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Chapter 12 - Stroke after chiropractic manipulations

from Section III - Iatrogenic ischemic strokes: other causes

Published online by Cambridge University Press:  20 October 2016

Alexander Tsiskaridze
Affiliation:
Sarajishvili Institute of Neurology, Tblisi State University, Georgia
Arne Lindgren
Affiliation:
Department of Neurology, University Hospital Lund, Sweden
Adnan I. Qureshi
Affiliation:
Department of Neurology, University of Minnesota
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Summary

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Chapter
Information
Treatment-Related Stroke
Including Iatrogenic and In-Hospital Strokes
, pp. 123 - 129
Publisher: Cambridge University Press
Print publication year: 2016

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References

Schievink, W I. Spontaneous dissection of the carotid and vertebral arteries. N Engl J Med. 2001; 344:898906.Google Scholar
Ferro, J M, Massaro, A R, Mas, J L. Aetiological diagnosis of ischaemic stroke in young adults. Lancet Neurol. 2010; 9:1085–96.Google Scholar
Longoni, M, Grond-Ginsbach, C, Grau, A J, et al. The ICAM-1 E469 K gene polymorphism is a risk factor for spontaneous cervical artery dissection. Neurology. 2006; 66:1273–5.Google Scholar
Pezzini, A, Del Zotto, E, Archetti, S, et al. Plasma homocysteine concentration, C677T MTHFR genotype, and 844ins68bp CBS genotype in young adults with spontaneous cervical artery dissection and atherothrombotic stroke. Stroke. 2002; 33:664–9.CrossRefGoogle ScholarPubMed
Gallai, V, Caso, V, Paciaroni, M, et al. Mild hyperhomocyst(e)inemia: a possible risk factor for cervical artery dissection. Stroke. 2001; 32:714–18.Google Scholar
Konrad, C, Muller, G A, Langer, C, et al. Plasma homocysteine, MTHFR C677T, CBS 844ins68bp, and MTHFD1 G1958A polymorphisms in spontaneous cervical artery dissections. J Neurol. 2004; 251:1242–8.Google Scholar
Silbert, P L, Mokri, B, Schievink, W I. Headache and neck pain in spontaneous internal carotid and vertebral artery dissections. Neurology. 1995; 45:1517–22.Google Scholar
Lee, V H, Brown, R D Jr., Mandrekar, J N, Mokri, B. Incidence and outcome of cervical artery dissection: a population-based study. Neurology. 2006; 67:1809–12.CrossRefGoogle ScholarPubMed
Mokri, B, Silbert, P L, Schievink, W I, Piepgras, D G. Cranial nerve palsy in spontaneous dissection of the extracranial internal carotid artery. Neurology. 1996;46:356–9.CrossRefGoogle ScholarPubMed
Arnold, M, Cumurciuc, R, Stapf, C, et al. Pain as the only symptom of cervical artery dissection. J Neurol Neurosurg Psychiatry. 2006; 77:1021–4.Google Scholar
Biousse, V, D’Anglejan-Chatillon, J, Touboul, P J, Amarenco, P, Bousser, M G. Time course of symptoms in extracranial carotid artery dissections. A series of 80 patients. Stroke. 1995; 26:235–9.Google Scholar
Saeed, A B, Shuaib, A, Al-Sulaiti, G, Emery, D. Vertebral artery dissection: Warning symptoms, clinical features and prognosis in 26 patients. Can J Neurol Sci. 2000; 27:292–6.Google Scholar
Hurwitz, E L, Aker, P D, Adams, A H, Meeker, W C, Shekelle, P G. Manipulation and mobilization of the cervical spine. A systematic review of the literature. Spine. 1996; 21:1746–60.Google Scholar
Haldeman, S, Carey, P, Townsend, M, Papadopoulos, C. Arterial dissections following cervical manipulation: the chiropractic experience. CMAJ. 2001; 165:905–6.Google Scholar
Thornton, R V. Malpractice: death resulting from chiropractic treatment of headache (medicolegal abstract). JAMA. 1934; 103:1260.Google Scholar
Haneline, M T, Croft, A C, Frishberg, B M. Association of internal carotid artery dissection and chiropractic manipulation. Neurologist. 2003; 9:3544.Google Scholar
Dziewas, R, Konrad, C, Drager, B, et al. Cervical artery dissection: Clinical features, risk factors, therapy and outcome in 126 patients. J Neurol. 2003; 250:1179–84.Google Scholar
Lee, K P, Carlini, W G, McCormick, G F, Albers, G W. Neurologic complications following chiropractic manipulation: a survey of California neurologists. Neurology. 1995; 45:1213–15.Google Scholar
Norris, J W, Beletsky, V, Nadareishvili, Z G. Sudden neck movement and cervical artery dissection. The Canadian Stroke Consortium. CMAJ. 2000; 163:3840.Google Scholar
