a reduced lateral view of 1.2 mm, a frame rate of 400 fps was achieved to examine more detailed cardiac motion. The UBM utilized transducers with different center frequencies (40-75 MHz) and geometries, which made it useful for various applications in small animal cardiac imaging. The highest spatial resolution the UBM achieved was 25 mum times 56 mum. In addition, the image-guided PW Doppler implemented in the UBM demonstrated the detection of the velocity of a moving wire as low as 0.1 mm/s, and flow in a polyimide tube as small as 200 mum in diameter. Furthermore, the UBM achieved a 15-muV minimal detectable signal and a 60-dB dynamic range using a low-cost PCB-based design. Finally, sample in vivo cardiac images of mouse and zebraflsh hearts were given. These results showed that the UBM integrated with B-mode and PW Doppler is useful to investigate the pathophysiological mechanism in the cardiovascular studies.
机译:通过了解小型动物模型(例如小鼠,大鼠和斑马鱼)中的心脏生理特性和功能,已经获得了许多有关人类心血管病理学和治疗策略的当前知识。在本文中,我们介绍了能够对小型动物进行体内心血管检查的B模式成像和脉冲波(PW)多普勒测量的高帧速双工超声生物显微镜(UBM)的开发。使用新颖的高速扇形探头和经过特殊设计的轻型换能器,在5毫米乘以8毫米的视角下可实现每秒200帧(fps)的帧速率。在缩小的1.2毫米侧视图中,可以实现400 fps的帧频以检查更详细的心脏运动。 UBM利用具有不同中心频率(40-75 MHz)和几何形状的换能器,使其可用于小型动物心脏成像的各种应用。 UBM达到的最高空间分辨率是25毫米乘以56毫米。此外,UBM中实施的图像引导PW多普勒技术证明,可检测出移动导线的速度低至0.1 mm / s,并可在直径小于200微米的聚酰亚胺管中流动。此外,UBM使用低成本的基于PCB的设计实现了15μV的最小可检测信号和60dB的动态范围。最后,给出了小鼠和斑马心脏的体内心脏图像样本。这些结果表明,将UBM与B型和PW多普勒结合起来,对于研究心血管研究的病理生理机制非常有用。

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