頭蓋骨縫合早期癒合症におけるVBMを用いた脳脊髄液灌流障害の定量的評価

「要旨」頭蓋骨縫合早期癒合症 (CS) において頭蓋内圧 (ICP) の亢進はよく知られているが, 脳脊髄液 (CSF) 灌流障害についての報告は少ない. この研究は, VBMを用いて, CS患者の術前後の頭蓋内容積 (灰白質+白質+CSF) に対するCSF体積を解析した. 術後におけるCSFの占める体積は, 術前と比較して有意に低い結果を得られた. CSにおいて, 頭蓋形成術はCSF灌流障害を改善させている可能性が示唆された....

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Published in小児の脳神経 Vol. 48; no. 3; pp. 256 - 260
Main Authors 川路, 博史, 中戸川, 裕一, 山本, 貴道, 宮川, 正, 稲永, 親憲, 山添, 知宏
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本小児神経外科学会 2023
日本小児神経外科学会
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ISSN0387-8023
2435-824X
DOI10.34544/jspn.48.3_256

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Abstract 「要旨」頭蓋骨縫合早期癒合症 (CS) において頭蓋内圧 (ICP) の亢進はよく知られているが, 脳脊髄液 (CSF) 灌流障害についての報告は少ない. この研究は, VBMを用いて, CS患者の術前後の頭蓋内容積 (灰白質+白質+CSF) に対するCSF体積を解析した. 術後におけるCSFの占める体積は, 術前と比較して有意に低い結果を得られた. CSにおいて, 頭蓋形成術はCSF灌流障害を改善させている可能性が示唆された.
AbstractList 「要旨」頭蓋骨縫合早期癒合症 (CS) において頭蓋内圧 (ICP) の亢進はよく知られているが, 脳脊髄液 (CSF) 灌流障害についての報告は少ない. この研究は, VBMを用いて, CS患者の術前後の頭蓋内容積 (灰白質+白質+CSF) に対するCSF体積を解析した. 術後におけるCSFの占める体積は, 術前と比較して有意に低い結果を得られた. CSにおいて, 頭蓋形成術はCSF灌流障害を改善させている可能性が示唆された.
頭蓋骨縫合早期癒合症(CS)において頭蓋内圧(ICP)の亢進はよく知られているが,脳脊髄液(CSF)灌流障害についての報告は少ない.この研究は,VBMを用いて,CS患者の術前後の頭蓋内容積(灰白質+白質+CSF)に対するCSF体積を解析した.術後におけるCSFの占める体積は,術前と比較して有意に低い結果を得られた.CSにおいて,頭蓋形成術はCSF灌流障害を改善させている可能性が示唆された.
Author 稲永, 親憲
中戸川, 裕一
宮川, 正
山添, 知宏
山本, 貴道
川路, 博史
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References [14] Renier D: Intracranial pressure in craniosynostosis: pre and postoperative recordings-correlation with functional results. Persing JA, Edgerton MT, Jane J (eds): Scientific foundations and surgical treatment of craniosynostosis. Baltimore, Williams and Wilkins, 1989, pp 263-269.
[7] Francis PM, Beals S, Rekate HL, Pittman HW, Manwaring K, Reiff J: Chronic tonsillar herniation and Crouzon’s syndrome. Pediatr Neurosurg 18: 202-206, 1992.
[2] Bristol RE, Lekovic GP, Rekate HL: The effects of craniosynostosis on the brain with respect to intracranial pressure. Semin Pediatr Neurol 11: 262-267, 2004.
[16] Sante-Rose C, Lacombe J, Pierre-Kahn A, Renier D, Hirsch J-F: Intracranial venous sinus hypertension: cause or consequence of hydrocephalus in infants? J Neurosurg 60: 727-736, 1984.
[1] Badie B, Mendoza D, Batzdorf U: Posterior fossa volume and response to suboccipital decompression in patients with Chiari I malformation. Neurosurgery 37: 214-218, 1995.
