Department of Biomedical Engineering, Tsinghua University, Beijing, 10084, China.
Research Center for Biomedical Engineering of Graduate School at Shenzhen, Tsinghua University, Shenzhen, 518055, China.
Int J Comput Assist Radiol Surg. 2017 Mar;12(3):379-388. doi: 10.1007/s11548-016-1497-x. Epub 2016 Nov 16.
The human colon has complex geometric structures because of its haustral folds, which are thin flat protrusions on the colon wall. The haustral loop is the curve (approximately triangular in shape) that encircles the highly convex region of the haustral fold, and is regarded as the natural landmark of the colon, intersecting the longitude of the colon in the middle. Haustral loop extraction can assist in reducing the structural complexity of the colon, and the loops can also serve as anatomic markers for computed tomographic colonography (CTC). Moreover, haustral loop sectioning of the colon can help with the performance of precise prone-supine registration.
We propose an accurate approach of extracting haustral loops for CT virtual colonoscopy based on geodesics. First, the longitudinal geodesic (LG) connecting the start and end points is tracked by the geodesic method and the colon is cut along the LG. Second, key points are extracted from the LG, after which paired points that are used for seeking the potential haustral loops are calculated according to the key points. Next, for each paired point, the shortest distance (geodesic line) between the paired points twice is calculated, namely one on the original surface and the other on the cut surface. Then, the two geodesics are combined to form a potential haustral loop. Finally, erroneous and nonstandard potential loops are removed.
To evaluate the haustral loop extraction algorithm, we first utilized the algorithm to extract the haustral loops. Then, we let the clinicians determine whether the haustral loops were correct and then identify the missing haustral loops. The extraction algorithm successfully detected 91.87% of all of the haustral loops with a very low false positive rate.
We believe that haustral loop extraction may benefit many post-procedures in CTC, such as supine-prone registration, computer-aided diagnosis, and taenia coli extraction.
由于结肠的皱襞是结肠壁上的薄而平坦的突起,因此其具有复杂的几何结构。皱襞环是环绕皱襞高度凸起区域的曲线(大致呈三角形),被认为是结肠的自然标志,与结肠的经度在中间相交。提取皱襞环有助于降低结肠的结构复杂性,并且这些环还可以作为 CT 结肠成像(CTC)的解剖标记。此外,结肠的皱襞分段有助于实现精确的仰卧位-俯卧位配准。
我们提出了一种基于测地线的 CT 虚拟结肠镜检查中提取皱襞环的精确方法。首先,通过测地线方法跟踪连接起始点和终点的纵向测地线(LG),并沿 LG 对结肠进行切割。其次,从 LG 中提取关键点,然后根据关键点计算用于寻找潜在皱襞环的配对点。接下来,对于每个配对点,计算配对点两次之间的最短距离(测地线),即原始表面上的一个和切割表面上的一个。然后,将两条测地线组合形成潜在的皱襞环。最后,去除错误和非标准的潜在环。
为了评估皱襞环提取算法,我们首先利用该算法提取皱襞环。然后,我们让临床医生判断皱襞环是否正确,并识别缺失的皱襞环。提取算法成功检测到 91.87%的所有皱襞环,假阳性率非常低。
我们相信皱襞环提取可能有益于 CTC 的许多后处理步骤,例如仰卧位-俯卧位配准、计算机辅助诊断和带绦虫提取。