DMC R&D Center, Samsung Electronics, Yeongtong-gu, Suwon-si, Korea.
IEEE Trans Biomed Eng. 2012 Apr;59(4):1145-54. doi: 10.1109/TBME.2012.2185825. Epub 2012 Jan 24.
In dental implantology and virtual dental surgery planning using computed tomography (CT) images, the examination of the axes of neighboring and/or biting teeth is important to improve the performance of the masticatory system as well as the aesthetic beauty. However, due to its high connectivity to neighboring teeth and jawbones, a tooth and/or its axis is very elusive to automatically identify in dental CT images. This paper presents a novel method of automatically calculating individual teeth axes. The planes separating the individual teeth are automatically calculated using cost profile analysis along the teeth center arch. In this calculation, a novel plane cost function, which considers the intensity and the gradient, is proposed to favor the teeth separation planes crossing the teeth interstice and suppress the possible inappropriately detected separation planes crossing the soft pulp. The soft pulp and dentine of each individually separated tooth are then segmented by a fast marching method with two newly proposed speed functions considering their own specific anatomical characteristics. The axis of each tooth is finally calculated using principal component analysis on the segmented soft pulp and dentine. In experimental results using 20 clinical datasets, the average angle and minimum distance differences between the teeth axes manually specified by two dentists and automatically calculated by the proposed method were 1.94° ± 0.61° and 1.13 ± 0.56 mm, respectively. The proposed method identified the individual teeth axes accurately, demonstrating that it can give dentists substantial assistance during dental surgery such as dental implant placement and orthognathic surgery.
在口腔种植学和使用计算机断层扫描 (CT) 图像的虚拟牙科手术规划中,检查相邻和/或咬合牙齿的轴对于提高咀嚼系统的性能以及美观度非常重要。然而,由于牙齿与相邻牙齿和颌骨的高度连接,牙齿及其轴在牙科 CT 图像中很难自动识别。本文提出了一种自动计算单个牙齿轴的新方法。使用沿牙齿中心弓的成本剖面分析自动计算分离单个牙齿的平面。在这种计算中,提出了一种新的平面成本函数,该函数考虑了强度和梯度,有利于穿过牙齿间隙的牙齿分离平面,并抑制可能不恰当地检测到穿过软牙髓的分离平面。然后使用快速行进法通过两个新提出的速度函数对每个单独分离的牙齿的软牙髓和牙本质进行分割,这些速度函数考虑了它们各自的特定解剖特征。最后,使用主成分分析对分割的软牙髓和牙本质计算每个牙齿的轴。在使用 20 个临床数据集进行的实验结果中,由两位牙医手动指定的牙齿轴和由所提出的方法自动计算的牙齿轴之间的平均角度和最小距离差异分别为 1.94°±0.61°和 1.13±0.56mm。该方法准确地识别了单个牙齿的轴,表明它可以在牙科手术(如种植牙放置和正颌手术)中为牙医提供实质性的帮助。