[1]孙其凯 李珍珠 曹智洁 高 强 王清波 陈 正 耿 鑫 李泽福.3D打印模型引导下经颞部穿刺引流术治疗颅内血肿[J].中国临床神经外科杂志,2016,(10):586-588.[doi:10.13798/j.issn.1009-153X.2016.10.004]
 SUN Qi-kai,LI Zhen-zhu,CAO Zhi-jie,et al.Treatment of hypertensive cerebral hemorrhage by the minimally invasive puncture via temporal region under the guidance of 3D printing model[J].,2016,(10):586-588.[doi:10.13798/j.issn.1009-153X.2016.10.004]
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3D打印模型引导下经颞部穿刺引流术治疗颅内血肿()
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《中国临床神经外科杂志》[ISSN:1009-153X/CN:42-1603/TN]

卷:
期数:
2016年10期
页码:
586-588
栏目:
论著
出版日期:
2016-10-24

文章信息/Info

Title:
Treatment of hypertensive cerebral hemorrhage by the minimally invasive puncture via temporal region under the guidance of 3D printing model
文章编号:
1009-153X(2016)10-0586-03
作者:
孙其凯 李珍珠 曹智洁 高 强 王清波 陈 正 耿 鑫 李泽福
256600 山东滨州,滨州医学院附属医院神经外科
Author(s):
SUN Qi-kai LI Zhen-zhu CAO Zhi-jie GAO Qiang WANG Qing-bo CHEN Zheng GENG Xin LI Ze-fu.
Department of Neurosurgery, Affiliated Hospital, Binzhou Medical College, Binzhou 256600, China
关键词:
高血压性脑出血3D打印颅内血肿穿刺引流术精准治疗
Keywords:
Hypertensive cerebral hemorrhage Treatment 3D printing intracranial hematoma Puncture
分类号:
R 743.34; R 651.1+2
DOI:
10.13798/j.issn.1009-153X.2016.10.004
文献标志码:
A
摘要:
目的 探讨3D打印模型引导下经颞部穿刺引流术治疗颅内血肿的可行性和精确度。方法 首先获取1例52岁女性高血压性脑出血患者的颅脑CT二维图像资料,利用Mimics 16.0软件把原始数据重建形成三维图像,然后设计出带有颅外段穿刺孔道的3D面部模型,最后3D打印出面部模型的实体,用来精准定位穿刺点、精准测量穿刺进针角度和深度。在3D模型引导下,经颞叶行血肿穿刺引流术。结果 术后2周复查头部CT示颅内血肿吸收完全,术后恢复良好。结论 利用3D打印符合患者面部特征的3D面部模型,用于引导颅内血肿穿刺引流术,使治疗更加个体化、精准化、微创化。
Abstract:
Objective To explore the practicability of treatment of hypertensive cerebral hemorrhage (HCH) by the minimally invasive puncture via temporal region under the guidance of 3D printing model and to improve the accuracy of puncture into intracranial hematoma (ICH) via temporal region. Method CT two-dimensional image of ICH was acquired in a 52-year-old female patient with HCH and then 3D image was reconstructed by Mimics 16.0 software on the basis of the CT original data. A 3D facial model with extracranial segment of puncture tract was designed and printed out by 3D printer. The 3D printing model was used for precisely locating temporal puncture point, and guiding the angle and depth of puncture needle. Results The puncture needle exactly reached ICH through temporal region under guidance of 3D printing model and ICH was completely absorbed in the patient with HCH, who recovered well after the surgery. Conclusion The 3D printing model is very helpful to the increase in the rate of intracranial puncture success and curative effect in the patient with HCH because the puncture is more exact and minimally invasive under the guidance of 3D printing model.

参考文献/References:

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备注/Memo

备注/Memo:
基金项目:国家自然科学基金(81171119)
通讯作者:李泽福,E-mail:lizefu163@163.com.
更新日期/Last Update: 2016-10-25