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Development of a portable 3D ultrasound imaging system for musculoskeletal tissues

机译:肌肉骨骼组织便携式3D超声成像系统的开发

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摘要

3D ultrasound is a promising imaging modality for clinical diagnosis and treatment monitoring. Its cost is relatively low in comparison with CT and MRI, no intensive training and radiation protection is required for its operation, and its hardware is movable and can potentially be portable. In this study, we developed a portable freehand 3D ultrasound imaging system for the assessment of musculoskeletal body parts. A portable ultrasound scanner was used to obtain real-time B-mode ultrasound images of musculoskeletal tissues and an electromagnetic spatial sensor was fixed on the ultrasound probe to acquire the position and orientation of the images. The images were digitized with a video digitization device and displayed with its orientation and position synchronized in real-time with the data obtained by the spatial sensor. A program was developed for volume reconstruction, visualization, segmentation and measurement using Visual C++ and Visualization toolkits (VTK) software. A 2D Gaussian filter and a Median filter were implemented to improve the quality of the B-scan images collected by the portable ultrasound scanner. An improved distance-weighted grid-mapping algorithm was proposed for volume reconstruction. Temporal calibrations were conducted to correct the delay between the collections of images and spatial data. Spatial calibrations were performed using a cross-wire phantom. The system accuracy was validated by one cylinder and two cuboid phantoms made of silicone. The average errors for distance measurement in three orthogonal directions in comparison with micrometer measurement were 0.06 ± 0.39, −0.27 ± 0.27, and 0.33 ± 0.39 mm, respectively. The average error for volume measurement was −0.18% ± 5.44% for the three phantoms. The system has been successfully used to obtain the volume images of a fetus phantom, the fingers and forearms of human subjects. For a typical volume with 126 × 103 × 109 voxels, the 3D image could be reconstructed from 258 B-scans (640 × 480 pixels) within one minute using a portable PC with Pentium IV 2.4 GHz CPU and 512 MB memories. It is believed that such a portable volume imaging system will have many applications in the assessment of musculoskeletal tissues because of its easy accessibility.
机译:3D超声是用于临床诊断和治疗监测的有前途的成像方式。与CT和MRI相比,它的成本相对较低,其操作不需要强化培训和辐射防护,并且其硬件是可移动的,并且可能是便携式的。在这项研究中,我们开发了一种便携式徒手3D超声成像系统,用于评估肌肉骨骼部位。使用便携式超声扫描仪获取肌肉骨骼组织的实时B型超声图像,并将电磁空间传感器固定在超声探头上以获取图像的位置和方向。用视频数字化设备将图像数字化,并显示其方向和位置与空间传感器获得的数据实时同步。使用Visual C ++和可视化工具包(VTK)软件开发了用于体积重建,可视化,分段和测量的程序。实施了2D高斯滤波器和中值滤波器,以提高便携式超声扫描仪收集的B扫描图像的质量。提出了一种改进的距离加权网格映射算法。进行时间校准以校正图像和空间数据收集之间的延迟。使用十字线幻象进行空间校准。一个圆柱体和两个硅胶制长方体模型验证了系统的准确性。与千分尺测量相比,三个正交方向上距离测量的平均误差分别为0.06±0.39,-0.27±0.27和0.33±0.39 mm。三个体模的体积测量平均误差为-0.18%±5.44%。该系统已成功用于获取人体模型的胎儿体模,手指和前臂的体像。对于具有126×103×109体素的典型体积,可以使用配备Pentium IV 2.4 GHz CPU和512 MB内存的便携式PC在1分钟内从258次B扫描(640×480像素)重建3D图像。相信这样的便携式体成像系统由于其易于接近而将在肌肉骨骼组织的评估中具有许多应用。

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