Chen Thomas Kuiran, Thurston Adrian D, Ellis Randy E, Abolmaesumi Purang
School of Computing, Queen's University, Kingston, Canada.
Ultrasound Med Biol. 2009 Jan;35(1):79-93. doi: 10.1016/j.ultrasmedbio.2008.07.004. Epub 2008 Oct 2.
This article describes a fully automatic, real-time, freehand ultrasound calibration system. The system was designed to be simple and sterilizable, intended for operating-room usage. The calibration system employed an automatic-error-retrieval and accuracy-control mechanism based on a set of ground-truth data. Extensive validations were conducted on a data set of 10,000 images in 50 independent calibration trials to thoroughly investigate the accuracy, robustness, and performance of the calibration system. On average, the calibration accuracy (measured in three-dimensional reconstruction error against a known ground truth) of all 50 trials was 0.66 mm. In addition, the calibration errors converged to submillimeter in 98% of all trials within 12.5 s on average. Overall, the calibration system was able to consistently, efficiently and robustly achieve high calibration accuracy with real-time performance.
本文介绍了一种全自动、实时、徒手超声校准系统。该系统设计得简单且可消毒,适用于手术室使用。校准系统采用了基于一组真实数据的自动误差检索和精度控制机制。在50次独立校准试验中的10000幅图像数据集上进行了广泛验证,以全面研究校准系统的准确性、鲁棒性和性能。平均而言,所有50次试验的校准精度(以相对于已知真实情况的三维重建误差衡量)为0.66毫米。此外,在所有试验中,98%的试验校准误差平均在12.5秒内收敛到亚毫米级。总体而言,该校准系统能够始终如一地、高效且稳健地实现具有实时性能的高校准精度。