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用于磁粒子成像和磁共振成像的双峰介入器械标记物——概念验证研究

Bimodal Interventional Instrument Markers for Magnetic Particle Imaging and Magnetic Resonance Imaging-A Proof-of-Concept Study.

作者信息

Wegner Franz, Lüdtke-Buzug Kerstin, Cremers Sjef, Friedrich Thomas, Sieren Malte M, Haegele Julian, Koch Martin A, Saritas Emine U, Borm Paul, Buzug Thorsten M, Barkhausen Joerg, Ahlborg Mandy

机构信息

Department of Radiology and Nuclear Medicine, University Hospital Schleswig-Holstein, 23562 Luebeck, Germany.

Institute of Medical Engineering, University of Luebeck, 23538 Luebeck, Germany.

出版信息

Nanomaterials (Basel). 2022 May 21;12(10):1758. doi: 10.3390/nano12101758.

Abstract

The purpose of this work was to develop instrument markers that are visible in both magnetic particle imaging (MPI) and magnetic resonance imaging (MRI). The instrument markers were based on two different magnetic nanoparticle types (synthesized in-house KLB and commercial Bayoxide E8706). Coatings containing one of both particle types were fabricated and measured with a magnetic particle spectrometer (MPS) to estimate their MPI performance. Coatings based on both particle types were then applied on a segment of a nonmetallic guidewire. Imaging experiments were conducted using a commercial, preclinical MPI scanner and a preclinical 1 tesla MRI system. MPI image reconstruction was performed based on system matrices measured with dried KLB and Bayoxide E8706 coatings. The bimodal markers were clearly visible in both methods. They caused circular signal voids in MRI and areas of high signal intensity in MPI. Both the signal voids as well as the areas of high signal intensity were larger than the real marker size. Images that were reconstructed with a Bayoxide E8706 system matrix did not show sufficient MPI signal. Instrument markers with bimodal visibility are essential for the perspective of monitoring cardiovascular interventions with MPI/MRI hybrid systems.

摘要

这项工作的目的是开发在磁粒子成像(MPI)和磁共振成像(MRI)中均可见的器械标记物。这些器械标记物基于两种不同类型的磁性纳米颗粒(内部合成的KLB和商业产品Bayoxide E8706)。制备了包含这两种颗粒类型之一的涂层,并使用磁粒子光谱仪(MPS)进行测量,以评估其MPI性能。然后将基于这两种颗粒类型的涂层应用于一段非金属导丝上。使用商用临床前MPI扫描仪和临床前1特斯拉MRI系统进行成像实验。基于用干燥的KLB和Bayoxide E8706涂层测量的系统矩阵进行MPI图像重建。在这两种方法中,双峰标记物均清晰可见。它们在MRI中导致圆形信号空洞,在MPI中导致高信号强度区域。信号空洞以及高信号强度区域均大于实际标记物尺寸。用Bayoxide E8706系统矩阵重建的图像未显示出足够的MPI信号。具有双峰可见性的器械标记物对于使用MPI/MRI混合系统监测心血管介入手术的前景至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef9a/9148153/0fdd09114d2d/nanomaterials-12-01758-g001.jpg

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