術中脳循環イメージングの進歩

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Published in日大医学雑誌 Vol. 68; no. 2; pp. 134 - 137
Main Authors 粟野, 貴志, 片山, 容一, 星野, 達哉, 酒谷, 薫, 横瀬, 憲明, 五十嵐, 崇弘, 村田, 佳宏
Format Journal Article
LanguageJapanese
Published 日本大学医学会 01.04.2009
Subjects
Online AccessGet full text
ISSN0029-0424
1884-0779
DOI10.4264/numa.68.134

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Author 横瀬, 憲明
酒谷, 薫
五十嵐, 崇弘
粟野, 貴志
星野, 達哉
片山, 容一
村田, 佳宏
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  fullname: 村田, 佳宏
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References 3) Nakagawa A, Hirano T, Uenohara H, et al. Intraoperative thermal artery imaging of an EC-IC bypass in beagles with infrared camera with detectable wave-length band of 7-14 microm: possibilities as novel blood flow monitoring system. Minim Invasive Neurosurg 2003; 46: 231-234.
8) Mery FJ, Amin-Hanjani S, Charbel FT. Is an angiographically obliterated aneurysm always secure? Neurosurgery 2008; 62: 979-982.
13) Murata Y, Sakatani K, Katayama Y, at al. Evaluation of extracranial-intracranial arterial bypass function by using near-infrared spectroscopy. J Neurosurg 2003; 99: 304-310.
6) Woitzik J, Horn P, Vajkoczy P, Schmiedek P. Intraoperative control of extracranial-intracranial bypass patency by near-infrared indocyanine green videoangiography. J Neurosurg 2005; 102: 692-698.
7) Takagi Y, Kikuta KI, Nozaki K, Sawamura K, Hashimoto N. Detection of a residual nidus by surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography in a child with a cerebralarteriovenous malformation. J Neurosurg 2007; 107: 416-418.
4) Novotny, HR, Alvis, DL. A method of photographing fluorescence in circulating blood in the human retina. Circulation 1961; 24: 82-86.
9) Sakatani K, Kashiwasake-Jibu M, Taka. Noninvasive optical imaging of the subarachnoid space and cerebrospinal fluid pathways based on near-infrared fluorescence. J Neurosurg 1997; 87: 738-745.
5) Raabe A, Nakaji P, Beck J, Kim LJ, Hsu FP, Kamerman JD, Seifert V, Spetzler RF. Prospective evaluation of surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography during aneurysm surgery. J Neurosurg 2005; 103: 982-989.
1) Mayevsky A, Ornstein E, Meilin S, et al. The evaluation of brain CBF and mitochondrial function by a fiber optic tissue spectroscope in neurosurgical patients. Acta Neurochir Suppl 2002; 81: 367-371.
10) 小川 彰.JET study group 脳卒中治療の中・長期予後.脳卒中の外科,2002; 30: 97-100.
12) Hoshino T, Katayama Y, Sakatani K. Intraoperative monitoring of cerebral blood oxygenation and hemodynamics during extracranial-intracranial bypass surgery by a newly developed visible light spectroscopy system. Surg Neurol 2006; 65: 569-576.
11) Fujimura M, Kaneta T, Mugikura S, Shimizu H, Tominaga T. Temporary neurologic deterioration due to cerebral hyperperfusion after superficial temporal artery-middle cerebral artery anastomosis in patients with adult-onset moyamoya disease. Surg Neurol 2007; 67: 273-282.
2) Vajkoczy P, Horn P, Thome C, et al. Regional cerebral blood flow monitoring in the diagnosis of delayed ischemia following aneurysmal subarachnoid hemorrhage. J Neurosurg 2003; 98: 1227-1234.
References_xml – reference: 9) Sakatani K, Kashiwasake-Jibu M, Taka. Noninvasive optical imaging of the subarachnoid space and cerebrospinal fluid pathways based on near-infrared fluorescence. J Neurosurg 1997; 87: 738-745.
– reference: 7) Takagi Y, Kikuta KI, Nozaki K, Sawamura K, Hashimoto N. Detection of a residual nidus by surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography in a child with a cerebralarteriovenous malformation. J Neurosurg 2007; 107: 416-418.
– reference: 10) 小川 彰.JET study group 脳卒中治療の中・長期予後.脳卒中の外科,2002; 30: 97-100.
– reference: 6) Woitzik J, Horn P, Vajkoczy P, Schmiedek P. Intraoperative control of extracranial-intracranial bypass patency by near-infrared indocyanine green videoangiography. J Neurosurg 2005; 102: 692-698.
– reference: 12) Hoshino T, Katayama Y, Sakatani K. Intraoperative monitoring of cerebral blood oxygenation and hemodynamics during extracranial-intracranial bypass surgery by a newly developed visible light spectroscopy system. Surg Neurol 2006; 65: 569-576.
– reference: 1) Mayevsky A, Ornstein E, Meilin S, et al. The evaluation of brain CBF and mitochondrial function by a fiber optic tissue spectroscope in neurosurgical patients. Acta Neurochir Suppl 2002; 81: 367-371.
– reference: 5) Raabe A, Nakaji P, Beck J, Kim LJ, Hsu FP, Kamerman JD, Seifert V, Spetzler RF. Prospective evaluation of surgical microscope-integrated intraoperative near-infrared indocyanine green videoangiography during aneurysm surgery. J Neurosurg 2005; 103: 982-989.
– reference: 2) Vajkoczy P, Horn P, Thome C, et al. Regional cerebral blood flow monitoring in the diagnosis of delayed ischemia following aneurysmal subarachnoid hemorrhage. J Neurosurg 2003; 98: 1227-1234.
– reference: 8) Mery FJ, Amin-Hanjani S, Charbel FT. Is an angiographically obliterated aneurysm always secure? Neurosurgery 2008; 62: 979-982.
– reference: 11) Fujimura M, Kaneta T, Mugikura S, Shimizu H, Tominaga T. Temporary neurologic deterioration due to cerebral hyperperfusion after superficial temporal artery-middle cerebral artery anastomosis in patients with adult-onset moyamoya disease. Surg Neurol 2007; 67: 273-282.
– reference: 4) Novotny, HR, Alvis, DL. A method of photographing fluorescence in circulating blood in the human retina. Circulation 1961; 24: 82-86.
– reference: 3) Nakagawa A, Hirano T, Uenohara H, et al. Intraoperative thermal artery imaging of an EC-IC bypass in beagles with infrared camera with detectable wave-length band of 7-14 microm: possibilities as novel blood flow monitoring system. Minim Invasive Neurosurg 2003; 46: 231-234.
– reference: 13) Murata Y, Sakatani K, Katayama Y, at al. Evaluation of extracranial-intracranial arterial bypass function by using near-infrared spectroscopy. J Neurosurg 2003; 99: 304-310.
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StartPage 134
SubjectTerms もやもや病
インドシアニングリーン
脳血流
術中モニタリング
頭蓋外頭蓋内バイパス術
Title 術中脳循環イメージングの進歩
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