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首页> 外文期刊>IEEE Transactions on Medical Imaging >Cardiac and Respiratory Self-Gating in Radial MRI Using an Adapted Singular Spectrum Analysis (SSA-FARY)
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Cardiac and Respiratory Self-Gating in Radial MRI Using an Adapted Singular Spectrum Analysis (SSA-FARY)

机译:使用适应的奇异谱分析(SSA-FALY)的径向MRI中的心脏和呼吸自栅。(SSA-FARY)

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摘要

Cardiac Magnetic Resonance Imaging (MRI) is time-consuming and error-prone. To ease the patient's burden and to increase the efficiency and robustness of cardiac exams, interest in methods based on continuous steady-state acquisition and self-gating has been growing in recent years. Self-gating methods extract the cardiac and respiratory signals from the measurement data and then retrospectively sort the data into cardiac and respiratory phases. Repeated breathholds and synchronization with the heart beat using some external device as required in conventional MRI are then not necessary. In this work, we introduce a novel self-gating method for radially acquired data based on a dimensionality reduction technique for time-series analysis (SSA-FARY). Building on Singular Spectrum Analysis, a zero-padded, time-delayed embedding of the auto-calibration data is analyzed using Principle Component Analysis. We demonstrate the basic functionality of SSA-FARY using numerical simulations and apply it to in-vivo cardiac radial single-slice bSSFP and Simultaneous Multi-Slice radiofrequency-spoiled gradient-echo measurements, as well as to Stack-of-Stars bSSFP measurements. SSA-FARY reliably detects the cardiac and respiratory motion and separates it from noise. We utilize the generated signals for high-dimensional image reconstruction using parallel imaging and compressed sensing with in-plane wavelet and (spatio-)temporal total-variation regularization.
机译:心脏磁共振成像(MRI)是耗时和容易出错的。为了缓解患者的负担并提高心脏检查的效率和稳健性,近年来,基于持续稳态收购和自我门控的方法的兴趣已经不断增长。自选控方法从测量数据中提取心脏和呼吸信号,然后回顾性地将数据分类为心脏和呼吸阶段。然后,不需要在常规MRI中需要使用一些外部装置对心跳的重复呼吸和与心跳同步。在这项工作中,我们介绍了一种基于时间序列分析的维度减少技术的径向获取数据的新型自动游戏方法(SSA-FARY)。使用原理分析分析,分析了零频谱分析,通过原理分析分析了自动校准数据的零填充时间延迟嵌入。我们使用数值模拟演示SSA-FARY的基本功能,并将其应用于体内心脏径向单片BSSFP和同时多切片射频损坏梯度回声测量,以及堆栈的BSSFP测量。 SSA-FARY可靠地检测心脏和呼吸运动,并将其与噪声分开。我们利用使用平行成像和压缩检测与平面内小波和(时空)时间总变化正则化的高维图像重建信号。

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