1)Kaku Y, et al:Less invasive technique for EC-IC bypass. Acta Neurochir Suppl 103:83-86, 2008
2)Coppens JR, et al:Minimally invasive superficial temporal artery to middle cerebral artery bypass through an enlarged bur hole:the use of computed tomography angiography neuronavigation in surgical planning. J Neurosurg 109:553-558, 2008
3)Fischer G, et al:Minimally invasive superficial temporal artery to middle cerebral artery bypass through a minicraniotomy:benefit of three-dimensional virtual reality planning using magnetic resonance angiography. Neurosurg Focus 26:E20, 2009 doi:10.3171/2009.2.FOCUS0917
4)Nakagawa I, et al:Virtual surgical planning for superficial temporal artery to middle cerebral artery bypass using three-dimensional digital subtraction angiography. Acta Neurochir(Wien)152:1535-1541, 2010
5)Kaku Y, et al:Superficial temporal artery-middle cerebral artery bypass using local anesthesia and a sedative without endotracheal general anesthesia. J Neurosurg 117:288-294, 2012
6)Kaku Y, et al:STA-MCA bypass under local anesthesia. Acta Neurochir Suppl 129:79-84, 2018
7)Funaki T, et al:The targeted bypass strategy for preventing hemorrhage in moyamoya disease:technical note. Neurol Med Chir(Tokyo)59:517-522, 2019
8)日本脳卒中学会 脳卒中ガイドライン委員会:脳卒中治療ガイドライン2021〔改訂2023〕.協和企画,東京,2023
9)JET Study Group:Japanese EC-IC Bypass Trial(JET Study)—中間解析結果(第二報).脳卒中の外科 30:434-437, 2002.
10)Kataoka H, et al:Results of prospective cohort study on symptomatic cerebrovascular occlusive disease showing mild hemodynamic compromise[Japanese Extracranial-Intracranial Bypass Trial(JET)-2 Study]. Neurol Med Chir(Tokyo)55:460-468, 2015
11)舟木健史,宮本 享:NS NOW No. 6 脳虚血の外科I バイパス手術 STA-MCAバイパス.メジカルビュー社,東京,2009
12)Nakagawa I, et al:Virtual surgical planning for superficial temporal artery to middle cerebral artery bypass using three-dimensional digital subtraction angiography. Acta Neurochir(Wien)152:1535-1541, 2010
13)Cabrilo I, et al:Augmented reality-assisted bypass surgery:embracing minimal invasiveness. World Neurosurg 83:596-602, 2015
14)Miyamoto S, et al:Effects of extracranial-intracranial bypass for patients with hemorrhagic moyamoya disease:results of the Japan Adult Moyamoya Trial. Stroke 45:1415-1421, 2014
15)Takahashi JC, et al:Significance of the hemorrhagic site for recurrent bleeding:prespecified analysis in the Japan Adult Moyamoya Trial. Stroke 47:37-43, 2016
16)Funaki T, et al:High rebleeding risk associated with choroidal collateral vessels in hemorrhagic moyamoya disease:analysis of a nonsurgical cohort in the Japan Adult Moyamoya Trial. J Neurosurg 130:525-530, 2019
17)Takahashi JC, et al:Impact of cortical hemodynamic failure on both subsequent hemorrhagic stroke and effect of bypass surgery in hemorrhagic moyamoya disease:a supplementary analysis of the Japan Adult Moyamoya Trial. J Neurosurg 134:940-945, 2020
18)Kim JH, et al:Intracranial aneurysms in adult Moyamoya disease. World Neurosurg 109:e175-e182, 2018 doi:10.1016/j.wneu.2017.09.127
19)Yeon JY, et al:Incidental major artery aneurysms in patients with non-hemorrhagic moyamoya disease. Acta Neurochir(Wien)153:1263-1270, 2011
20)Zhang L, et al:Treatment strategies for aneurysms associated with moyamoya disease. Int J Med Sci 12:234-242, 2015
21)Yamada H, et al:Short-term spontaneous resolution of ruptured peripheral aneurysm in moyamoya disease. World Neurosurg 126:247-251, 2019
22)Kusakabe T, et al:Disappearance of a moyamoya-related distal anterior cerebral artery aneurysm after target bypass revascularization:illustrative case. J Neurosurg Case Lessons 6:CASE23200, 2023 doi:10.3171/CASE23200