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首页> 外文期刊>Tissue engineering, Part C. Methods >Preprocessing of Medical Image Data for Three-Dimensional Bioprinted Customized-Neural-Scaffolds
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Preprocessing of Medical Image Data for Three-Dimensional Bioprinted Customized-Neural-Scaffolds

机译:用于三维生物制版定制 - 神经支架的医学图像数据的预处理

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Despite the promising nerve regeneration research, the lack of a therapeutic scaffold to completely restore neurological function is still ongoing and the demand in providing patients with a successful therapeutic outcome is ever increasing. With the advancements in three-dimensional (3D) bioprinting, custom scaffolds with a predetermined size and shape have been successfully fabricated, which can be utilized in nerve damage regenerative attempts to potentially aid in the regaining of nerve function. With the documented success of graphical processing unit (GPU) implementation utilized for image-guided surgeries of tubular and organ structures, we propose the implementation of known processing methods as a means to drastically decrease the time required to process medical images related to nerve damage. In addition, we further propose that the merging of medical image cropping and 3D printing techniques provides a novel approach for providing patient-specific customized-neural-scaffolds for patients suffering with newly acquired nerve damage. Finally, we provide a proposed schematic that incorporates the implementation of GPUs and 3D printing, which we propose will beneficially decrease the waiting times for medical staff to provide patients with customized neural treatments.
机译:尽管神经再生研究有前景,但缺乏彻底恢复神经功能的治疗脚手架仍在持续,并且对患者提供成功治疗结果的需求是不断增加的。随着三维(3D)生物监测的进步,已经成功地制造了具有预定尺寸和形状的定制支架,其可用于神经损伤再生试图潜在地帮助恢复神经功能。通过针对管状和器官结构的图像引导式手术的图形处理单元(GPU)实现的记录成功,我们提出了已知的处理方法的实施方式,作为一种彻底减少处理与神经损伤相关的医学图像所需时间所需的时间的手段。此外,我们进一步提出了医学图像裁剪和3D印刷技术的合并提供了一种为为患有新获得的神经损伤的患者提供患者特异性定制 - 神经支架的新方法。最后,我们提供了一个拟议的原理图,其中包含GPU和3D打印的实施,我们建议将有利地降低医务人员的等待时间,为患者提供定制的神经治疗患者。

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