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Radiomics in Stroke Neuroimaging: Techniques Applications and Challenges

机译:中风神经影像中的辐射瘤:技术应用和挑战

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摘要

Stroke is a leading cause of disability and mortality worldwide, resulting in substantial economic costs for post-stroke care each year. Neuroimaging, such as cranial computed tomography or magnetic resonance imaging, is the backbone of stroke management strategies, which can guide treatment decision-making (thrombolysis or hemostasis) at an early stage. With advances in computational technologies, particularly in machine learning, visual image information can now be converted into numerous quantitative features in an objective, repeatable, and high-throughput manner, in a process known as radiomics. Radiomics is mainly used in the field of oncology, which remains an area of active research. Over the past few years, investigators have attempted to apply radiomics to stroke in the hope of gaining benefits similar to those obtained in cancer management, i.e., in promoting the development of personalized precision medicine. Currently, radiomic analysis has shown promise for a variety of applications in stroke, including the diagnosis of stroke lesions, early prediction of outcomes, and evaluation for long-term prognosis. In this article, we elaborate the contributions of radiomics to stroke, as well as the subprocesses and techniques involved in radiomics studies. We also discuss the potential challenges facing its widespread implementation in routine practice and the directions for future research.
机译:中风是全世界残疾和死亡率的主要原因,每年卒中后护理的经济成本很大。神经影像如颅骨计算机断层扫描或磁共振成像,是行程管理策略的骨干,可以在早期阶段引导治疗决策(溶栓或止血)。通过计算技术的进步,特别是在机器学习中,现在可以在称为射频的过程中以目标,可重复的和高吞吐量的方式转换为许多定量特征的视觉图像信息。辐射瘤主要用于肿瘤领域,仍然是积极研究的领域。在过去几年中,调查人员试图将射频应用于中风,希望获得类似于癌症管理中获得的益处,即促进个性化精密药物的发展。目前,辐射瘤分析表明了卒中中各种应用,包括诊断中风病变,早期预测结果,以及长期预后的评估。在本文中,我们详细阐述了射频对中风的贡献,以及参与射频研究的子过程和技巧。我们还讨论了在日常实践中普遍实施的潜在挑战以及未来研究的指示。

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