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一种实用的 3D 打印模型,用于培训带管状牵开器的内镜和外镜下颅内血肿手术。

A Practical 3D-Printed Model for Training of Endoscopic and Exoscopic Intracerebral Hematoma Surgery with a Tubular Retractor.

机构信息

Jinling Hospital, Nanjing Medical University, Nanjing, China.

Department of Neurosurgery, Nanjing Jinling Hospital, Nanjing, China.

出版信息

J Neurol Surg A Cent Eur Neurosurg. 2020 Sep;81(5):404-411. doi: 10.1055/s-0039-1697023. Epub 2020 Apr 15.

Abstract

OBJECTIVE

To present a three-dimensional (3D)-printed model that simulates endoscopic and exoscopic intracerebral hematoma (ICH) surgery with a tubular retractor.

METHODS

We used 3D printing technology to develop the model that consisted of the skull frame and a replaceable inserted module. Edible gelatin and animal blood were placed into the module to mimic brain tissue and the hematoma. Twenty neurosurgeons were recruited to participate in our training program that required the use of an endoscope and an exoscope to aspirate the hematoma with a tubular retractor. Five postgraduates were asked to complete the entire training with the endoscope five times. Questionnaires were distributed for feedback after the training program.

RESULTS

The more experienced surgeons obviously performed better than the rather inexperienced surgeons, verifying that our model could reflect the ability of the trainees. As the training progressed, the scores of the postgraduates increased, and the average score of the fifth training was obviously higher than the first score. No significant differences were observed in the trainees' performance with the endoscope and the exoscope. The feedback questionnaires showed the average score for value of the simulator as a training tool was a 3.65 (on a 4-point scale). Our model received better comments regarding the bone texture (mean: 3.20), the brain tissue texture (mean: 3.20), and the experience in aspirating the hematoma (mean: 3.10). The surgical position (mean: 2.95), surgical approach (mean: 2.90), and simulated brain tissue (mean: 2.85) should be improved.

CONCLUSION

Our model was practical for endoscopic and exoscopic ICH surgery training. The results of our program showed that prior surgical experience benefited the mastery of both the endoscopic and the exoscopic ICH surgery in the 3D-printed model. Our model could make mastering basic skills more efficient.

摘要

目的

展示一种使用管状牵开器模拟内镜和颅外颅内血肿(ICH)手术的三维(3D)打印模型。

方法

我们使用 3D 打印技术开发了该模型,该模型由颅骨框架和可更换的插入模块组成。将食用明胶和动物血液放入模块中,以模拟脑组织和血肿。我们招募了 20 名神经外科医生参加我们的培训计划,该计划要求使用内镜和颅外镜用管状牵开器抽吸血肿。要求 5 名研究生使用内镜完成整个培训 5 次。培训计划结束后,分发问卷进行反馈。

结果

经验更丰富的外科医生的表现明显优于经验较少的外科医生,这证明了我们的模型可以反映出学员的能力。随着培训的进行,研究生的分数逐渐提高,第五次培训的平均分明显高于第一次。在内镜和颅外镜的使用方面,学员的表现没有差异。反馈问卷显示,模拟器作为培训工具的价值平均得分为 3.65(4 分制)。我们的模型在骨骼质地(平均 3.20)、脑组织质地(平均 3.20)和抽吸血肿的经验(平均 3.10)方面得到了更好的评价。手术位置(平均 2.95)、手术入路(平均 2.90)和模拟脑组织(平均 2.85)需要改进。

结论

我们的模型对于内镜和颅外 ICH 手术培训是实用的。该方案的结果表明,先前的手术经验有利于掌握 3D 打印模型内镜和颅外 ICH 手术。我们的模型可以使掌握基本技能更高效。

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