1 |
Burkhardt JK , Lawton MT . Practice trends in intracranial bypass surgery in a 21-year experience. World Neurosurg, 2019, 125: e717- e722..
doi: 10.1016/j.wneu.2019.01.161
|
2 |
Graffeo CS , Srinivasan VM , Manjila S , Lawton MT . Fourth-generation bypass and flow reversal to treat a symptomatic giant dolichoectatic basilar trunk aneurysm. Acta Neurochir (Wien), 2022, 164: 2887- 2892.
doi: 10.1007/s00701-022-05292-w
|
3 |
Tong XG , Wang X . Cerebral revascularization for anterior cerebral artery applied in surgery of the complex anterior communicating artery aneurysms. Zhongguo Xian Dai Shen Jing Ji Bing Za Zhi, 2021, 21: 527- 531.
doi: 10.3969/j.issn.1672-6731.2021.07.001
|
|
佟小光, 王轩. 大脑前动脉搭桥术在复杂前交通动脉瘤中的应用. 中国现代神经疾病杂志, 2021, 21: 527- 531.
doi: 10.3969/j.issn.1672-6731.2021.07.001
|
4 |
Han QD , Huang YB . Extracrainal-intracranial bypass for large and giant intracranial thrombotic aneurysms. Zhongguo Xian Dai Shen Jing Ji Bing Za Zhi, 2021, 21: 562- 568.
doi: 10.3969/j.issn.1672-6731.2021.07.006
|
|
韩庆东, 黄亚波. 颅内外血管搭桥术在颅内大型和巨大型血栓性动脉瘤中的应用. 中国现代神经疾病杂志, 2021, 21: 562- 568.
doi: 10.3969/j.issn.1672-6731.2021.07.006
|
5 |
Frisoli FA , Catapano JS , Baranoski JF , Lawton MT . The middle communicating artery: a novel fourth-generation bypass for revascularizing trapped middle cerebral artery bifurcation aneurysms in 2 cases. J Neurosurg, 2020, 134: 1879- 1886.
|
6 |
Tayebi Meybodi A , Benet A , Lawton MT . The V3 segment of the vertebral artery as a robust donor for intracranial-to-intracranial interpositional bypasses: technique and application in 5 patients. J Neurosurg, 2018, 129: 691- 701.
doi: 10.3171/2017.4.JNS163195
|
7 |
Wang L , Cai L , Qian H , Song J , Tanikawa R , Lawton M , Shi X . Intracranial-intracranial bypass with a graft vessel: a comprehensive review of technical characteristics and surgical experience. World Neurosurg, 2019, 125: 285- 298.
doi: 10.1016/j.wneu.2019.01.259
|
8 |
Zaki Ghali G , George Zaki Ghali M , Zaki Ghali E , Lahiff M , Coon A . Clinical utility and versatility of the petrous segment of the internal carotid artery in revascularization. J Clin Neurosci, 2020, 73: 13- 23.
doi: 10.1016/j.jocn.2019.11.005
|
9 |
Tayebi Meybodi A , Lawton MT , Griswold D , Mokhtari P , Payman A , Tabani H , Yousef S , Benet A . Revascularization of the upper posterior circulation with the anterior temporal artery: an anatomical feasibility study. J Neurosurg, 2018, 129: 121- 127.
doi: 10.3171/2017.3.JNS162865
|
10 |
Amin-Hanjani S , Ogilvy CS , Buonanno FS , Choi IS , Metz LN . Treatment of dissecting basilar artery aneurysm by flow reversal. Acta Neurochir (Wien), 1997, 139: 44- 51.
doi: 10.1007/BF01850867
|
11 |
Kant S , Goel V , Garg A , Sebastian LJD . Giant dissecting aneurysm of basilar artery in a child-treated by flow reversal: a case report. Interv Neuroradiol, 2023, 3: 15910199231154688.
|
12 |
Kalani MY , Zabramski JM , Nakaji P , Spetzler RF . Bypass and flow reduction for complex basilar and vertebrobasilar junction aneurysms. Neurosurgery, 2013, 72: 763- 775.
