首页> 外文期刊>BioMed research international >Implantation of 3D-Printed Patient-Specific Aneurysm Models into Cadaveric Specimens: A New Training Paradigm to Allow for Improvements in Cerebrovascular Surgery and Research
【24h】

Implantation of 3D-Printed Patient-Specific Aneurysm Models into Cadaveric Specimens: A New Training Paradigm to Allow for Improvements in Cerebrovascular Surgery and Research

机译:将3D打印的患者特定的动脉瘤模型植入尸体标本:一种新的训练范例,可以改善脑血管外科和研究

获取原文
       

摘要

Aim. To evaluate the feasibility of implanting 3D-printed brain aneurysm model in human cadavers and to assess their utility in neurosurgical research, complex case management/planning, and operative training.Methods. Two 3D-printed aneurysm models, basilar apex and middle cerebral artery, were generated and implanted in four cadaveric specimens. The aneurysms were implanted at the same anatomical region as the modeled patient. Pterional and orbitozygomatic approaches were done on each specimen. The aneurysm implant, manipulation capabilities, and surgical clipping were evaluated.Results. The 3D aneurysm models were successfully implanted to the cadaveric specimens’ arterial circulation in all cases. The features of the neck in terms of flexibility and its relationship with other arterial branches allowed for the practice of surgical maneuvering characteristic to aneurysm clipping. Furthermore, the relationship of the aneurysm dome with the surrounding structures allowed for better understanding of the aneurysmal local mass effect. Noticeably, all of these observations were done in a realistic environment provided by our customized embalming model for neurosurgical simulation.Conclusion. 3D aneurysms models implanted in cadaveric specimens may represent an untapped training method for replicating clip technique; for practicing certain approaches to aneurysms specific to a particular patient; and for improving neurosurgical research.
机译:目标。评估在人体尸体中植入3D打印的脑动脉瘤模型的可行性,并评估其在神经外科研究,复杂病例管理/计划和手术培训中的效用。生成了两个3D打印的动脉瘤模型,即基尖和大脑中动脉,并将其植入四个尸体标本中。将动脉瘤植入与建模患者相同的解剖区域。对每个标本进行了ter行和眶oz入路。评价了动脉瘤的植入物,操作能力和手术钳夹。在所有情况下,成功将3D动脉瘤模型植入尸体标本的动脉循环中。颈部在柔韧性方面的特征及其与其他动脉分支的关系使得可以进行夹入动脉瘤的外科手术。此外,动脉瘤圆顶与周围结构的关系可以更好地理解动脉瘤的局部质量效应。值得注意的是,所有这些观察都是在我们定制的神经外科手术仿真模型提供的现实环境中完成的。植入尸体标本中的3D动脉瘤模型可能代表了一种复制夹技术的未开发训练方法。练习针对特定患者的某些动脉瘤治疗方法;并改善神经外科研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号