Shattuck D P, Weinshenker M D, Smith S W, von Ramm O T
J Acoust Soc Am. 1984 Apr;75(4):1273-82. doi: 10.1121/1.390734.
The data acquisition rate in medical ultrasonic imaging devices is limited by the acoustic propagation velocity in the tissues. Typically in such machines the image lines are produced sequentially one line per transmitted pulse. A parallel processing scheme has been implemented which enables the data acquisition rate to increase by a factor of four through the simultaneous acquisition of four B-mode image lines from each individual broadened transmit pulse. The higher data rate can be used to increase the image frame rate to produce independent images that can be averaged in the image frame to reduce noise, or to produce a conventional image at standard video frame rates while reducing patient exposure. Alternatively, the field of view can be increased over that of a normal scan without sacrificing frame rate. These advantages are achieved with little reduction in the measured resolution. The design and performance of this device are described. A sample in vivo image is included.
医学超声成像设备中的数据采集速率受组织中声传播速度的限制。通常在这类机器中,图像线是按顺序生成的,每个发射脉冲产生一条线。已经实施了一种并行处理方案,通过从每个单独的加宽发射脉冲中同时采集四条B模式图像线,使数据采集速率提高了四倍。更高的数据速率可用于提高图像帧率,以生成可在图像帧中进行平均以降低噪声的独立图像,或者在降低患者暴露剂量的同时以标准视频帧率生成传统图像。或者,在不牺牲帧率的情况下,可以扩大视野范围超过正常扫描。这些优点在测量分辨率几乎没有降低的情况下得以实现。本文描述了该设备的设计和性能。还包括了一幅体内样本图像。