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数字化关节动度描记系统评估矢状髁突倾斜度的准确性:初步临床研究

Preliminary clinical study of the accuracy of a digital axiographic recording system for the assessment of sagittal condylar inclination.

机构信息

Department of Translational Medicine and for Romagna, University of Ferrara, Italy.

University of Ferrara, Ferrara, Italy.

出版信息

J Dent. 2023 Aug;135:104583. doi: 10.1016/j.jdent.2023.104583. Epub 2023 Jun 17.

Abstract

OBJECTIVES

The aim of this study was to clinically evaluate the accuracy of a digital axiographic recording system in tracing the sagittal condylar inclination.

METHODS

An axiographic examination that records the sagittal condylar path during protrusive/retrusive movement was performed on ten patients. Each subject was registered five different times by two different systems: 1) the Cadiax Gamma Diagnostic 4 computerized system as the control; 2) the Zebris Jaw Motion Analyser+  Optic System as the tested digital axiographic recording system. The records obtained allow to calculate the kinematic terminal transverse horizontal axis and the sagittal condylar inclination (SCI) at 3 and 5 mm along the pro-retrusive path. A linear mixed model was used to analyze if there was a statistically significant difference between the two systems.

RESULTS

The mean left SCI value recorded by Zebris system were 49.81 ± 10.64° at 3 mm, 48.10 ± 11.04° at 5 mm, while the values recorded by Gamma system were 55.16° at 3 mm, 52.18° at 5 mm. The mean right SCI value recorded by Zebris system were 54.53 ± 10.26° at 3 mm, 51.85 ± 8.55° at 5 mm, while the values recorded by Gamma system were 49.68° at 3 mm, 48.23° at 5 mm. Linear mixed model showed no significant statistical difference between the two systems.

CONCLUSIONS

Based on preliminary results, the Zebris Jaw Motion Analyzer+ Optic System demonstrates comparable accuracy to the Cadiax Gamma Diagnostic 4 when measuring sagittal condylar inclination.

CLINICAL SIGNIFICANCE

The digital axiographic recording system enables to evaluate sagittal condylar inclination and to adjust virtual articulators in a digital workflow.

摘要

目的

本研究旨在临床评估数字化下颌轨迹描记系统追踪矢状髁突倾斜度的准确性。

方法

对 10 名患者进行了记录前伸/后退运动时矢状髁突轨迹的下颌轨迹描记检查。每位患者由两种不同的系统注册 5 次:1)Cadiax Gamma Diagnostic 4 计算机系统作为对照;2)Zebris Jaw Motion Analyser+Optic System 作为测试的数字化下颌轨迹描记系统。记录的结果允许计算运动学末端横向水平轴和在沿前伸/后退路径 3 和 5mm 处的矢状髁突倾斜度(SCI)。使用线性混合模型分析两个系统之间是否存在统计学上的显著差异。

结果

Zebris 系统记录的左侧 SCI 值平均值分别为 3mm 处 49.81±10.64°,5mm 处 48.10±11.04°,而 Gamma 系统记录的 SCI 值平均值分别为 3mm 处 55.16°,5mm 处 52.18°。Zebris 系统记录的右侧 SCI 值平均值分别为 3mm 处 54.53±10.26°,5mm 处 51.85±8.55°,而 Gamma 系统记录的 SCI 值平均值分别为 3mm 处 49.68°,5mm 处 48.23°。线性混合模型显示两个系统之间没有统计学上的显著差异。

结论

基于初步结果,Zebris Jaw Motion Analyzer+Optic 系统在测量矢状髁突倾斜度时显示出与 Cadiax Gamma Diagnostic 4 相当的准确性。

临床意义

数字化下颌轨迹描记系统能够评估矢状髁突倾斜度,并在数字化工作流程中调整虚拟牙合架。

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