磁粉成像
激发
物理
放松(心理学)
时间分辨率
信号(编程语言)
图像分辨率
稳态(化学)
磁化
计算机科学
计算物理学
核磁共振
光学
磁场
磁性纳米粒子
化学
量子力学
社会心理学
物理化学
纳米颗粒
程序设计语言
心理学
作者
Zhi Wei Tay,Daniel Hensley,Jie Ma,Prashant Chandrasekharan,Bo Zheng,Patrick Goodwill,Steven Conolly
标识
DOI:10.1109/tmi.2019.2898202
摘要
Magnetic particle imaging (MPI) is a promising new tracer-based imaging modality. The steady-state, nonlinear magnetization physics most fundamental to MPI typically predicts improving resolution with increasing tracer magnetic core size. For larger tracers, and given typical excitation slew rates, this steady-state prediction is compromised by dynamic processes that induce a significant secondary blur and prevent us from achieving high resolution using larger tracers. Here, we propose a new method of excitation and signal encoding in MPI we call pulsed MPI to overcome this phenomenon. Pulsed MPI allows us to directly encode the steady-state magnetic physics into the time-domain signal. This in turn gives rise to a simple reconstruction algorithm to obtain images free of secondary relaxation-induced blur. Here, we provide a detailed description of our approach in 1D, discuss how it compares with alternative approaches, and show experimental data demonstrating better than 500- [Formula: see text] resolution (at 7 T/m) with large tracers. Finally, we show experimental images from a 2D implementation.
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