Dabbs, V, Lauretti, W J. A risk assessment of cervical manipulation vs. NSAIDs for the treatment of neck pain. J Manipulative Physiol Ther. 1995; 18:530–6.Google Scholar
Haneline, M T, Lewkovich, G. Identification of internal carotid artery dissection in chiropractic practice. J Can Chiropr Assoc. 2004; 48:206–10.Google Scholar
Schievink, W I, Mokri, B, Whisnant, J P. Internal carotid artery dissection in a community. Rochester, Minnesota, 1987–1992. Stroke. 1993; 24:1678–80.Google Scholar
Giroud, M, Fayolle, H, Andre, N, et al. Incidence of internal carotid artery dissection in the community of Dijon. J Neurol Neurosurg Psychiatry. 1994; 57:1443.CrossRefGoogle ScholarPubMed
Assendelft, W J, Bouter, L M, Knipschild, P G. Complications of spinal manipulation: A comprehensive review of the literature. J Fam Pract. 1996; 42:475–80.Google Scholar
Showalter, W, Esekogwu, V, Newton, K I, Henderson, S O. Vertebral artery dissection. Acad Emerg Med. 1997; 4:991–5.Google Scholar
Dvorak, J, Orelli, F V. How dangerous is manipulation to the cervical spine? Man Med. 1985; 2:14.Google Scholar
Klougart, N, Leboeuf-Yde, C, Rasmussen, L R. Safety in chiropractic practice, Part I; The occurrence of cerebrovascular accidents after manipulation to the neck in Denmark from 1978–1988. J Manipulative Physiol Ther. 1996; 19:371–7.Google Scholar
Haldeman, S, Carey, P, Townsend, M, Papadopoulos, C. Clinical perceptions of the risk of vertebral artery dissection after cervical manipulation: the effect of referral bias. Spine J. 2002; 2:334–42.Google Scholar
Haldeman, S, Kohlbeck, F J, McGregor, M. Unpredictability of cerebrovascular ischemia associated with cervical spine manipulation therapy: a review of sixty-four cases after cervical spine manipulation. Spine. 2002; 27:4955.CrossRefGoogle ScholarPubMed
Reuter, U, Hamling, M, Kavuk, I, Einhaupl, K M, Schielke, E. Vertebral artery dissections after chiropractic neck manipulation in Germany over three years. J Neurol. 2006; 253:724–30.CrossRefGoogle ScholarPubMed
Haldeman, S, Kohlbeck, F J, McGregor, M. Stroke, cerebral artery dissection, and cervical spine manipulation therapy. J Neurol. 2002; 249:1098–104.Google Scholar
Hufnagel, A, Hammers, A, Schonle, P W, Bohm, K D, Leonhardt, G. Stroke following chiropractic manipulation of the cervical spine. J Neurol. 1999; 246:683–8.Google Scholar
Rothwell, D M, Bondy, S J, Williams, J I. Chiropractic manipulation and stroke: a population-based case-control study. Stroke. 2001; 32:1054–60.Google Scholar
Whedon, J M, Song, Y, Mackenzie, T A, et al. Risk of stroke after chiropractic spinal manipulation in Medicare B beneficiaries aged 66 to 99 years with neck pain. J Manipulative Physiol Ther. 2015; 38:93101.Google Scholar
Smith, W S, Johnston, S C, Skalabrin, E J, et al. Spinal manipulative therapy is an independent risk factor for vertebral artery dissection. Neurology. 2003; 60:1424–8.Google Scholar
Dittrich, R, Rohsbach, D, Heidbreder, A, et al. Mild mechanical traumas are possible risk factors for cervical artery dissection. Cerebrovasc Dis. 2007; 23:275–81.Google Scholar
Wynd, S, Westaway, M, Vohra, S, Kawchuk, G. The quality of reports on cervical arterial dissection following cervical spinal manipulation. PLoS One. 2013; 8:e59170.CrossRefGoogle ScholarPubMed
Haynes, M J, Vincent, K, Fischhoff, C, et al. Assessing the risk of stroke from neck manipulation: A systematic review. Int J Clin Pract. 2012; 66:940–7.CrossRefGoogle ScholarPubMed
Cassidy, J D, Boyle, E, Cote, P, et al. Risk of vertebrobasilar stroke and chiropractic care: results of a population-based case-control and case-crossover study. J Manipulative Physiol Ther. 2009; 32:S201208.Google Scholar
Guillon, B, Berthet, K, Benslamia, L, et al. Infection and the risk of spontaneous cervical artery dissection: a case-control study. Stroke. 2003; 34:e7981.Google Scholar
Cagnie, B, Barbaix, E, Vinck, E, D’Herde, K, Cambier, D. Atherosclerosis in the vertebral artery: an intrinsic risk factor in the use of spinal manipulation? Surg Radiol Anat. 2006; 28:129–34.Google Scholar
Pezzini, A, Del Zotto, E, Padovani, A. Hyperhomocysteinemia: a potential risk factor for cervical artery dissection following chiropractic manipulation of the cervical spine. J Neurol. 2002; 249:1401–3.Google Scholar
Frisoni, G B, Anzola, G P. Neck manipulation and stroke. Neurology. 1990; 40:1910.Google Scholar

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