牙周组织机械感受感从触觉到压感过渡特征的实验研究。

Shika gakuho. Dental science reports Pub Date : 1990-04-01
I Ogumi
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引用次数: 0

摘要

关于牙周组织在口腔功能中的生理意义,已有许多研究。但是,尽管它对口腔功能的重要性已被指出,但对牙周压感信息系统的研究却很少。为了帮助纠正这种情况,作为软性食物质地调查的一个环节,作者试图确定当负荷从很小的负荷逐渐增加到牙齿表面时,压力感是如何被感知的。此外,作者试图澄清牙周组织在触摸感觉和压力感觉之间的小负荷范围内识别初始负荷和次要负荷之间差异的方式。研究对象为10名男性,牙列健全、自然,下颌功能无障碍。为了消除咀嚼肌和下颌关节压力感受器的干扰,选择第一前磨牙作为试验牙。在2个方向上施加小载荷:平行于第一前磨牙垂直轴(垂直)和从舌侧到颊侧平行于咬合平面(水平)。垂直加载时,选择咬合面的中凹点作为加载点。水平加载时选取舌面中点作为加载点。首先,逐渐增加齿面载荷,得到(1)触觉阈值;也就是说,激发触摸感觉所需的最小负载,以及(2)压力感觉的临界值;也就是说,在触觉之后激发压力感所需的最小负荷。每位受试者被要求在体验到被触摸的感觉时按下一个手开关,然后在负荷增加时,触摸感觉转变为压力感觉时再按一次。加载装置安装在一个电应变计中。负载从0 g逐渐增加到60 g,增加速率约为10 g/s。负载波和开关信号同时记录在示波器上。其次,为了确定区分小载荷的能力,在相同的加载装置下,对齿施加初始载荷。这个负荷作为对照。一旦检测到负载,它就会被移除。然后施加二次(测试)负载。受试者被要求说出二次负荷是大于、小于还是等于初始负荷。(摘要删节为400字)
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[Experimental studies on the transitional characteristics from touch sensation to pressure sensation in the mechanoreceptive sensation of periodontium].

Many studies have made on the physiological significance of the periodontium in relation to oral functions. But, although its importance to oral functions has been pointed out, few investigations have been carried out on the periodontal pressoreceptive information system. To help rectify this situation, as a link in investigations of soft-food textures, the author attempted to determine how a sense of pressure was perceived when loads gradually increasing from very small were applied to the tooth surface. In addition, the author attempted to clarify the way the periodontium discerns differences between initial and secondary loadings in a range of small loads between the touch sensation and the pressure sensation. Subjects were 10 males with sound, natural dentition and no disorders in mandibular functions. In order to eliminate intervention from pressoreceptors in the masticatory muscles and the mandibular joints, the upper first premolar was chosen as the test tooth. Small loads were applied in 2 directions: parallel to the first premolar vertical axis (vertical) and from the lingual to the buccal sides parallel to the occlusal plane (horizontal). For vertical loading, the mesial pit on the occlusal surface was chosen as the loading point. The middle point on the lingual surface was chosen as loading point for horizontal loading. First, loading on the tooth surface was gradually increased to obtain (1) threshold value for touch sensation; that is, minimal load required to incite a touch sensation, and (2) critical value for pressure sensation; that is, minimal load required to incite the pressure sensation subsequent to the touch sensation. Each subject was requested to press a hand switch in the moment he experienced the sensation of being touched and then again when, during increases of load, the touch sensation changed to the pressure sensation. The loading device was built into an electric strain gauge. Loads were increased gradually from 0 g to 60 g, with an increase ratio of about 10 g/sec. Loading wave and switching signal were simultaneously recorded on an oscillograph. Second, in order to determine the ability to discriminate small loads, with the same loading device, initial load was applied to the tooth. This load served as control. As soon as the load was sensed, it was removed. Then the secondary (testing) load was applied. Subjects were requested to say whether the secondary load was larger, smaller than or same as the initial one.(ABSTRACT TRUNCATED AT 400 WORDS)

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