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磁粒子/磁共振成像:体外MPI引导的实时导管追踪及使用路线图和血池示踪剂方法的4D血管成形术

Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach.

作者信息

Salamon Johannes, Hofmann Martin, Jung Caroline, Kaul Michael Gerhard, Werner Franziska, Them Kolja, Reimer Rudolph, Nielsen Peter, Vom Scheidt Annika, Adam Gerhard, Knopp Tobias, Ittrich Harald

机构信息

Department of Diagnostic and Interventional Radiology and Nuclear Medicine, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

Section for Biomedical Imaging, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

出版信息

PLoS One. 2016 Jun 1;11(6):e0156899. doi: 10.1371/journal.pone.0156899. eCollection 2016.

Abstract

PURPOSE

In-vitro evaluation of the feasibility of 4D real time tracking of endovascular devices and stenosis treatment with a magnetic particle imaging (MPI) / magnetic resonance imaging (MRI) road map approach and an MPI-guided approach using a blood pool tracer.

MATERIALS AND METHODS

A guide wire and angioplasty-catheter were labeled with a thin layer of magnetic lacquer. For real time MPI a custom made software framework was developed. A stenotic vessel phantom filled with saline or superparamagnetic iron oxide nanoparticles (MM4) was equipped with bimodal fiducial markers for co-registration in preclinical 7T MRI and MPI. In-vitro angioplasty was performed inflating the balloon with saline or MM4. MPI data were acquired using a field of view of 37.3×37.3×18.6 mm3 and a frame rate of 46 volumes/sec. Analysis of the magnetic lacquer-marks on the devices were performed with electron microscopy, atomic absorption spectrometry and micro-computed tomography.

RESULTS

Magnetic marks allowed for MPI/MRI guidance of interventional devices. Bimodal fiducial markers enable MPI/MRI image fusion for MRI based roadmapping. MRI roadmapping and the blood pool tracer approach facilitate MPI real time monitoring of in-vitro angioplasty. Successful angioplasty was verified with MPI and MRI. Magnetic marks consist of micrometer sized ferromagnetic plates mainly composed of iron and iron oxide.

CONCLUSIONS

4D real time MP imaging, tracking and guiding of endovascular instruments and in-vitro angioplasty is feasible. In addition to an approach that requires a blood pool tracer, MRI based roadmapping might emerge as a promising tool for radiation free 4D MPI-guided interventions.

摘要

目的

采用磁粒子成像(MPI)/磁共振成像(MRI)路线图方法和使用血池示踪剂的MPI引导方法,对血管内装置的4D实时跟踪及狭窄治疗的可行性进行体外评估。

材料与方法

一根导丝和血管成形术导管用一层薄磁漆标记。为进行实时MPI,开发了一个定制的软件框架。一个充满盐水或超顺磁性氧化铁纳米颗粒(MM4)的狭窄血管模型配备了双峰基准标记,用于在临床前7T MRI和MPI中进行配准。使用盐水或MM4对球囊充气进行体外血管成形术。使用37.3×37.3×18.6 mm3的视野和46帧/秒的帧率采集MPI数据。通过电子显微镜、原子吸收光谱法和微型计算机断层扫描对装置上的磁漆标记进行分析。

结果

磁标记可实现介入装置的MPI/MRI引导。双峰基准标记可实现基于MRI路线图的MPI/MRI图像融合。MRI路线图和血池示踪剂方法有助于对体外血管成形术进行MPI实时监测。通过MPI和MRI验证了血管成形术成功。磁标记由主要由铁和氧化铁组成的微米级铁磁板构成。

结论

对血管内器械和体外血管成形术进行4D实时MP成像、跟踪和引导是可行的。除了需要血池示踪剂的方法外,基于MRI的路线图可能会成为无辐射4D MPI引导干预的一种有前景的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9f9/4889036/9af7feba9a93/pone.0156899.g001.jpg

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