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使用无线磁共振成像探测器阵列进行设备定位和动态扫描平面选择。

Device localization and dynamic scan plane selection using a wireless magnetic resonance imaging detector array.

作者信息

Riffe Matthew J, Yutzy Stephen R, Jiang Yun, Twieg Michael D, Blumenthal Colin J, Hsu Daniel P, Pan Li, Gilson Wesley D, Sunshine Jeffrey L, Flask Christopher A, Duerk Jeffrey L, Nakamoto Dean, Gulani Vikas, Griswold Mark A

机构信息

Biomedical Engineering, Case Western Reserve University, Cleveland, Ohio, USA.

出版信息

Magn Reson Med. 2014 Jun;71(6):2243-9. doi: 10.1002/mrm.24853. Epub 2013 Jul 30.

Abstract

PURPOSE

A prototype wireless guidance device using single sideband amplitude modulation (SSB) is presented for a 1.5T magnetic resonance imaging system.

METHODS

The device contained three fiducial markers each mounted to an independent receiver coil equipped with wireless SSB technology. Acquiring orthogonal projections of these markers determined the position and orientation of the device, which was used to define the scan plane for a subsequent image acquisition. Device localization and scan plane update required approximately 30 ms, so it could be interleaved with high temporal resolution imaging. Since the wireless device is used for localization and does not require full imaging capability, the design of the SSB wireless system was simplified by allowing an asynchronous clock between the transmitter and receiver.

RESULTS

When coupled to a high readout bandwidth, the error caused by the lack of a shared frequency reference was quantified to be less than one pixel (0.78 mm) in the projection acquisitions. Image guidance with the prototype was demonstrated with a phantom where a needle was successfully guided to a target and contrast was delivered.

CONCLUSION

The feasibility of active tracking with a wireless detector array is demonstrated. Wireless arrays could be incorporated into devices to assist in image-guided procedures.

摘要

目的

提出一种用于1.5T磁共振成像系统的采用单边带调幅(SSB)的原型无线引导装置。

方法

该装置包含三个基准标记,每个标记安装在配备无线SSB技术的独立接收线圈上。获取这些标记的正交投影可确定装置的位置和方向,用于定义后续图像采集的扫描平面。装置定位和扫描平面更新大约需要30毫秒,因此可以与高时间分辨率成像交错进行。由于无线装置用于定位且不需要完整的成像能力,通过允许发射器和接收器之间采用异步时钟简化了SSB无线系统的设计。

结果

当与高读出带宽耦合时,在投影采集中,由缺乏共享频率参考引起的误差经量化小于一个像素(0.78毫米)。使用该原型进行图像引导在一个模型上得到了证明,其中一根针被成功引导至目标并注入了造影剂。

结论

证明了使用无线探测器阵列进行主动跟踪的可行性。无线阵列可被纳入设备以协助图像引导程序。

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