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使用带有共振水抑制的反转恢复技术(IRON)对氧化铁标记的干细胞进行阳性对比可视化。

Positive contrast visualization of iron oxide-labeled stem cells using inversion-recovery with ON-resonant water suppression (IRON).

作者信息

Stuber Matthias, Gilson Wesley D, Schär Michael, Kedziorek Dorota A, Hofmann Lawrence V, Shah Saurabh, Vonken Evert-Jan, Bulte Jeff W M, Kraitchman Dara L

机构信息

Russell H. Morgan Department of Radiology and Radiological Science, Division of MR Research, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21287, USA.

出版信息

Magn Reson Med. 2007 Nov;58(5):1072-7. doi: 10.1002/mrm.21399.


DOI:10.1002/mrm.21399
PMID:17969120
Abstract

In proton magnetic resonance imaging (MRI) metallic substances lead to magnetic field distortions that often result in signal voids in the adjacent anatomic structures. Thus, metallic objects and superparamagnetic iron oxide (SPIO)-labeled cells appear as hypointense artifacts that obscure the underlying anatomy. The ability to illuminate these structures with positive contrast would enhance noninvasive MR tracking of cellular therapeutics. Therefore, an MRI methodology that selectively highlights areas of metallic objects has been developed. Inversion-recovery with ON-resonant water suppression (IRON) employs inversion of the magnetization in conjunction with a spectrally-selective on-resonant saturation prepulse. If imaging is performed after these prepulses, positive signal is obtained from off-resonant protons in close proximity to the metallic objects. The first successful use of IRON to produce positive contrast in areas of metallic spheres and SPIO-labeled stem cells in vitro and in vivo is presented.

摘要

在质子磁共振成像(MRI)中,金属物质会导致磁场畸变,这常常会在相邻解剖结构中产生信号缺失。因此,金属物体和超顺磁性氧化铁(SPIO)标记的细胞表现为低信号伪影,从而掩盖了其下方的解剖结构。利用阳性对比剂来显示这些结构的能力将增强细胞治疗的无创性磁共振追踪。因此,已经开发出一种能够选择性突出金属物体区域的MRI方法。具有共振水抑制功能的反转恢复(IRON)技术结合了磁化反转和频谱选择性共振饱和预脉冲。如果在这些预脉冲之后进行成像,靠近金属物体的非共振质子会产生阳性信号。本文展示了IRON首次成功用于在体外和体内金属球及SPIO标记的干细胞区域产生阳性对比的情况。

相似文献

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Positive contrast visualization of iron oxide-labeled stem cells using inversion-recovery with ON-resonant water suppression (IRON).

Magn Reson Med. 2007-11

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Iron oxide based magnetic nanoparticles for hyperthermia, MRI and drug delivery applications: a review.

RSC Adv. 2025-4-14

[2]
Positive susceptibility-based contrast imaging with dephased balanced steady-state free precession.

Magn Reson Med. 2025-7

[3]
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Circ Cardiovasc Imaging. 2023-1

[4]
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Nanomaterials (Basel). 2022-8-12

[5]
Multispectral Imaging for Metallic Biopsy Marker Detection During MRI-Guided Breast Biopsy: A Feasibility Study for Clinical Translation.

Front Oncol. 2021-3-22

[6]
Ferumoxytol-enhanced ultrashort TE MRA and quantitative morphometry of the human kidney vasculature.

Abdom Radiol (NY). 2021-7

[7]
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J Cardiovasc Magn Reson. 2019-12-16

[8]
Dipole modeling of multispectral signal for detecting metallic biopsy markers during MRI-guided breast biopsy: a pilot study.

Magn Reson Med. 2020-4

[9]
Magnetoliposomes as Contrast Agents for Longitudinal in vivo Assessment of Transplanted Pancreatic Islets in a Diabetic Rat Model.

Sci Rep. 2018-7-31

[10]
MR imaging of magnetic ink patterns via off-resonance sensitivity.

Magn Reson Med. 2018-3-30

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