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Transducer Motion Estimation Using Combined Ultrasound Signal Decorrelation and Optical Sensor Data for Low-cost Ultrasound Systems with Increased Field of View

机译:使用组合超声信号去相关和光学传感器数据进行低成本超声系统的传感器运动估计,具有增加的视野

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Transducer motion estimation can be used to synthesize 3D ultrasound images from multiple B-mode (2D) images. This enables intuitive ultrasound volume imaging using low-channel count systems with reduced transducer complexity, power consumption and beamforming computational load. However, it is difficult to accurately and precisely track transducer motion in three dimensions. In this paper, we investigate combining motion estimates from optical tracking and ultrasound decorrelation measurements, to produce an improved composite estimate. Individual modality and combined tracking performance is evaluated using mechanical (i.e. motion stage) and freehand scanning. A lumbar-region spine phantom was used as a target, in a speckle background, with overlaid porcine tissue to simulate skin texture and provide realistic phase aberration. Results indicate that for this system, decorrelation tracking is accurate for elevational displacements up to 1mm, with errors of < 0.07 mm. Optical tracking maintains errors < 0.07 mm for displacements up to 3mm. Unfortunately, the presence of ultrasound gel introduces a significant measurement bias, -0.129 mm for a 1mm translation. A combined estimate mitigates this effect, reducing the 1 mm translation estimation error to < 0.07 mm. Using combined motion estimates, we show it is possible make useful 3D images using a B-mode transducer system.
机译:换能器的运动估计可用于合成来自多个B模式(2D)图像的3D超声图像。这使得能够直观的超声容积使用低通道计数系统具有降低的换能器的复杂性,功率消耗和波束形成的计算负荷成像。然而,很难精确地且精确地跟踪在三维换能器的运动。在本文中,我们调查运动估计从光学追踪和超声去相关的测量相结合,以产生一种改进的复合估计。个人模态和组合的跟踪性能是使用机械(即运动阶段)和徒手扫描评价。甲腰部区域脊柱幻象被用作靶,在一个斑点的背景下,以重叠的猪组织,以模拟的皮肤纹理,提供逼真的相位像差。结果表明,对于该系统中,去相关是跟踪准确的正视位移最多1mm,同的<0.07毫米错误。光学跟踪保持失误<0.07毫米为位移达3mm。不幸的是,超声凝胶的存在引入了显著测量偏差,-0.129毫米为1mm的翻译。组合估计减轻该效果,减少1mm的翻译估计误差为<0.07毫米。使用相结合的运动估计,我们展示它是使用B型传感器系统可能做出有用的3D图像。

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