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"Cerebral hemorrhage"

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"Cerebral hemorrhage"

Original Articles
Crossed Cerebellar Diaschisis: Risk Factors and Correlation to Functional Recovery in Intracerebral Hemorrhage
Deok Su Sin, Myoung Hyoun Kim, Soon-Ah Park, Min Cheol Joo, Min Su Kim
Ann Rehabil Med 2018;42(1):8-17.   Published online February 28, 2018
DOI: https://doi.org/10.5535/arm.2018.42.1.8
Objective

The purpose of this study is to investigate predictors of crossed cerebellar diaschisis (CCD), and the effects of CCD on functional outcomes including motor function, activities of daily living, cognitive function, and ambulation 6 months after onset in patients with intracerebral hemorrhage (ICH).

Methods

A total of 74 patients experiencing their first ICH were recruited. If the asymmetric index was more than 10% using single photon emission computed tomography (SPECT), a diagnosis of CCD was confirmed. Clinical factors were retrospectively assessed by reviewing medical records. Radiologic factors encompassed the concomitance of intraventricular hemorrhage, side and location of the lesion, and hemorrhage volume. Functional outcomes were evaluated using the Fugl-Meyer Assessment, the Korean version of the Mini-Mental State Examination, the Korean version of the Modified Barthel Index, and measurement of the Functional Ambulatory Category at the time of SPECT measurement and 6 months post-ICH.

Results

Lesion location, especially in the basal ganglia (odds ratio [OR]=6.138, p=0.011), and hemorrhagic volume (OR=1.055, p=0.046) were independent predictors for CCD according to multivariate logistic regression analysis. In addition, the presence of CCD was significantly related to the improvement in Fugl-Meyer Assessment score after 6 months (adjusted R2=0.152, p=0.036).

Conclusion

Lesion location and hemorrhagic volume were the predisposing factors for CCD, and the CCD was associated with poor motor recovery over 6 months in patients with hemorrhagic stroke.

