用于实时监测磁共振成像中运动伪影的柔性传感器

IF 8.2 1区 化学 Q1 CHEMISTRY, ANALYTICAL
Yiran Hu, Chengcheng Han, Xiaoqing Huo, Xiaole Cao, Yongyang Chen, Zhi Cao, Yong Xu, Li Tao* and Zhiyi Wu*, 
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引用次数: 0

摘要

近年来,磁共振成像技术被广泛应用于医疗领域。在扫描过程中,如果人体移动,扫描图像上就会出现运动伪影,干扰诊断,只有在扫描序列结束后才能发现,造成人力物力的浪费。然而,目前还缺乏一旦出现运动伪影就能停止扫描的技术。在此,我们设计了一种实时监测传感器(RMS),可动态感知人体运动,并在运动超过一定幅度时及时暂停。传感器采用阵列结构,可以实时准确地感知人体位置。RMS 的选择可确保扫描结果不会受到额外干扰。基于这种设计,RMS 可以实现对运动伪影产生的监测功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Flexible Sensor for Real-Time Monitoring of Motion Artifacts in Magnetic Resonance Imaging

Flexible Sensor for Real-Time Monitoring of Motion Artifacts in Magnetic Resonance Imaging

Flexible Sensor for Real-Time Monitoring of Motion Artifacts in Magnetic Resonance Imaging

In recent years, magnetic resonance imaging has been widely used in the medical field. During the scan, if the human body moves, then there will be motion artifacts on the scan image, which will interfere with the diagnosis and only be found after the end of the scan sequence, resulting in a waste of manpower and resources. However, there is a lack of technology that halts scanning once motion artifacts arise. Here, we designed a real-time monitoring sensor (RMS) to dynamically perceive the movement of the human body and to pause in time when the movement exceeds a certain amplitude. The sensor has an array structure that can accurately sense the position of the human body in real time. The selection of the RMS ensures that there is no additional interference with the scanning results. Based on this design, the RMS can achieve the monitoring function of motion artifact generation.

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来源期刊
ACS Sensors
ACS Sensors Chemical Engineering-Bioengineering
CiteScore
14.50
自引率
3.40%
发文量
372
期刊介绍: ACS Sensors is a peer-reviewed research journal that focuses on the dissemination of new and original knowledge in the field of sensor science, particularly those that selectively sense chemical or biological species or processes. The journal covers a broad range of topics, including but not limited to biosensors, chemical sensors, gas sensors, intracellular sensors, single molecule sensors, cell chips, and microfluidic devices. It aims to publish articles that address conceptual advances in sensing technology applicable to various types of analytes or application papers that report on the use of existing sensing concepts in new ways or for new analytes.
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