首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Use of stereolithographic templates for surgical and prosthodontic implant planning and placement. Part II. A clinical report.
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Use of stereolithographic templates for surgical and prosthodontic implant planning and placement. Part II. A clinical report.

机译:将立体光刻模板用于外科手术和假牙种植体的规划和放置。第二部分临床报告。

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摘要

Eight implants were placed in the posterior part of the mandible using computer-generated stereolithographic templates. Preoperative implant simulation was done on a 3D computer model created by reformatted computerized tomography data. The surgeon and the prosthodontist positioned the simulated implants in the most favorable position addressing all concerns with regard to anatomy, biomechanics, and esthetics. The length and diameter of each implant along with the angulation/collar of abutments required for a screw-retained prosthesis were determined. Stereolithographic templates were then fabricated by incorporating the precise spatial position of the implants within the bone as previously planned during the computer simulation. The templates were fabricated to seat directly on the bone and were stable. The first template was used to complete osteotomies with a 2-mm twist drill followed by the second template for the 3-mm drill. Implants were placed and allowed to integrate for 4 months. After second-stage surgery, the definitive abutments were torqued into place followed by insertion of the definitive screw-retained prostheses. Dimensions of all implants and abutments were the same as planned during the computer simulation.
机译:使用计算机生成的立体光刻模板,将八个植入物放置在下颌骨的后部。术前植入物仿真是在通过重新格式化的计算机断层扫描数据创建的3D计算机模型上完成的。外科医生和假牙医生将模拟植入物置于最有利的位置,以解决与解剖学,生物力学和美学有关的所有问题。确定了每个植入物的长度和直径,以及螺钉固定假体所需的基台的角度/轴环。然后,通过按照计算机模拟过程中先前计划的方法,将植入物在骨内的精确空间位置并入,即可制作立体光刻模板。模板被制作为直接位于骨骼上并且稳定。第一个模板用于通过2毫米麻花钻完成截骨术,然后第二个模板用于3毫米钻。放置植入物并使其融合4个月。在第二阶段手术后,将确定的基台拧紧到位,然后插入确定的螺钉固定假体。所有植入物和基台的尺寸与计算机模拟期间所计划的相同。

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