doi: 10.1227/NEU.0b013e3182870703
|
13 |
Spetzler RF , Fukushima T , Martin N , Zabramski JM . Petrous carotid-to-intradural carotid saphenous vein graft for intracavernous giant aneurysm, tumor, and occlusive cerebrovascular disease. J Neurosurg, 1990, 73: 496- 501.
doi: 10.3171/jns.1990.73.4.0496
|
14 |
Du R. Bypass surgery of the petrous segment of internal carotid artery via the extended middle fossa approach: an microsurgical anatomy and animal experientmental research[D]. Shanghai: Fudan University, 2011.
|
|
杜然. 扩大中颅底入路颈内动脉岩骨段血管搭桥术的显微解剖及动物实验研究[D]. 上海: 复旦大学, 2011.
|
15 |
Liu C , Yu XG , Zhou DB , Meng XH , Qiao GY . Utility of three-dimensional visualization for anatomic assessment of petrous carotid artery in Chinese. Zhongguo Wei Qin Xi Shen Jing Wai Ke Za Zhi, 2006, 11: 548- 551.
doi: 10.3969/j.issn.1009-122X.2006.12.008
|
|
刘策, 余新光, 周定标, 孟祥辉, 乔广宇. 国人岩骨段颈动脉解剖学特点的三维可视化研究. 中国微侵袭神经外科杂志, 2006, 11: 548- 551.
doi: 10.3969/j.issn.1009-122X.2006.12.008
|
16 |
Yang T , Tariq F , Duong HT , Sekhar LN . Bypass using V2-V3 segment of the vertebral artery as donor or recipient: technical nuances and results. World Neurosurg, 2014, 82: 1164- 1170.
doi: 10.1016/j.wneu.2014.02.034
|
17 |
Mai JC , Tariq F , Kim LJ , Sekhar LN . Flow diversion radial artery bypass graft coupled with terminal basilar artery occlusion for the treatment of complex basilar apex aneurysms: operative nuances. Neurosurgery, 2013, 72 (2 Suppl Operative): ons116- 126.
|
18 |
Wang X , Tong XG . Vascular reconstruction related to V3 segment of extracranial vertebral artery. Zhongguo Xian Dai Shen Jing Ji Bing Za Zhi, 2022, 22: 335- 340.
doi: 10.3969/j.issn.1672-6731.2022.05.002
|
|
王轩, 佟小光. 颅外椎动脉V3段相关血管重建术进展. 中国现代神经疾病杂志, 2022, 22: 335- 340.
doi: 10.3969/j.issn.1672-6731.2022.05.002
|
19 |
Shi X , Qian H , Singh KC , Zhang Y , Zhou Z , Sun Y , Liu F . Surgical management of vertebral and basilar artery aneurysms: a single center experience in 41 patients. Acta Neurochir (Wien), 2013, 155: 1087- 1093.
doi: 10.1007/s00701-013-1656-6
|
20 |
Lawton MT , Abla AA , Rutledge WC , Benet A , Zador Z , Rayz VL , Saloner D , Halbach VV . Bypass surgery for the treatment of dolichoectatic basilar trunk aneurysms: a work in progress. Neurosurgery, 2016, 79: 83- 99.
doi: 10.1227/NEU.0000000000001175
|
21 |
Kalani MY , Spetzler RF . Internal carotid artery-to-posterior cerebral artery bypass for revascularization of the brainstem. J Clin Neurosci, 2016, 24: 151- 154.
doi: 10.1016/j.jocn.2015.08.007
|
22 |
Tong ZY , Liu Y , Wang G , Sun HY , Yu GD , Zhang JS , Chu JG . The clinical effect analysis of internal maxillary artery-radial artery-cerebral artery bypass for the treatment of cerebral vascular disease. Zhongguo Xian Dai Shen Jing Ji Bing Za Zhi, 2022, 22: 359- 367.
doi: 10.3969/j.issn.1672-6731.2022.05.006
|
|
佟志勇, 刘源, 王刚, 孙怀宇, 余冠东, 张劲松, 初金刚. 颌内动脉-桡动脉-脑动脉搭桥术治疗脑血管病临床疗效分析. 中国现代神经疾病杂志, 2022, 22: 359- 367.
doi: 10.3969/j.issn.1672-6731.2022.05.006
|