Occlusion: Supporting and Pacing Force Distribution

S. Minagi, Y. Kinuta, J. Sejima, T. Hara, G. Nishigawa, Y. Maruo, T. Arima, K. Oki, M. Oka, K. Hasegawa, N. Kodama, Chie Shimazu-Kodama, M. Suwaki, Y. Torii, H. Shirai
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Abstract

One of the prominent roles of the occlusion would be to support the force balance wobbling in stomatognathic system, thus pacing and minimizing the change of force distribution with age. Patient's demands on the prosthetic treatment have been becoming higher and more complicated during the past several decades. These demands include not only the precise restoration of the decayed tooth but also the treatment to provide stable and comfortable state of the stomatognathic system in the longer term. These demands would deeply be related to ; 1) How to finalize the information on temporary or treatment prosthesis, which has the resulted shape of the precise functional adjustment, on the final prosthesis, and 2) How to cope with the persistent complaints regarding tooth, tongue and other related sensations. In these aspects, patient's subjectivity and/or esthesis might need to be satisfied with the form and/or function of the resulted prosthesis. The clinical difficulties might be related to the following two points, which are 1) the accuracy of the reproduction procedure from the treatment prosthesis to the final one and 2) stability of the mandibular position or the condylar position which support the functional basis for the prosthesis. In order to cope with the complicated requirements, we have been using double-casting method for providing cast restorations. This is a method to produce a cast restoration in two functional parts. The first casting step consists of a base-crown which covers the abutment tooth and adjacent proximal contact point(s). The second step is the molding of the functionally required occlusal form onto the base-crown. The third step is the metal casting onto the base-crown replacing the molded portion. This method could be applied in various situations where we are forced to match the function and the form. The purpose of this paper is to provide a good orientation to the double-casting method and also to discuss the concept that might pace and minimize the change of force distribution in stomatognathic system.
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闭塞:支撑力和起搏力分布
咬合的一个重要作用是支持口颌系统的力平衡摆动,从而调节和减少力分布随年龄的变化。近几十年来,患者对假肢治疗的要求越来越高,也越来越复杂。这些要求不仅包括对蛀牙的精确修复,还包括长期提供稳定舒适的口颌系统的治疗。这些要求将与;1)如何最终确定临时或治疗性假体的信息,这些信息已经形成了精确的功能调整的形状,以及2)如何应对牙齿,舌头和其他相关感觉的持续抱怨。在这些方面,患者的主观性和/或审美可能需要对最终假体的形式和/或功能感到满意。临床困难可能与以下两点有关:1)从治疗假体到最终假体的复制过程的准确性;2)支持假体功能基础的下颌位置或髁位置的稳定性。为了应对复杂的要求,我们一直采用双铸造方法提供铸造修复体。这是一种产生两个功能部分的铸造修复的方法。第一步铸造包括一个覆盖基牙和邻近近端接触点的基冠。第二步是将功能所需的咬合形式成型到基冠上。第三步是金属铸造到基冠取代模塑部分。这种方法可以应用于我们必须匹配函数和表单的各种情况。本文的目的是为双铸造法提供一个良好的定位,并探讨可以减缓和减少口腔颌系统中力分布变化的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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