[11] Matsuzawa J, Matsui M, Konishi T, Noguchi K, Gur R, Bilker W, Miyawaki T: Age-related volumetric changes of brain grey and white matter in healthy infants and children. Cereb Cortex 11: 335-342, 2001.
[6] Eide PK: The relationship between intracranial pressure and size of cerebral ventricles assessed by computed tomography. Acta Neurochir 145: 171-179, 2003.
[13] Nonaka Y, Oi S, Miyawaki T, Shinoda A, Kurihara K: Indication for and surgical outcomes of the distraction method in various types of craniosynostosis. Childs Nerv Syst 20: 702-709, 2004.
[24] Thompson DNP, Malcolm GP, Jones BM, Harkness WJ, Hayward RD: Intracranial pressure in single suture craniosynostosis. Pediatr Neurosurg 22: 235-240, 1995.
[10] Inagaki T, Kyotoku S, Seno T, Kawaguchi T, Yamahara T, Oshige H, Yamanouchi Y, Kawamoto K: The intracranial pressure of the patients with mild form of craniosynostosis. Childs Nerv Syst 23: 1455-1459, 2007.
[9] Iliff JJ, Wang M, Liao Y, Plogg BA, Peng W, Gundersen GA, Benveniste H, Vates GE, Deane R, Goldman SA, et al: A paravascular pathway facilitates CSF flow through the brain parenchyma and the clearance of interstitial solutes, including amyloid beta. Sci Transl Med. 4: 147ra111, 2012.
[12] Mihorat T, Chou M, Trinidad E, Kula R, Mandell M, Wolpert C, Speer M: Chiari I malformation redefined: clinical and radiological findings for 364 symptomatic patients. Neurosurgery 44: 1005-1017, 2003.
[23] Thompson DNP, Hayward RD: Craniosynostosis-pathophysiology, clinical presentation and investigation. Choux M, et al (eds): Pediatric Neurosurgery, Churchil-Livingstone, 1999, pp 275-290.
[3] Chadduck WM, Chadduck JB, Boop FA: The subarachnoid spaces in craniosynostosis. Neurosurgery 30: 867-871, 1992.
[17] Siddiqi S, Posnick JC, Buncic R, Humphreys RP, Hoffman HJ, Drake JM, Rutka JT: The detection and management of intracranial hypertension after initial suture release and decompression for craniofacial dysostosis syndromes. Neurosurgery 36: 703-709, 1995.
[21] Thompson DNP, Harkness W, Jones B, Gonzalez S, Andar U, Hayward R: Subdural intracranial pressure monitoring in craniosynostosis: its role in surgical management. Childs Nerv Syst 11: 269-275, 1995.
[5] Di Rocco C, Frassanito P, Massimi L, Peraio S: Hydrocephalus and Chiari type I malformation. Childs Nerv Syst 27: 1653-1664, 2011.
[20] Taylor WJ, Hayward RD, Lasjaunias P, Britto JA, Thompson DNP, Jones BM, Evans RD: Enigma of raised intracranial pressure in patients with complex craniosynostosis: the role of abnormal intracranial venous drainage. J Neurosurg 94: 377-385, 2001.
[15] Renier D, Sainte-Rose C, Marchac D, Hirsch J: Intracranial pressure in craniosynostosis. J Neurosurg 57: 370-377, 1982.
[19] Tamburrini G, Caldarelli M, Massimi L, Santini P, Di Rocco C: Intracranial pressure monitoring in children with single suture and complex craniosynostosis: a review. Childs Nerv Syst 21: 913-921, 2005.
[22] Thompson DNP, Harkness W, Jones BM, Hayward RD: Aetiology of herniation of the hindbrain in craniosynostosis. An investigation incorporating intracranial pressure monitoring and magnetic resonance imaging. Pediatr Neurosurg 26: 288-295, 1997.
[4] Cinalli G, Sainte-Rose C, Kollar EM, Zerah M, Brunelle F, Chumas P, Arnaud E, Marchac D, Pierre-Kahn A, Renier D: Hydrocephalus and craniosynostosis. J Neurosurg 88: 209-214, 1998.
