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本文引用的文献

1
T2-weighted four dimensional magnetic resonance imaging with result-driven phase sorting.采用结果驱动相位排序的T2加权四维磁共振成像
Med Phys. 2015 Aug;42(8):4460-71. doi: 10.1118/1.4923168.
2
Four-dimensional MRI using three-dimensional radial sampling with respiratory self-gating to characterize temporal phase-resolved respiratory motion in the abdomen.使用三维径向采样和呼吸自门控的四维磁共振成像来表征腹部的时间相位分辨呼吸运动。
Magn Reson Med. 2016 Apr;75(4):1574-85. doi: 10.1002/mrm.25753. Epub 2015 May 14.
3
Four dimensional magnetic resonance imaging with retrospective k-space reordering: a feasibility study.具有回顾性 k 空间重排的四维磁共振成像:一项可行性研究。
Med Phys. 2015 Feb;42(2):534-41. doi: 10.1118/1.4905044.
4
Free-breathing phase contrast MRI with near 100% respiratory navigator efficiency using k-space-dependent respiratory gating.使用基于k空间的呼吸门控技术的近100%呼吸导航效率的自由呼吸相位对比磁共振成像。
Magn Reson Med. 2014 Jun;71(6):2172-9. doi: 10.1002/mrm.24874. Epub 2013 Jul 30.
5
Respiration-based sorting of dynamic MRI to derive representative 4D-MRI for radiotherapy planning.基于呼吸的动态 MRI 分类,以获取用于放疗计划的有代表性的 4D-MRI。
Med Phys. 2013 May;40(5):051909. doi: 10.1118/1.4800808.
6
Respiratory amplitude guided 4-dimensional magnetic resonance imaging.呼吸幅度引导的 4 维磁共振成像。
Int J Radiat Oncol Biol Phys. 2013 May 1;86(1):198-204. doi: 10.1016/j.ijrobp.2012.12.014. Epub 2013 Feb 13.
7
Investigation of sliced body volume (SBV) as respiratory surrogate.切片体体积 (SBV) 作为呼吸替代指标的研究。
J Appl Clin Med Phys. 2013 Jan 7;14(1):3987. doi: 10.1120/jacmp.v14i1.3987.
8
Four-dimensional magnetic resonance imaging (4D-MRI) using image-based respiratory surrogate: a feasibility study.基于图像的呼吸替代物的四维磁共振成像(4D-MRI):一项可行性研究。
Med Phys. 2011 Dec;38(12):6384-94. doi: 10.1118/1.3658737.
9
Technical note: Correlation of respiratory motion between external patient surface and internal anatomical landmarks.技术说明:外部患者体表与内部解剖标志之间的呼吸运动相关性。
Med Phys. 2011 Jun;38(6):3157-64. doi: 10.1118/1.3589131.
10
Complications associated with the percutaneous insertion of fiducial markers in the thorax.胸腔内经皮插入基准标记物相关并发症。
Cardiovasc Intervent Radiol. 2010 Dec;33(6):1186-91. doi: 10.1007/s00270-010-9949-0. Epub 2010 Jul 27.

基于图像的呼吸替代物的回顾性四维磁共振成像:矢状-冠状-膈肌交点运动跟踪方法

Retrospective four-dimensional magnetic resonance imaging with image-based respiratory surrogate: a sagittal-coronal-diaphragm point of intersection motion tracking method.

作者信息

Liu Yilin, Yin Fang-Fang, Czito Brian G, Bashir Mustafa R, Palta Manisha, Cai Jing

机构信息

Duke University, Medical Physics Graduate Program, Durham, North Carolina, United States.

Duke University Medical Center, Department of Radiation Oncology, Durham, North Carolina, United States.

出版信息

J Med Imaging (Bellingham). 2017 Apr;4(2):024007. doi: 10.1117/1.JMI.4.2.024007. Epub 2017 Jun 19.

DOI:10.1117/1.JMI.4.2.024007
PMID:28653014
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5476176/
Abstract

A four-dimensional magnetic resonance imaging (4-D-MRI) technique with Sagittal-Coronal-Diaphragm Point-of-Intersection (SCD-PoI) as a respiratory surrogate is proposed. To develop an image-based respiratory surrogate, the SCD-PoI motion tracking method is used for retrospective 4-D-MRI reconstruction. Single-slice sagittal MR cine was acquired at a location near the center of the diaphragmatic dome. Multiple-slice coronal MR cines were acquired for 4-D-MRI reconstruction. As a motion surrogate, the diaphragm motion was measured from the PoI among the sagittal MRI cine plane, coronal MRI cine planes, and the diaphragm surface. These points were defined as the SCD-PoI. This point is used as a one-dimensional diaphragmatic navigator in our study. The 4-D-MRI technique was evaluated on a 4-D digital extended cardiac-torso (XCAT) human phantom, a motion phantom, and seven human subjects (five healthy volunteers and two cancer patients). Motion trajectories of a selected region of interest were measured on 4-D-MRI and compared with the known XCAT motion that served as references. The mean absolute amplitude difference ([Formula: see text]) and the cross-correlation coefficient (CC) of the comparisons were determined. 4-D-MRI of the XCAT phantom demonstrated highly accurate motion information ([Formula: see text], [Formula: see text]). Motion trajectories of the motion phantom measured on 4-D-MRI matched well with the references ([Formula: see text], [Formula: see text]). 4-D-MRI of human subjects showed minimal artifacts and clearly revealed the respiratory motion of organs and tumor (mean [Formula: see text]; mean [Formula: see text]). A 4-D-MRI technique with image-based respiratory surrogate has been developed and tested on phantoms and human subjects.

摘要

提出了一种以矢状面-冠状面-膈肌交点(SCD-PoI)作为呼吸替代物的四维磁共振成像(4-D-MRI)技术。为了开发基于图像的呼吸替代物,采用SCD-PoI运动跟踪方法进行回顾性4-D-MRI重建。在膈肌穹窿中心附近的位置采集单层矢状面MR电影。采集多层冠状面MR电影用于4-D-MRI重建。作为运动替代物,从矢状面MRI电影平面、冠状面MRI电影平面和膈肌表面之间的交点测量膈肌运动。这些点被定义为SCD-PoI。在我们的研究中,这个点被用作一维膈肌导航器。在一个四维数字扩展心脏-躯干(XCAT)人体模型、一个运动模型和七名受试者(五名健康志愿者和两名癌症患者)上对4-D-MRI技术进行了评估。在4-D-MRI上测量选定感兴趣区域的运动轨迹,并与用作参考的已知XCAT运动进行比较。确定比较的平均绝对幅度差([公式:见正文])和互相关系数(CC)。XCAT模型的4-D-MRI显示出高度准确的运动信息([公式:见正文],[公式:见正文])。在4-D-MRI上测量的运动模型的运动轨迹与参考轨迹匹配良好([公式:见正文],[公式:见正文])。人体受试者的4-D-MRI显示伪影最少,清楚地揭示了器官和肿瘤的呼吸运动(平均[公式:见正文];平均[公式:见正文])。已经开发了一种具有基于图像的呼吸替代物的4-D-MRI技术,并在模型和人体受试者上进行了测试。