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用于连续下颌骨牵张成骨的混合式牵张器。

Hybrid Distractor for Continuous Mandibular Distraction Osteogenesis.

作者信息

Hatefi Shahrokh, Alizargar Javad, Yihun Yimesker, Etemadi Sh Milad, Hsieh Nan-Chen, Abou-El-Hossein Khaled

机构信息

Ultra-High Precision Manufacturing Laboratory, Department of Mechatronics Engineering, Faculty of Engineering, The Built Environment and Technology, Nelson Mandela University, Port Elizabeth 6000, South Africa.

Research Center for Healthcare Industry Innovation, National Taipei University of Nursing and Health Sciences, Taipei City 112, Taiwan.

出版信息

Bioengineering (Basel). 2022 Nov 28;9(12):732. doi: 10.3390/bioengineering9120732.

Abstract

Distraction osteogenesis (DO) is a reconstruction method for repairing bone deficiencies in the oral and maxillofacial area. Manual DO techniques have shown the functionality of the DO method for bone tissue reconstruction. The DO method can improve treatment conditions, as well as the quality of the reconstructed bone, compared with conventional techniques. Recently, continuous DO devices have been proposed to enable an automatic DO process while using a continuous force for moving the bone segment (BS). Animal studies and clinical trials have shown the successful application of continuous distractors in terms of improving DO factors, including rate and rhythm. The continuous DO technique can shorten the treatment time and enhance the quality of the regenerated tissue. However, the developed continuous distractors are yet to be used in human applications. In this study, by combining motor-driven and hydraulic techniques, a hybrid distractor is proposed. The hybrid distractor is capable of generating a continuous distraction force while controlling the position of the BS in a linear vector, with a high positioning accuracy. Results of modelling and experimental study revealed that the proposed hybrid distractor met all required factors for enabling a continuous DO procedure in humans. The proposed distractor is capable of eliminating the drawbacks of exiting techniques in terms of generating and transferring a controlled distraction force to the BS. The wireless control, as well as the small size of the device, makes this device a suitable solution for use in the reconstruction of bone defects in the maxillofacial area in humans.

摘要

牵张成骨术(DO)是一种用于修复口腔颌面部骨缺损的重建方法。手动DO技术已展示了DO方法在骨组织重建方面的功能。与传统技术相比,DO方法可以改善治疗条件以及重建骨的质量。最近,有人提出了连续DO装置,以便在使用连续力移动骨段(BS)时实现自动DO过程。动物研究和临床试验表明,连续牵张器在改善包括速率和节奏在内的DO因素方面得到了成功应用。连续DO技术可以缩短治疗时间并提高再生组织的质量。然而,已开发的连续牵张器尚未应用于人体。在本研究中,通过结合电动和液压技术,提出了一种混合牵张器。该混合牵张器能够在以线性矢量控制BS位置的同时产生连续的牵张力,且定位精度高。建模和实验研究结果表明,所提出的混合牵张器满足在人体中实现连续DO程序的所有要求因素。所提出的牵张器能够消除现有技术在向BS产生和传递可控牵张力方面的缺点。无线控制以及该装置的小尺寸使其成为用于人体颌面部骨缺损重建的合适解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f25d/9774957/0401e2915e22/bioengineering-09-00732-g001.jpg

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