[25] Tubbs RS, Lyerly MJ, Loukas M, Shoja MM, Oakes WJ: The pediatric Chiari I malformation: a review. Childs Nerv Syst 23: 1239-1250, 2007.
[26] Tuite GF, Chong WK, Evanson J, Narita A, Taylor D, Harkness W, Jones B, Hayward R: The effectiveness of papilledema as an indicator of raised intracranial pressure in children with craniosynostosis. Neurosurgery 38: 272-278, 1996.
[8] Hayward R: Venous hypertension and craniosynostosis. Childs Nerv Syst 21: 880-888, 2005.
[18] Steinruecke M, Tiefenbach J, Park JJ, Kaliaperumal C: Role of the glymphatic system in idiopathic intracranial hypertension. Clin Neurol Neurosurg. 222: 107446, 2022.
References_xml – reference: [12] Mihorat T, Chou M, Trinidad E, Kula R, Mandell M, Wolpert C, Speer M: Chiari I malformation redefined: clinical and radiological findings for 364 symptomatic patients. Neurosurgery 44: 1005-1017, 2003.
– reference: [1] Badie B, Mendoza D, Batzdorf U: Posterior fossa volume and response to suboccipital decompression in patients with Chiari I malformation. Neurosurgery 37: 214-218, 1995.
– reference: [9] Iliff JJ, Wang M, Liao Y, Plogg BA, Peng W, Gundersen GA, Benveniste H, Vates GE, Deane R, Goldman SA, et al: A paravascular pathway facilitates CSF flow through the brain parenchyma and the clearance of interstitial solutes, including amyloid beta. Sci Transl Med. 4: 147ra111, 2012.
– reference: [6] Eide PK: The relationship between intracranial pressure and size of cerebral ventricles assessed by computed tomography. Acta Neurochir 145: 171-179, 2003.
– reference: [19] Tamburrini G, Caldarelli M, Massimi L, Santini P, Di Rocco C: Intracranial pressure monitoring in children with single suture and complex craniosynostosis: a review. Childs Nerv Syst 21: 913-921, 2005.
– reference: [5] Di Rocco C, Frassanito P, Massimi L, Peraio S: Hydrocephalus and Chiari type I malformation. Childs Nerv Syst 27: 1653-1664, 2011.
– reference: [22] Thompson DNP, Harkness W, Jones BM, Hayward RD: Aetiology of herniation of the hindbrain in craniosynostosis. An investigation incorporating intracranial pressure monitoring and magnetic resonance imaging. Pediatr Neurosurg 26: 288-295, 1997.
– reference: [26] Tuite GF, Chong WK, Evanson J, Narita A, Taylor D, Harkness W, Jones B, Hayward R: The effectiveness of papilledema as an indicator of raised intracranial pressure in children with craniosynostosis. Neurosurgery 38: 272-278, 1996.
– reference: [3] Chadduck WM, Chadduck JB, Boop FA: The subarachnoid spaces in craniosynostosis. Neurosurgery 30: 867-871, 1992.
– reference: [20] Taylor WJ, Hayward RD, Lasjaunias P, Britto JA, Thompson DNP, Jones BM, Evans RD: Enigma of raised intracranial pressure in patients with complex craniosynostosis: the role of abnormal intracranial venous drainage. J Neurosurg 94: 377-385, 2001.
– reference: [13] Nonaka Y, Oi S, Miyawaki T, Shinoda A, Kurihara K: Indication for and surgical outcomes of the distraction method in various types of craniosynostosis. Childs Nerv Syst 20: 702-709, 2004.
– reference: [18] Steinruecke M, Tiefenbach J, Park JJ, Kaliaperumal C: Role of the glymphatic system in idiopathic intracranial hypertension. Clin Neurol Neurosurg. 222: 107446, 2022.
