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Comparison of “Normal” Craniocerebral Computed Tomography of Deceased and Living Individuals
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作者 Xiaofei Liu Wenju Jin +4 位作者 Zhiyuan Xia Lan Du Chunsheng Li Qing Chen Li Liu 《Journal of Forensic Science and Medicine》 2020年第4期111-116,共6页
To compare“normal”craniocerebral computed tomography(CT)of deceased and living individuals.Nineteen parameters of craniocerebral CT scans of 50 deceased and 50 living individuals that met specific filtering criteria... To compare“normal”craniocerebral computed tomography(CT)of deceased and living individuals.Nineteen parameters of craniocerebral CT scans of 50 deceased and 50 living individuals that met specific filtering criteria were measured separately:The intensity(CT value)ratio of gray matter to white matter(GM/WM),maximum and minimum length of frontal horn of ventricle,transverse diameter of cerebral parenchyma,length of choroid plexus,maximum external diameter of body of lateral ventricle,maximum internal transverse diameter of cranium,length of cerebral longitudinal fissure,length between two calvarium,transverse and longitudinal diameter of the third and fourth ventricle,length of the cerebral longitudinal fissure,Hackman value,ventricular index(D/A),index of the somatic part of lateral ventricle(F/E),lateral ventricular body index(G/E),frontal horn index(G/A),and ventriculocranial ratio(VCR).The values of these 19 parameters for the deceased and living individuals were performed using statistical methods.There were significant statistic differences between deceased and living individuals in terms of eight craniocerebral CT parameters,including GM/WM,D/A,transverse diameter of the fourth ventricle,and length of the cerebral longitudinal fissure.The craniocerebral CT findings differ between deceased and living individuals.Knowledge of the normal postmortem craniocerebral CT parameters is key to correct postmortem craniocerebral radiopathological diagnosis. 展开更多
关键词 CRANIOCEREBRAL deceased living individual postmortem computed tomography postmortem cross-sectional imaging
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Postischemic Housing Environment on Cerebral Metabolism and Neuron Apoptosis after Focal Cerebral Ischemia in Rats 被引量:7
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作者 Hai-zhou QIAN Hong ZHANG +1 位作者 Lin-ling YIN Jun-jian ZHANG 《Current Medical Science》 SCIE CAS 2018年第4期656-665,共10页
The purpose of this study was to evaluate the roles of different housing environments in neurological function, cerebral metabolism, cerebral infarction and neuron apoptosis after focal cerebral ischemia. Twenty-eight... The purpose of this study was to evaluate the roles of different housing environments in neurological function, cerebral metabolism, cerebral infarction and neuron apoptosis after focal cerebral ischemia. Twenty-eight Sprague-Dawley rats were divided into control group (CG) and cerebral ischemia group, and the latter was further divided into subgroups of different housing conditions: standard environment (SE) subgroup, individual living environment (IE) subgroup, and enriched environment (EE) subgroup. Focal cerebral ischemia was induced by the middle cerebral artery occlusion (MCAO). Beam walking test was used to quantify the changes of overall motor function. Cerebral infarction and cerebral metabolism were studied by in vivo magnetic resonance imaging and 1H-magnetic resonance spectra, respectively. Neuron necrosis and apoptosis were detected by hematoxylin-eosin and TUNEL staining methods, respectively. The results showed that performance on the beam-walk test was improved in EE subgroup when compared to SE subgroup and IE subgroup. Cerebral infarct volume in IE subgroup was significantly larger than that in SE subgroup (P〈0.05) and EE subgroup (P〈0.05) on day 14 after MCAO. NAA/Cr and Cho/Cr ratios were lower in MCAO groups under different housing conditions as compared to those in CG (P〈0.05). NAA/Cr ratio was lower in IE subgroup (P〈0.05) and higher in EE subgroup (P〈0.05) than that in SE subgroup. NAA/ Cr ratio in EE was significantly higher than that in IE subgroup (P〈0.05). Cho/Cr ratio was decreased in MCAO groups as compared to that in CG (P〈0.05). A significant decrease in normal neurons in cerebral cortex was observed in MCAO groups as compared to CG (P〈0.05). The amount of normal neurons was less in IE subgroup (P〈0.05), and more in EE subgroup (P〈0.05) than that in SE subgroup after MCAO. The amotmt of normal neurons in EE subgroup was significantly more than that in IE subgroup after MCAO (P〈0.05). The ratio of TUNEL-positive neurons in EE was significantly lower than that in SE subgroup (P〈0.05) and IE subgroup (P〈0.05). Correlation analysis showed that the beam walking test was negatively correlated with NAA/Cr ratio (P〈0.05). Cerebral infarct volume was negatively correlated with both NAA/Cr ratio (P〈0.01) and Cho/Cr ratio (P〈0.01). The amount of normal cortical neurons was positively correlated with both NAA/Cr ratio (P〈0.0I) and Cho/Cr ratio (P〈0.05). The TUNEL-positive neurons showed a negative correlation with both NAA/Cr ratio (P〈0.01) and Cho/Cr ratio (P〈0.01). This study goes further to show that EE may improve neurological functional deficit and cerebral metabolism, decrease cerebral infarct volume, neuron necrosis and apoptosis, while IE may aggravate brain damage after MCAO. 展开更多
关键词 cerebral ischemia enriched environment individual living environment cerebral metabolism neuron apoptosis
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