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临床转化神经科学  2016, Vol. 2 Issue (4): 286-286    
  岩相古地理学及沉积学 本期目录 | 过刊浏览 | 高级检索 |
Call for Papers
 
 
Call for Papers
 
 
下载:  PDF (363KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 Precision minimally invasive technique in surgery of spine and spinal cord is an important branch of neurosurgery.Over the past few decades,majority of neurosurgeons only specialize in spinal cord diseases.However,with the advances in spine surgery,more and more neurosurgeons focus on spine diseases.As traditional surgery has been gradually replaced by precision surgery,open surgery has been gradually replaced by minimally invasive surgery,the diagnosis and treatment of spine diseases has been benefiting from minimally invasive techniques.With minimal surgical trauma,precise localization,MIS has become the inevitable trend of new neurosurgery.The purpose of this section is to collect articles on accurate minimally invasive techniques in spine and spinal cord,including but not limited to the following:
● O-ARM,intraoperative real-time navigation techniques
● Precision imaging techniques
● Surgical robot techniques
● Microscopic techniques
● Micro-channel techniques
● Percutaneous instrumentation techniques
● Neuroelectrophysiological monitoring techniques
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Abstract: Precision minimally invasive technique in surgery of spine and spinal cord is an important branch of neurosurgery.Over the past few decades,majority of neurosurgeons only specialize in spinal cord diseases.However,with the advances in spine surgery,more and more neurosurgeons focus on spine diseases.As traditional surgery has been gradually replaced by precision surgery,open surgery has been gradually replaced by minimally invasive surgery,the diagnosis and treatment of spine diseases has been benefiting from minimally invasive techniques.With minimal surgical trauma,precise localization,MIS has become the inevitable trend of new neurosurgery.The purpose of this section is to collect articles on accurate minimally invasive techniques in spine and spinal cord,including but not limited to the following:
● O-ARM,intraoperative real-time navigation techniques
● Precision imaging techniques
● Surgical robot techniques
● Microscopic techniques
● Micro-channel techniques
● Percutaneous instrumentation techniques
● Neuroelectrophysiological monitoring techniques
Submission guidelines
http://www.tncjournal.com/EN/column/column4217.shtml
https://mc03.manuscriptcentral.com/tnc
Important date
Manuscript Due: June 15, 2017
Notification of acceptance: July 20, 2017
Final version Due: August 15, 2017
Publication date: September, 2017
Guest editors
Lead guest editors: James Wang (China), Jiongqi Shen (China), Guihuai Wang (China)
Guest editors: Fengzeng Jian (China), Fangyi Zhang (China), Wenqing Jia (China),
Tao Fan (China)
Key words:   
               出版日期:  2016-12-30      发布日期:  2016-12-30      期的出版日期:  2016-12-30
   
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引用本文:    
. Call for Papers[J]. 临床转化神经科学, 2016, 2(4): 286-286.
链接本文:  
http://tnc.tsinghuajournals.com/CN/  或          http://tnc.tsinghuajournals.com/CN/Y2016/V2/I4/286
[1] Zhiye Qiu, Yuqi Zhang, Ziqiang Zhang, Tianxi Song, Fuzhai Cui. Biodegradable mineralized collagen plug for the reconstruction of craniotomy burr-holes: A report of three cases[J]. 临床转化神经科学, 2015, 1(1): 3-9.
[2] Tao Jiang, Jin Zhu, Jing Dong, Junmei Wang, Jiang Du, Chunde Li, Yuqi Zhang. Clinical outcomes of adult medulloblastoma: A retrospective analysis at a single institute[J]. 临床转化神经科学, 2015, 1(1): 17-24.
[3] Xiyuan Wang, Lin Chen, Huancong Zuo, Huagang Liu, Liu Ji, Shanker Sharma Hari, Sharma Aruna, Qiang Ao. Controlled release of nerve growth factor and basic fibroblast growth factor combined with small-gap anastomosis enhances sciatic nerve regeneration[J]. 临床转化神经科学, 2015, 1(1): 25-30.
[4] Andrey S. Bryukhovetskiy, Igor S. Bryukhovetskiy. Remote multi-wave radioneuroengineering: An innovative technology for non-contact radio restoration of damaged nervous tissue of the human brain and spinal cord[J]. 临床转化神经科学, 2015, 1(1): 31-59.
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