用于自动检查牙髓治疗后牙齿硬组织疲劳和破坏缺陷的硬件和软件

IF 0.9 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Physics and Chemistry of Solid State Pub Date : 2023-12-21 DOI:10.15330/pcss.24.4.722-728
B.S. Dzundza, Y. Yavorsky, V.V. Fedoryuk, M.M. Rozhko, U.M. Pisklynets, O.I. Bulbuk
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引用次数: 0

摘要

这项工作开发了加载机的电路工程、设计和软件,用于自动检查牙髓治疗后牙齿硬组织缺陷的疲劳和破坏情况。这项开发的优势在于将模拟咀嚼运动的循环加载方法和对压缩的力效应结合在一个紧凑的小型机箱中,且功耗低、噪音小。由于使用了螺杆传动装置和步进电机,并结合了灵敏的张阻力传感器,因此可以实现 0.1 微米的高精度和高分辨率。在使用玻璃纤维栓和铸造金属桩插入物修复的牙髓治疗牙齿的真实样本上进行了一系列测试。结果表明,由于玻璃纤维栓的弹性模量接近牙本质的弹性模量,因此在缺乏牙齿残余结构的情况下,使用玻璃纤维栓修复上颚门牙和前臼齿的方法具有变形应力分布更均匀的优势。
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Hardware and software for automated examination of defects of hard tissues of teeth after endodontic intervention for fatigue and destruction
The work developed circuit engineering, design and software of the loading machine for automated examination of dental hard tissue defects after endodontics intervention for fatigue and destruction. The advantage of this development is the combination as cyclic loading methods simulating chewing movements and force effects on compression in a compact small-sized case, with low power consumption and small noise level. Thanks to the use of a screw transmission and a stepper motor in combination with a sensitive tensoresistive force sensor, it was possible to achieve high accuracy and resolution of 0.1 microns. A series of tests was conducted on real samples of endodontically treated teeth restored using fiberglass pins and cast metal stump inserts. It is shown that methods of restoring incisors and premolars of the upper jaw with the help of fiberglass pins have an advantage when the residual structure of the tooth is lacking due to a more uniform distribution of deformation stresses, since their elastic modulus is close to the elastic modulus of dentin.
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来源期刊
CiteScore
1.70
自引率
14.30%
发文量
83
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