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Evolution of hybrid functional imaging in bioelectromagnetics research

机译:混合功能成像在生物电磁学研究中的发展

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摘要

The field of bioelectromagnetics, consisting of the study of the interaction between electromagnetic fields and biological systems, has been rapidly expanding in the recent years. One important factor that contributes importantly to the development of this field is the continuing advances in technology allowing researchers to investigate different endpoints, or to more precisely measure changes, if any. Hybrid functional imaging is a rapidly maturing field that opens new, important horizons for bioelectromagnetics research. Indeed, unraveling the interaction mechanisms of electromagnetic fields on biological systems (with an emphasis on the brain) requires a monitoring of electrical, functional, and metabolic activity of living tissue at different temporal and spatial scales. Individual tools (e.g., electroencephalography, EEG; functional magnetic resonance imaging, fMRI) are limited in their ability to detect the effects of electromagnetic interaction at specific temporal and spatial scales, so combining these imaging methods offers a unique opportunity to provide a more comprehensive view of effects in living tissue. In this paper, we will present the different imaging techniques that are available to bioelectromagnetics researchers, including their capabilities and how they are complemented by simultaneous hybrid imaging. Future possibilities of hybrid imaging technologies are discussed.
机译:近年来,包括电磁场和生物系统之间相互作用的研究在内的生物电磁学领域迅速发展。对这一领域的发展做出重要贡献的一个重要因素是技术的不断进步,使研究人员能够研究不同的终点,或者更精确地测量变化(如果有)。混合功能成像是一个快速成熟的领域,为生物电磁学研究开辟了新的重要视野。的确,要弄清生物系统(重点是大脑)上电磁场的相互作用机制,需要在不同的时空尺度上监测活组织的电,功能和代谢活动。个别工具(例如,脑电图,脑电图;功能磁共振成像,fMRI)在特定时空尺度上检测电磁相互作用影响的能力有限,因此结合使用这些成像方法可提供独特的机会来提供更全面的视图在活组织中的作用。在本文中,我们将介绍生物电磁学研究人员可用的不同成像技术,包括其功能以及如何通过同时混合成像对它们进行补充。讨论了混合成像技术的未来可能性。

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  • 来源
    《The environmentalist》 |2011年第2期|p.134-139|共6页
  • 作者单位

    Bioelectromagnetics Group, Imaging Program, Lawson Health Research Institute, 268 Grosvenor St., London,ON N6A 4V2, Canada,Departments of Medical Biophysics and Medical Imaging,Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada;

    Bioelectromagnetics Group, Imaging Program, Lawson Health Research Institute, 268 Grosvenor St., London,ON N6A 4V2, Canada,Departments of Medical Biophysics and Medical Imaging,Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada;

    Departments of Medical Biophysics and Medical Imaging,Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada;

    Bioelectromagnetics Group, Imaging Program, Lawson Health Research Institute, 268 Grosvenor St., London,ON N6A 4V2, Canada,Departments of Medical Biophysics and Medical Imaging,Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada;

    Bioelectromagnetics Group, Imaging Program, Lawson Health Research Institute, 268 Grosvenor St., London,ON N6A 4V2, Canada,Departments of Medical Biophysics and Medical Imaging,Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada;

    Bioelectromagnetics Group, Imaging Program, Lawson Health Research Institute, 268 Grosvenor St., London,ON N6A 4V2, Canada,Departments of Medical Biophysics and Medical Imaging,Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada;

    Bioelectromagnetics Group, Imaging Program, Lawson Health Research Institute, 268 Grosvenor St., London,ON N6A 4V2, Canada,Departments of Medical Biophysics and Medical Imaging,Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bioelectromagnetics; functional imaging; BOLD; PET; ASL; EEG; hybrid imaging;

    机译:生物电磁学功能成像;胆大;宠物;ASL;脑电图;混合成像;

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