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二类复合树脂修复体产生的人类前磨牙残余聚合应力。

Residual polymerization stresses in human premolars generated with Class II composite restorations.

作者信息

Ohmori Kaoru, Tasaki Tatsuya, Kimura Saori, Hori Ayaka, Sakaeda Nana, Hanabusa Masao, Yamamoto Takatsugu

机构信息

Department of Operative Dentistry, Tsurumi University School of Dental Medicine, Yokohama, Kanagawa, Japan.

Department of Operative Dentistry, Tsurumi University School of Dental Medicine, Yokohama, Kanagawa, Japan.

出版信息

J Mech Behav Biomed Mater. 2020 Apr;104:103643. doi: 10.1016/j.jmbbm.2020.103643. Epub 2020 Jan 20.

DOI:10.1016/j.jmbbm.2020.103643
PMID:32174402
Abstract

The objective of this study was to assess the influence of filling techniques on residual polymerization stresses in resin composite restorations of the tooth. Flat planes were ground in buccal enamel surfaces of extracted human premolars, followed by preparing Class II cavities. Indentation cracks were introduced in the planes and crack lengths were measured mesio-distally (x-direction) and cervico-incisally (y-direction). Cavities were filled with a resin composite and an adhesive using three methods; one with bulk filling and two with differing incremental filling techniques. The x- and y-tensile stresses were calculated from crack lengths measured repeatedly over 360 min after filling. Elastic modulus and polymerization shrinkage of the composite were also measured. Filling technique and time after fillings were statistically significant only for the y-stress. The incremental techniques generated smaller stresses than the bulk filling. The stresses developed for 60 min after filling, while the modulus and the shrinkage stopped developing within 10 min and 2 min after irradiation, respectively. The incremental technique, in which the proximal portion of the cavity was filled first, was effective in decreasing the residual tensile stress generated by the polymerization of resin composite.

摘要

本研究的目的是评估充填技术对牙齿树脂复合材料修复体中残余聚合应力的影响。在拔除的人类前磨牙的颊面釉质表面磨出平面,然后制备Ⅱ类洞。在平面上引入压痕裂纹,并测量裂纹长度的近远中方向(x方向)和颈切方向(y方向)。用三种方法用树脂复合材料和粘结剂填充窝洞;一种是整块充填,另外两种是不同的分层充填技术。根据充填后360分钟内重复测量的裂纹长度计算x和y拉伸应力。还测量了复合材料的弹性模量和聚合收缩率。充填技术和充填后的时间仅对y应力有统计学意义。分层技术产生的应力比整块充填小。充填后60分钟内应力逐渐发展,而模量和收缩率分别在照射后10分钟和2分钟内停止发展。先填充窝洞近中部分的分层技术可有效降低树脂复合材料聚合产生的残余拉伸应力。

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