Citations

Citations to this article as recorded by  
  • The Cerebellar Connectome Disruptions in Ischemic Stroke
    Xiuqin Wang, Tongyue Li, Jinhui Wang, Yanhui Fu, Zhenqiang Ma, Xiaoyan Wu, Yiying Wang, Yufeng Zang, Yulin Song, Yating Lv
    CNS Neuroscience & Therapeutics.2026;[Epub]     CrossRef
  • Risk factors and nomogram for cognitive impairment after stereotactic drainage of spontaneous intracerebral hemorrhage
    Min Gong, Xiaohong Fu, Yuanjun Xin, Hang Li, Shaofu Zhang
    Frontiers in Neurology.2026;[Epub]     CrossRef
  • Prediction of type 1 complex regional pain syndrome with the presence of diaschisis in hemiplegic supratentorial stroke patients
    Seong Bok Choi, Myoung Hyoun Kim, Jong Joon Lee, Ji Hee Kim
    Topics in Stroke Rehabilitation.2026; : 1.     CrossRef
  • Crossed Cerebellar Diaschisis in a Patient with MELAS Syndrome: A Case Report
    Ivana Karla Franić, Andreja Bujan Kovač, Branko Malojčić
    The Cerebellum.2025;[Epub]     CrossRef
  • Clinical Reasoning: Acute and Progressive Cognitive Decline in a 38-Year-Old Man
    Lei Wu, Wei Jiang, RongRong Du, YuYing Liu, Sai Gao, Dehui Huang
    Neurology.2025;[Epub]     CrossRef
  • Advancing post-stroke outcome prediction with movement-specific structural and functional brain atlases
    Triana Karnadipa, Benjamin Chong, Vickie Shim, Justin Fernandez, David J. Lin, Cathy Stinear, Alan Wang
    NeuroImage.2025; 318: 121376.     CrossRef
  • Prediction of motor outcome based on brain perfusion single photon emission computed tomography in corona radiata infarct
    Eunjung Kong, Donghwi Park, Min Cheol Chang
    International Journal of Neuroscience.2024; 134(12): 1470.     CrossRef
  • Long-Term Lower Limb Motor Function Correlates with Middle Cerebellar Peduncle Structural Integrity in Sub-Acute Stroke: A ROI-Based MRI Cohort Study
    Daming Wang, Lingyan Wang, Dazhi Guo, Shuyi Pan, Lin Mao, Yifan Zhao, Liliang Zou, Ying Zhao, Aiqun Shi, Zuobing Chen
    Brain Sciences.2023; 13(3): 412.     CrossRef
  • Application study of DTI combined with ASL in the crossed cerebellar diaschisis after subacute cerebral hemorrhage
    Qinghua Zhang, Yundu Zhang, Qiang Shi, Lei Zhao, Yun Yue, Chengxin Yan
    Neurological Sciences.2023; 44(11): 3949.     CrossRef
  • Crossed cerebellar diaschisis after acute ischemic stroke detected by intravoxel incoherent motion magnetic resonance imaging
    Jianhong Ma, Lei Zhao, Kemei Yuan, Jingrui Yan, Yanbo Zhang, Jianzhong Zhu, Chengxin Yan
    Neurological Sciences.2022; 43(2): 1135.     CrossRef
  • 60 Years of Achievements by KSNM in Neuroimaging Research
    Jae Seung Kim, Hye Joo Son, Minyoung Oh, Dong Yun Lee, Hae Won Kim, Jungsu Oh
    Nuclear Medicine and Molecular Imaging.2022; 56(1): 3.     CrossRef
  • Voxel-based analysis of the metabolic asymmetrical and network patterns in hypermetabolism-associated crossed cerebellar diaschisis
    Yuankai Zhu, Ge Ruan, Sijuan Zou, Zhaoting Cheng, Xiaohua Zhu
    NeuroImage: Clinical.2022; 35: 103032.     CrossRef
  • Lateralization of the crossed cerebellar diaschisis-associated metabolic connectivities in cortico-ponto-cerebellar and cortico-rubral pathways
    Yuankai Zhu, Ge Ruan, Zhaoting Cheng, Sijuan Zou, Xiaohua Zhu
    NeuroImage.2022; 260: 119487.     CrossRef
  • Exploration of the clinical effect of 3D printing assisted prefrontal puncture in the treatment of hypertensive thalamic hemorrhage breaking into the ventricle
    Guoliang LI, Xingze LI, Yang LIU
    Minerva Medica.2022;[Epub]     CrossRef
  • Changes in subcortical white matter in the unaffected hemisphere following unilateral spontaneous intracerebral hemorrhage: a tract-based spatial statistics study
    Young Hyeon Kwon, Sung Ho Jang
    Journal of Integrative Neuroscience.2022;[Epub]     CrossRef
  • Crossed cerebellar diaschisis: risk factors and prognostic value in focal cortical dysplasia by 18F-FDG PET/CT
    Yaqin Hou, Kun Guo, Xiaotong Fan, Kun Shang, Jingjuan Wang, Zhenming Wang, Yongzhi Shan, Guoguang Zhao, Jie Lu
    Annals of Nuclear Medicine.2021; 35(6): 719.     CrossRef
  • Relationship between ischaemic symptoms during the early postoperative period in patients with moyamoya disease and changes in the cerebellar asymmetry index
    Satoshi Takahashi, Takashi Horiguchi
    Clinical Neurology and Neurosurgery.2020; 197: 106090.     CrossRef
  • Prognostic value of early glycosylated hemoglobin and blood glucose levels in patients with basal ganglia cerebral hemorrhage
    Wentao Sun, Qunliang Hu, Juan Wang, Ning Zheng, Kai Chen, Yanmin Wang, Shijun Zhang, Rongcai Jiang
    Journal of International Medical Research.2019;[Epub]     CrossRef
  • PET Imaging of Crossed Cerebellar Diaschisis after Long-Term Cerebral Ischemia in Rats
    Ana Joya, Daniel Padro, Vanessa Gómez-Vallejo, Sandra Plaza-García, Jordi Llop, Abraham Martín
    Contrast Media & Molecular Imaging.2018; 2018: 1.     CrossRef
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Transcallosal Fibers from Corticospinal Tract in Patients with Cerebral Hemorrage.
Kim, Wook Ro , Chang, Min Cheol , Park, Kyung A , Kwak, So Young , Do, Sung Jin , Jang, Sung Ho , Ahn, Sang Ho , Son, Su Min
J Korean Acad Rehabil Med 2009;33(6):657-663.
Objective
To investigate the relationship between the transcallosal fibers (TCFs) from the corticospinal tract (CST) and the motor function of the affected extremities in patients with cerebral hemorrhage, using diffusion tensor image tractography (DTT). Method: 49 patients with cerebral hemorrhage and 38 controls were recruited. DTT was performed using 1.5 T magnetic resonance imaging. The DTT findings were classified into 3 groups according to targeting location: no TCF from the CST (type A), TCF ended in the corpus callosum or connected to the cortex of the opposite hemisphere (type B), and TCF that descending toward the lesion after passing through the corpus callosum (type C). Results: The TCF originated from the CST of the unaffected hemisphere, and the presence of fiber descending toward the lesion after passing through the corpus callosum were significantly more prevalent in the patients who showed the worse motor function. Conclusion: The TCF originated from the unaffected CST toward the lesion in patients with cerebral hemorrhage might play a relevant role in compensating motor deficits in the major corticospinal disruption. (J Korean Acad Rehab Med 2009; 33: 657-663)
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