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首页> 外文期刊>Journal of Medical Devices >Automating Skeletal Expansion: An Implant for Distraction Osteogenesis of the Mandible
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Automating Skeletal Expansion: An Implant for Distraction Osteogenesis of the Mandible

机译:自动化骨骼膨胀:用于分散颌骨的分支骨质植入物

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摘要

Distraction osteogenesis is a technique of bone lengthening that makes use of the body's natural healing capacity. An osteotomy is created, and a rigid distraction device is attached to the bone. After a latency period, the device is activated two to four times per day for a total of 1 mm/day of bone lengthening. This technique is used to correct a variety of congenital and acquired deformities of the mandible, midface, and long bones. To shorten the treatment period and to eliminate the complications of patient activation of the device, an automated continuous distraction device would be desirable. It has been reported that continuous distraction generates adequate bone with lengthening at a rate of 2 mm/day, thereby reducing the treatment time. The device we describe here uses miniature high-pressure hydraulics, position feedback, and a digital controller to achieve closed-loop control of the distraction process. The implanted actuator can produce up to 40 N of distraction force on linear trajectories as well as curved distraction paths. In this paper we detail the spring-powered hydraulic reservoir, controller, and user interface. Experiments to test the new device design were performed in a porcine cadaver head and in live pigs. In the cadaver head, the device performed an 11 day/11 mm distraction with a root-mean-squared position error of 0.09 mm. The device functioned for periods of several days in each of five live animals, though some component failures occurred, leading to design revisions. The test series showed that the novel design of this system provides the capabilities necessary to automate distraction of the mandible. Further developments will focus on making the implanted position sensor more robust and then on carrying out clinical trials.
机译:牵引骨质发生是一种骨延长的技术,可以利用身体的自然愈合能力。产生截骨术,并且刚性分散装置附着在骨骼上。在延迟时段之后,该装置每天激活两到四次,总共1毫米/天的骨延长。该技术用于校正颌下,中面和长骨的各种先天性和获得的畸形。为了缩短治疗期并消除器件的患者激活的并发症,将是可取的自动持续牵引装置。据报道,连续分心产生足够的骨,以2mm /天的速度延长,从而减少治疗时间。我们在此描述的设备使用微型高压液压,位置反馈和数字控制器来实现分散过程的闭环控制。植入的致动器可以在线性轨迹以及弯曲的分散路径上产生高达40 n的分心力。在本文中,我们详细介绍了弹簧动力液压储层,控制器和用户界面。测试新设备设计的实验在猪尸体头和活猪中进行。在尸体头中,该器件的分散注意到11天/ 11mm,具有0.09mm的根平均方位误差。这些设备在五种活体动物中的每一个中运行的时间,尽管发生了一些组件故障,导致设计修订。测试系列表明,该系统的新颖设计提供了自动化下颌骨分心所需的能力。进一步的发展将集中于使植入位置传感器更加强大,然后进行临床试验。

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