– reference: [25] Tubbs RS, Lyerly MJ, Loukas M, Shoja MM, Oakes WJ: The pediatric Chiari I malformation: a review. Childs Nerv Syst 23: 1239-1250, 2007.
– reference: [10] Inagaki T, Kyotoku S, Seno T, Kawaguchi T, Yamahara T, Oshige H, Yamanouchi Y, Kawamoto K: The intracranial pressure of the patients with mild form of craniosynostosis. Childs Nerv Syst 23: 1455-1459, 2007.
– reference: [24] Thompson DNP, Malcolm GP, Jones BM, Harkness WJ, Hayward RD: Intracranial pressure in single suture craniosynostosis. Pediatr Neurosurg 22: 235-240, 1995.
– reference: [4] Cinalli G, Sainte-Rose C, Kollar EM, Zerah M, Brunelle F, Chumas P, Arnaud E, Marchac D, Pierre-Kahn A, Renier D: Hydrocephalus and craniosynostosis. J Neurosurg 88: 209-214, 1998.
– reference: [7] Francis PM, Beals S, Rekate HL, Pittman HW, Manwaring K, Reiff J: Chronic tonsillar herniation and Crouzon’s syndrome. Pediatr Neurosurg 18: 202-206, 1992.
– reference: [17] Siddiqi S, Posnick JC, Buncic R, Humphreys RP, Hoffman HJ, Drake JM, Rutka JT: The detection and management of intracranial hypertension after initial suture release and decompression for craniofacial dysostosis syndromes. Neurosurgery 36: 703-709, 1995.
– reference: [23] Thompson DNP, Hayward RD: Craniosynostosis-pathophysiology, clinical presentation and investigation. Choux M, et al (eds): Pediatric Neurosurgery, Churchil-Livingstone, 1999, pp 275-290.
– reference: [15] Renier D, Sainte-Rose C, Marchac D, Hirsch J: Intracranial pressure in craniosynostosis. J Neurosurg 57: 370-377, 1982.
– reference: [2] Bristol RE, Lekovic GP, Rekate HL: The effects of craniosynostosis on the brain with respect to intracranial pressure. Semin Pediatr Neurol 11: 262-267, 2004.
– reference: [11] Matsuzawa J, Matsui M, Konishi T, Noguchi K, Gur R, Bilker W, Miyawaki T: Age-related volumetric changes of brain grey and white matter in healthy infants and children. Cereb Cortex 11: 335-342, 2001.
– reference: [14] Renier D: Intracranial pressure in craniosynostosis: pre and postoperative recordings-correlation with functional results. Persing JA, Edgerton MT, Jane J (eds): Scientific foundations and surgical treatment of craniosynostosis. Baltimore, Williams and Wilkins, 1989, pp 263-269.
– reference: [21] Thompson DNP, Harkness W, Jones B, Gonzalez S, Andar U, Hayward R: Subdural intracranial pressure monitoring in craniosynostosis: its role in surgical management. Childs Nerv Syst 11: 269-275, 1995.
– reference: [8] Hayward R: Venous hypertension and craniosynostosis. Childs Nerv Syst 21: 880-888, 2005.
– reference: [16] Sante-Rose C, Lacombe J, Pierre-Kahn A, Renier D, Hirsch J-F: Intracranial venous sinus hypertension: cause or consequence of hydrocephalus in infants? J Neurosurg 60: 727-736, 1984.
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「要旨」頭蓋骨縫合早期癒合症 (CS) において頭蓋内圧 (ICP) の亢進はよく知られているが, 脳脊髄液 (CSF) 灌流障害についての報告は少ない. この研究は, VBMを用いて, CS患者の術前後の頭蓋内容積 (灰白質+白質+CSF) に対するCSF体積を解析した. 術後におけるCSFの占める体積は,...
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StartPage 256
SubjectTerms cerebrospinal fluid flow disturbance
craniosynostosis
distraction osteogenesis
voxel based morphometry
Title 頭蓋骨縫合早期癒合症におけるVBMを用いた脳脊髄液灌流障害の定量的評価
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