Lang Lisa A, Sierraalta Marianella, Hoffensperger Matthew, Wang Rui-Feng
Department of Restorative Dentistry, Division of Prosthodontics, University of Colorado Health Sciences Center, Denver, Colorado, USA.
Int J Oral Maxillofac Implants. 2003 Sep-Oct;18(5):652-8.
It has been suggested that the CAD/CAM Procera custom abutment may be universally applied with multiple implant systems. An acceptable fit between the internal hexagon of an abutment and the external hexagon of various implant systems, along with true interchangeability of the Procera abutment screw, would support this concept. This study determined the precision of fit of the CAD/CAM-produced Procera abutment onto the external hexagon and bearing surfaces of implants from 6 implant manufacturers and the interchangeability of the Procera abutment screw with these systems.
This investigation consisted of 3 parts: (1) direct measurement of the internal hexagon and bearing surface of each Procera abutment and the external hexagon and the bearing surface of 6 implants from 6 different systems, (2) radiographic examination of 30 Procera abutment-implant junctions following tightening to 32 Ncm to determine the precision of fit between the bearing surfaces and the top of the external hexagon of the implant with the superior surface of the internal hexagon of the abutment, and (3) examination of 3 abutment screws and 3 implants from the various manufacturers for interchangeability based on American National Standards.
The mean flat-to-flat external hexagons of the implants measured between 2.67 and 2.69 mm. The Procera abutment's flat-to-flat internal hexagon measured 2.73 mm. The height of the various implant systems' external hexagon ranged from 0.69 to 0.81 mm. The height of the Procera abutment blanks was 0.90 mm. Radiographic examination demonstrated that not all of the manufacturers' screws fit appropriately within the internal screw bore of the Procera abutment. The internal bore of all implant systems studied had a metric thread designation of M2 x 0.4 - 6H. The metric thread designation of all abutment screws examined was M2 x 0.4 - 6g. The greatest variations in the dimensions of the abutment screws measured were seen in the diameter of the screw head, which ranged from 2.12 to 2.69 mm.
The Procera abutment's internal hexagon fit the external hexagon of all implant systems evaluated. The Procera abutment screw fit the internal screw bore of the implant systems tested.
The Procera abutment with its screw can be universally applied to the implant systems studied. This fact, plus the CAD/CAM feature of this system, would thus provide a dynamic approach to satisfying the design and spatial needs of implant placements observed clinically.
有人提出CAD/CAM Procera定制基台可普遍应用于多种种植系统。基台内部六边形与各种种植系统外部六边形之间的可接受配合,以及Procera基台螺钉的真正互换性,将支持这一概念。本研究确定了CAD/CAM制作的Procera基台与6家种植体制造商的种植体外部六边形和承载面的配合精度,以及Procera基台螺钉与这些系统的互换性。
本研究包括3个部分:(1)直接测量每个Procera基台的内部六边形和承载面以及来自6个不同系统的6种植体的外部六边形和承载面;(2)在拧紧至32 Ncm后,对30个Procera基台-种植体连接进行X线检查,以确定种植体承载面与外部六边形顶部与基台内部六边形上表面之间的配合精度;(3)根据美国国家标准,检查来自不同制造商的3个基台螺钉和3种植体的互换性。
种植体的外部六边形平面到平面的平均尺寸在2.67至2.69 mm之间。Procera基台的内部六边形平面到平面尺寸为2.73 mm。各种种植系统外部六边形的高度在0.69至0.81 mm之间。Procera基台毛坯的高度为0.90 mm。X线检查表明,并非所有制造商的螺钉都能合适地安装在Procera基台的内部螺孔中。所有研究的种植系统的内孔均有M2×0.4 - 6H的公制螺纹规格。所有检查的基台螺钉的公制螺纹规格为M2×0.4 - 6g。测量的基台螺钉尺寸变化最大的是螺钉头部直径,范围为2.12至2.69 mm。
Procera基台的内部六边形与所有评估的种植系统的外部六边形相匹配。Procera基台螺钉与测试的种植系统的内部螺孔相匹配。
Procera基台及其螺钉可普遍应用于所研究的种植系统。这一事实,加上该系统的CAD/CAM特性,将为满足临床上观察到的种植体植入的设计和空间需求提供一种动态方法。