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测量牙齿牙尖变形方法的比较。

Comparison of methods for measuring cuspal deformation in teeth.

作者信息

Jantarat J, Panitvisai P, Palamara J E, Messer H H

机构信息

School of Dental Science, The University of Melbourne, 711 Elizabeth Street, Vic. 3000, Melbourne, Australia.

出版信息

J Dent. 2001 Jan;29(1):75-82. doi: 10.1016/s0300-5712(00)00040-3.

Abstract

OBJECTIVES

The aim of this study was to compare two techniques of measuring cuspal deformation under occlusal load: Direct Current Differential Transformers (DCDTs) and strain gauges. The study investigated the relative dependence of the two techniques on the vertical orientation of the tooth in relation to direction of loading and differences in the patterns of change in response to a cavity preparation sequence.

METHODS

Strain gauges and DCDTs were attached to the buccal and lingual surfaces of extracted maxillary premolars and mandibular molars. Premolars were subjected to simulated occlusal loads at varying vertical angulations before and after MOD cavity preparation. Molars were tested at progressive stages of cavity preparation. Cuspal deformation was recorded as linear cusp displacement (in microm, using DCDTs) and as cuspal strains (using strain gauges) and relative stiffness.

RESULTS

Strain gauges were much less sensitive than linear displacement devices to vertical orientation of teeth, and computation of relative stiffness further reduced the effect of angulation. Strain gauges are much easier to use experimentally. DCDTs required precise three-dimensional adjustments for the testing of cuspal deformation. Patterns of change in cuspal flexure following cavity preparation were very different using the two techniques.

CONCLUSIONS

Use of both devices simultaneously yielded much more information than when used alone, and showed that cusps do not deform as simple cantilever beams.

摘要

目的

本研究旨在比较两种在咬合负荷下测量牙尖变形的技术:直流差动变压器(DCDT)和应变片。该研究调查了这两种技术相对于牙齿垂直方向与加载方向的相对依赖性,以及对洞形预备序列反应的变化模式差异。

方法

将应变片和DCDT附着在上颌前磨牙和下颌磨牙的颊面和舌面。在MOD洞形预备前后,使前磨牙在不同垂直角度下承受模拟咬合负荷。在洞形预备的不同阶段对磨牙进行测试。牙尖变形记录为线性牙尖位移(使用DCDT,单位为微米)和牙尖应变(使用应变片)以及相对刚度。

结果

应变片对牙齿垂直方向的敏感性远低于线性位移装置,相对刚度的计算进一步降低了角度的影响。应变片在实验中使用起来要容易得多。DCDT在测试牙尖变形时需要精确的三维调整。使用这两种技术时,洞形预备后牙尖弯曲的变化模式非常不同。

结论

同时使用这两种装置比单独使用时能获得更多信息,并且表明牙尖并非像简单悬臂梁那样变形。

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