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ADMIRE applied to fundamental and harmonic data acquired using a modern clinical platform

机译:ADMIRE适用于使用现代临床平台获取的基本和谐波数据

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Previous studies demonstrated that our aperture domain model image reconstruction (ADMIRE) beamforming algorithm mitigates some common ultrasound imaging artifacts, which may increase ultrasound's clinical utility and reliability. Specifically, ADMIRE can suppress clutter caused by reverberation, off-axis scattering and wavefront aberration. Along with this, we demonstrated that ADMIRE is robust to model-mismatch caused by gross sound speed deviation. These findings suggest that ADMIRE may be an effective tool to provide high quality images in real clinical applications. Many of our previous effort have occurred on research platforms, but it is thought that dedicated clinical systems have better front-end electronics and transducers compared to research oriented platforms. If this is true then it is important to perform in vivo evaluations using the highest quality data possible in order to appropriately characterize (and not overemphasize possible) algorithmic gains. To this end, we modified a Siemens AOUSON SC2000 ultrasound system to capture I/Q channel signals. We acquired channel data using a full synthetic receive sequence. We also acquired channel data in conjunction with pulse inversion sequencing to obtain harmonic images. In this study, we collected data from a tissue-mimicking phantom and a human subject's abdomen and liver. We reconstructed both fundamental and harmonic B-mode images before and after applying ADMIRE. We then measured contrast and contrast-to-noise ratio (CNR). When comparing in vivo images, ADMIRE using low and high degrees of freedom improves contrast by 12.2 ± 2.6 dB and 2.5 ± 0.5 dB, respectively, relative to fundamental delay-and-sum(DAS) B-mode, and boosts contrast by 8.7 ± 3.7 dB and 2.0 ± 0.7 dB, respectively, with harmonic B-mode images.
机译:先前的研究表明,我们的孔径域模型图像重建(ADMIRE)波束成形算法可以减轻一些常见的超声成像伪像,从而可以提高超声的临床效用和可靠性。具体而言,ADMIRE可以抑制混响,离轴散射和波前像差引起的杂波。伴随着这一点,我们证明了ADMIRE对于由总声速偏差引起的模型不匹配具有鲁棒性。这些发现表明,ADMIRE可能是在实际临床应用中提供高质量图像的有效工具。我们以前的许多努力都发生在研究平台上,但是与面向研究的平台相比,人们认为专用的临床系统具有更好的前端电子设备和换能器。如果这是真的,那么重要的是使用尽可能高质量的数据进行体内评估,以恰当地表征(而不是过分强调)算法增益。为此,我们修改了西门子AOUSON SC2000超声系统以捕获I / Q通道信号。我们使用完整的合成接收序列来获取频道数据。我们还结合脉冲反演序列获取了通道数据,以获得谐波图像。在这项研究中,我们从模仿组织的幻像以及人类受试者的腹部和肝脏中收集了数据。在应用ADMIRE之前和之后,我们都重建了基本B模式图像和谐波B模式图像。然后,我们测量了对比度和对比度噪声比(CNR)。在比较体内图像时,相对于基本延迟和(BAS)B模式,使用低和高自由度的ADMIRE分别将对比度提高了12.2±2.6 dB和2.5±0.5 dB,并将对比度提高了8.7±谐波B模式图像分别为3.7 dB和2.0±0.7 dB。

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