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Translating research findings into clinical practice: a systematic and critical review of neuroimaging-based clinical tools for brain disorders

机译:将研究发现转化为临床实践:对脑疾病临床临床临床工具的系统和关键综述

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A pivotal aim of psychiatric and neurological research is to promote the translation of the findings into clinical practice to improve diagnostic and prognostic assessment of individual patients. Structural neuroimaging holds much promise, with neuroanatomical measures accounting for up to 40% of the variance in clinical outcome. Building on these findings, a number of imaging-based clinical tools have been developed to make diagnostic and prognostic inferences about individual patients from their structural Magnetic Resonance Imaging scans. This systematic review describes and compares the technical characteristics of the available tools, with the aim to assess their translational potential into real-world clinical settings. The results reveal that a total of eight tools. All of these were specifically developed for neurological disorders, and as such are not suitable for application to psychiatric disorders. Furthermore, most of the tools were trained and validated in a single dataset, which can result in poor generalizability, or using a small number of individuals, which can cause overoptimistic results. In addition, all of the tools rely on two strategies to detect brain abnormalities in single individuals, one based on univariate comparison, and the other based on multivariate machine-learning algorithms. We discuss current barriers to the adoption of these tools in clinical practice and propose a checklist of pivotal characteristics that should be included in an “ideal” neuroimaging-based clinical tool for brain disorders.
机译:精神病和神经学研究的关键目标是促进调查结果转化为临床实践,以改善个体患者的诊断和预后评估。结构性神经影像患者具有很大的承诺,神经解析措施占临床结果方差的40%。建立在这些发现中,已经开发了许多基于成像的临床工具,用于对其结构磁共振成像扫描进行对个体患者的诊断和预后推论。该系统审查描述并比较了可用工具的技术特征,旨在将其转化潜力评估为现实世界的临床环境。结果表明,共有八个工具。所有这些都是专门为神经系统疾病开发的,因此不适合应用于精神病疾病。此外,大多数工具在单个数据集中培训并验证,这可能导致易概率差,或者使用少数个体,这可能导致过度的结果。此外,所有工具都依赖于两种策略来检测单个人的大脑异常,一个基于单变量比较,另一个基于多变量机器学习算法。我们讨论了当前在临床实践中采用这些工具的目前的障碍,并提出了一种枢轴特征的清单,该特征应包括在脑疾病的“理想”神经影像动物的临床工具中。

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