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用于种植体规划、植入和修复体构建的交互式成像。

Interactive imaging for implant planning, placement, and prosthesis construction.

作者信息

Parel Stephen M, Triplett R Gilbert

机构信息

Center for Maxillofacial Prosthetics, Baylor College of Dentistry, Texas A&M University System Health Science Center, Dallas, USA.

出版信息

J Oral Maxillofac Surg. 2004 Sep;62(9 Suppl 2):41-7. doi: 10.1016/j.joms.2004.05.207.

Abstract

PURPOSE

This review describes a new interactive imaging program that allows computed tomography (CT) images to be used to virtually place dental implants and construct a precise guide splint and final prosthesis for delivery at the time of implant placement.

MATERIALS AND METHODS

Patients with edentulous arches were recruited to participate in a trial program to assess the feasibility of using CT images in a 3-dimensional image-based program (Oralim; Medicine NV, Belgium) for planning and placing dental implants. Patients meeting the criteria received a CT of the appropriate arch using a denture with radiopaque markers indexed to the opposing arch. Acquisition slices of 0.6 mm or less was required. The software allowed precise planning for implant placement after which the planned case was sent to a manufacturing facility for splint and prosthesis construction.

RESULTS

The guide splint and final prosthesis were returned to the clinical site for implant placement. An implant map was provided for each patient showing the diameter and length of the implant and abutments to be used in each predetermined implant site. The surgery was accomplished without a flap, and the prosthesis was delivered immediately. Occlusion required only minor adjustments in all cases, and immediate function was accomplished.

CONCLUSION

Interactive computer imaging can allow precise planning for implant position and the images can be used for guide splint and final prosthetic fabrication prior to surgery. This technology is powerful, easy to use, and is a significant advance in implant dentistry.

摘要

目的

本综述介绍了一种新的交互式成像程序,该程序允许使用计算机断层扫描(CT)图像在虚拟环境中植入牙种植体,并构建精确的导向夹板和最终修复体,以便在种植体植入时交付使用。

材料与方法

招募无牙弓患者参与一项试验项目,以评估在基于三维图像的程序(Oralim;比利时医学NV公司)中使用CT图像来规划和植入牙种植体的可行性。符合标准的患者使用带有与对颌弓相对应的不透射线标记的假牙进行相应牙弓的CT扫描。要求采集层厚为0.6毫米或更小。该软件允许对种植体植入进行精确规划,之后将规划好的病例发送至制造工厂制作夹板和修复体。

结果

导向夹板和最终修复体被送回临床地点用于植入种植体。为每位患者提供了一份种植体图谱,显示每个预定种植部位将使用的种植体及基台的直径和长度。手术在不翻瓣的情况下完成,修复体立即交付使用。在所有病例中,咬合仅需进行 minor 调整,并实现了即刻功能。

结论

交互式计算机成像能够对种植体位置进行精确规划,并且这些图像可在手术前用于导向夹板和最终修复体的制作。这项技术功能强大、易于使用,是牙种植学领域的一项重大进展。

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