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首页> 外文期刊>Undersea and Hyperbaric Medicine: Journal of the Undersea and Hyperbaric Medical Society >Quantitative analysis tool for clinical functional MRI in mild traumatic brain injury
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Quantitative analysis tool for clinical functional MRI in mild traumatic brain injury

机译:临床功能的定量分析工具核磁共振在轻度创伤性脑损伤

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Functional magnetic resonance imaging (fMRI) has been available commercially for clinical diagnostic use for many years. However, both clinical interpretation of fMRI by a neuroradiologist and quantitative analysis of fMRI data can require significant personnel resources that exceed reimbursement. In this report, a fully automated computer-based quantification methodology (Enumerated Auditory Response, EAR) has been developed to provide an auditory fMRI assessment of patients who have suffered a mild traumatic brain injury. Fifty-five study participants with interpretable auditory fMRI sequence data were assessed by EAR analysis, as well as both clinical radiologist fMRI interpretation and voxelwise general linear model (GLM) analysis. Comparison between the clinical interpretation and the two computer analysis methods resulted in 67% concordance (identical), 32% near-concordance (one level difference), and 1% discordant. Comparison between the clinical computer-based quantification (EAR) and GLM analysis yielded significant correlations in right and left ear responses (p<0.05) for the full subject group. Automated fMRI quantification analysis equivalent to EAR might be appropriate for both future research projects with constrained resources, as well as possible routine clinical use.
机译:功能性磁共振成像(fMRI)是临床可用的商业诊断使用多年。功能磁共振成像的临床解释neuroradiologist和定量的分析功能磁共振成像数据需要大量人才资源超过报销。报告,一个完全自动化的计算机量化方法(枚举听觉响应,提供一个EAR)了患者的听觉功能磁共振成像评估遭受轻度创伤性脑损伤。55研究参与者与解释通过耳朵的听觉功能磁共振成像序列数据进行评估分析以及临床放射学家功能磁共振成像解释和voxelwise一般线性模型(GLM)分析。临床解释和两个计算机分析方法导致了67%的一致性(相同的),32% near-concordance(一个级别不和谐的区别),和1%。临床计算机之间的量化(EAR)和GLM分析了在左、右耳边显著相关性反应为完整的学科组(p < 0.05)。自动化的功能磁共振成像量化分析等价的的耳朵可能适用于未来与资源约束,研究项目以及可能的常规临床使用。

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