具有旋转插入路径的卡扣系统。2. 无牙间隙中、远端距离与固位力的关系。

T Yamaga, M Uji, W Chikagawa, T Nokubi, Y Okuno
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引用次数: 0

摘要

旋转插入路径与常规路径或垂直插入路径有本质上的不同。使用旋转路径,首先固定局部义齿的一部分,然后将其其余部分旋转到位。该系统的一部分是具有长咬合休息的刚性固位部件,另一部分是传统的卡环。本研究考察了无牙间隙中、远端距离、位移力点、刚性固位构件的侧切和基牙的倾斜度对该系统固位的影响。结果表明:1)中、远端距离、无牙间隙分别为10、20、30 mm时,在常规卡环部分施加位移力时,义齿固位最小。3)当刚性固位体近端侧切槽分别为2.0、1.5、1.0和0.5 mm时,固位呈逐渐减少的趋势。固位力的下降比例与中、远端无牙间隙的远近无关。4)在刚性固位体侧使用倾斜牙作为基牙,可改善义齿固位。
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Clasping system with rotational path of insertion. 2. Relation between mesio-distal distance of edentulous space and retentive force.

The rotational path of insertion differs substantially from the conventional path or perpendicular path of insertion. With a rotational path, one segment of the partial denture is seated first, then the remainder of it is rotated into position. One segment of this system is the rigid retentive component with a long occlusal rest and the other is the conventional clasp. This study examined the influence of mesio-distal distance of the edentulous space, the point of the displacing force, the undercut of rigid retentive component and the inclination of the abutment tooth on the retention of this system. The following results were obtained: 1) Retention of the denture was the lowest when a displacing force was applied at the conventional clasp part under the conditions of mesio-distal distances with edentulous spaces of 10, 20 and 30 mm, respectively. 3) Retention showed a tendency to decrease progressively as the proximal undercut on the rigid retentive component was changed to 2.0, 1.5, 1.0 and 0.5 mm, respectively. The values of the decreasing ratio of retentive forces were almost the same regardless of the mesio-distal distance of the edentulous space. 4) Retention of the denture was improved when a tilted tooth was used as an abutment tooth on the rigid retentive component side.

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