Citation:
Bao Yu, Xinyi Zhao, Huan Zhang, Yiwen Li, Mingli Peng, Yongchen Gou, Guang Jia, Haiming Fan. 氢原子核的自述:磁共振成像的基本原理与医学应用[J]. University Chemistry,
;2026, 41(9): 202-209.
doi:
10.12461/PKU.DXHX202507027
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磁共振成像(MRI)作为现代医学的重要工具,凭借无辐射危害、无穿透深度限制、高软组织分辨率以及多参数多序列成像的优势,是恶性肿瘤、神经系统和心脑血管疾病的重要诊断工具。从临床诊断到科研探索,MRI在提升疾病早期诊断、监测治疗效果和预后评估等方面发挥不可替代的作用。随着人工智能与超导技术的发展,快速高分辨成像、人工智能辅助影像诊断、超低场和超高场磁共振设备、便携式设备等创新正推动这一技术迈向更广阔的未来。本文通过拟人的手法,以氢原子核为第一人称,详细介绍了磁共振成像的基本原理和相关技术,重点科普磁共振成像在医学诊断方面的应用。
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