Hilgers Michael L, Scarfe William C, Scheetz James P, Farman Allan G
University of Louisville School of Dentistry, 501 S. Preston Street, Louisville, KY 40292, USA.
Am J Orthod Dentofacial Orthop. 2005 Dec;128(6):803-11. doi: 10.1016/j.ajodo.2005.08.034.
Cone beam computed tomography (CBCT) is making headway into imaging for orthodontics. The purpose of this study was to define CBCT multi-planar reformatted projections for temporomandibular joint (TMJ) examination and compare the accuracy of linear measurements of the TMJ and related structures from these projections with similar measurements made with conventional cephalograms and with the anatomic truth.
Linear dimensions between 11 anatomical sites were measured with a digital caliper to assess the anatomic truth for 25 dry human skulls. The skulls were imaged with iCAT (Xoran Technologies, Ann Arbor, Mich/Imaging Sciences International, Hatfield, Pa) CBCT, and cephalograms were made in all 3 orthogonal planes (lateral cephalometric [LC], posteroanterior [PA], and submentovertex [SMV]) acquired with photostimulable phosphor plates. Linear measurements were made on 7 custom CBCT reconstructions and the digital cephalograms. Modality means and the natural log of the standard deviations were compared post hoc against the actual dimensions by using analysis of variance with the Dunnett t test. Significance was set at P < .05.
All CBCT measurements were accurate; however, 3 of 5 LC measurements, 4 of 5 PA measurements, and 4 of 6 SMV measurements varied significantly from the truth. Intraobserver CBCT measurements were highly reliable compared with anatomic truth and significantly more reliable than measurements made from LC, PA, and SMV images.
Custom oblique multi-planar reformatted reconstructions with iCAT CBCT provide accurate and reliable linear measurements of mandibular and TMJ dimensions.
锥形束计算机断层扫描(CBCT)在正畸成像领域正取得进展。本研究的目的是定义用于颞下颌关节(TMJ)检查的CBCT多平面重组投影,并将这些投影中TMJ及相关结构的线性测量准确性与传统头颅侧位片及解剖实物的类似测量结果进行比较。
使用数字卡尺测量25个干燥人类头骨11个解剖部位之间的线性尺寸,以评估解剖实物情况。对头骨进行iCAT(Xoran Technologies公司,密歇根州安阿伯市/Imaging Sciences International公司,宾夕法尼亚州哈特菲尔德市)CBCT成像,并使用光激励荧光板在所有3个正交平面(头颅侧位[LC]、正位[PA]和颏顶位[SMV])制作头颅侧位片。在7个定制的CBCT重建图像和数字头颅侧位片上进行线性测量。使用方差分析和Dunnett t检验,将各检查方法的均值和标准差的自然对数与实际尺寸进行事后比较。显著性设定为P <.05。
所有CBCT测量结果均准确;然而,5个LC测量值中的3个、5个PA测量值中的4个以及6个SMV测量值中的4个与实际情况有显著差异。与解剖实物相比,观察者内部CBCT测量结果高度可靠,且比从LC、PA和SMV图像进行的测量更可靠。
使用iCAT CBCT进行定制的斜多平面重组重建可提供下颌骨和TMJ尺寸准确且可靠的线性测量结果。