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功能磁共振成像对急性脑梗死患者预后判断的价值 被引量:3

Prognostic value of functional mangnetic resonance imaging for functional recovery in acute stroke patients
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摘要 目的探讨功能磁共振成像(functional magnetic resonance imaging,fMRI)检测脑感觉运动皮质(sensorimotor cortex,SMC)区激活对于急性脑梗死患者预后的评估价值。方法对44例脑梗死患者在起病6~72 h内和14 d进行手被动运动模式的fMRI成像以及美国国立卫生院卒中量表(NIHSS)评分,在起病30 d和90 d时进行修正Barthel指数(modified Barthel index,MBI)评分和修正Rankin量表(modified Rankin scale,mRS)评分。结果 SMC激活组患者的NIHSS评分低于无激活组(6~72 h:9.5±2.1 vs 11.9±4.2,P=0.023;14 d:中位数:5 vs 10,P=0.01),脑梗死体积小于无激活组(P<0.05);14 d SMC激活组的30 d和90 d MBI、30 d mRS评分均优于无激活组(P<0.05),14 d SMC激活体积与14 d NIHSS、30 d和90 d的MBI、mRS评分值也有相关关系(P<0.05)。结论手被动运动激活SMC区的fMRI成像对急性脑梗死患者有预后评估价值,尤其起病14 d时SMC区的激活情况与患者预后密切相关。 Objective To study the prognostic value of sensorimotor eortex(SMC)'s activation for functional re- covery in acute stroke patients using functional magnetic resonance imaging (fMRI). Methods The activation of SMC and NIHSS scores were evulated in forty-four patients with acute cerebral infarction (6 - 72 h) within 72 h of onset and at 14 d. Modified Barthel index (mBI) and Modified Rankin scale (mRS) scores were assessed at 30 and 90 d after stroke onset. Results NIHSS scores and infarction volume were lower in SMC activation group than in no-SMC-activa- tion group. Patients with SMC activation at the 144 day had better mBI and mRS scores at 30 and 90 d compared with those without SMC activation (all P 〈 0.05). The volume of SMC at 14^th day was correlated with the scores of NIHSS at 14 d, mBI/mRS at 30 and 90 d (all P 〈 0.05). Conclusions The activation of SMCby passive movement, especially at 14 days of stroke onset, has a prognosis value for function recovery in acute ischemic stroke patients.
出处 《中国神经精神疾病杂志》 CAS CSCD 北大核心 2012年第10期577-581,共5页 Chinese Journal of Nervous and Mental Diseases
基金 广州市科技攻关重点项目(编号:2006Z1-E0111)
关键词 功能磁共振成像 脑梗死 预后 Functional magnetic resonance imaging (fMRI) Cerebral infarction Prognosis
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参考文献9

  • 1周敬华,张其梅,秦觅,陈江津,余从新.血管性认知功能损害患者工作记忆和计算能力的fMRI研究[J].中国神经精神疾病杂志,2011,37(1):49-51. 被引量:8
  • 2任华,张云亭,张权,李威,张敬,沈建华,张新军.精神分裂症患者工作记忆与执行功能表现关系的功能磁共振研究[J].中国神经精神疾病杂志,2009,35(8):457-462. 被引量:7
  • 3Ward NS, Newton JM, Swayne OB, et al. Motor system acti-vation after subcortical stroke depends on corticospinal systemintegrity [J].Brain, 2006,129 (pt3) : 809-819.
  • 4Tombari D, Loubinoux I,Pariente J,et al. A longitudinal fM-RI study : in recovering and then in clinical stable sub-corticalstroke patients[J].Neuroimage, 2004,23(3) : 827-839.
  • 5Wang YD, Lu RY, Huang XX, et al. Human tissue kallikreinpromoted activation of the ipsilesional sensorimotor cortex afteracute cerebral infarction [ J].Eur Neurol, 2011,65(4):208-214.
  • 6Marshall MS, Zarahn Z, Alon L,et al. Early Imaging Corre-lates of Subsequent Motor Recovery after Stroke [ J ].Ann Neu-ml, 2009,65(5):596-602.
  • 7Ruiter MS, van Golde JM,Schaper NC, et al. Diabetes im-pairs arteriogenesis in the peripheral circulation : review ofmolecular mechanisms [J].Clin Sri (Ixinti), 2010,119(6):225-238.
  • 8de Groot D, leslerkamp G, Hoefer IE. Cardiovascular riskfactors and collateral arteral formation [J].Eur J Clin Invest,2009(39(12):I036-1047.
  • 9Grefkes C, Fink GH. Reorganization of cerebral networks afterstroke : new insights from neuroimaging with connectivity ap-proachestJ].Brain, 2011,134(Pt 5) : 1264-1276.

二级参考文献22

  • 1张权,张云亭,李威,张敬.数字计算相关脑功能区偏侧化现象fMRI研究[J].临床放射学杂志,2006,25(1):20-24. 被引量:5
  • 2Katherine HK, David CG, Theo GM, et al. The relationship between performance and fMRI signal during working memory in patients with schizophrenia, unaffected co-twins, and control subjects [J]. Schizophr Res, 2007, 89(1 -3) : 191 - 197.
  • 3Cannon TG, Glahn DC, Kim J, et al. Dorsolateral prefrontal cortex activity during maintenance and manipulation of information in working memory in patients with schizophrenia[J]. Arch Gen Psychiatry, 2005, 62(10) : 1071 - 1080.
  • 4Ragland JD, Gur RC, Glahn DC, et al. Frontotemporal cerebral blood flow change during executive and declarative memory tasks in schizophrenia: a positron emission tomography study [ J ]. Neuropsychology, 1998, 12 (3): 399-413.
  • 5Callicott JH, Bertolino A, Mattay VS, et al. Physiological dysfunction of the dorsolateral prefrontal cortex in schizophrenia revisited [ J ]. Cereb Cortex, 2000,10 ( 11 ) : 1078 - 1092.
  • 6Manoach DS, Gollub RL, Benson ES, et al. Schizophrenic subjects show aberrant fMR1 activation of dorsolateral prefrontal cortex and basal ganglia during working memory performance [ J ]. Biol Psychiatry, 2000, 48 (2): 99- 109.
  • 7Hampson M, Driesen NR, Skudlarski P, et al. Brain connectivity related to working memory performance [ J]. J Neurosci, 2006, 20, 26(51) :13338 -13343.
  • 8Callicott JH, Mattay VS, Bertolino A, et al. Physiological characteristics of capacity constraints in working memory as revealed by functional MRI[J]. Cereb Cortex, 1999, 9( 1 ) : 20 -26.
  • 9Manoach DS. Prefrontal cortex dysfunction during working memory performance in schizophrenia: reconciling discrepant findings[ J]. Schizophr Res, 2003, 60(2-3): 285-298.
  • 10Bush G, Luu P, Posner MI. Cognitive and emotional influences in anterior cingulate cortex [ J ]. Nature Neuroscience, 2000, 4 (6) : 215 -222.

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