首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Automatic slice positioning (ASP) for passive real-time tracking of interventional devices using projection-reconstruction imaging with echo-dephasing (PRIDE).
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Automatic slice positioning (ASP) for passive real-time tracking of interventional devices using projection-reconstruction imaging with echo-dephasing (PRIDE).

机译:自动切片定位(ASP),用于使用带有回声移相(PRIDE)的投影重建成像对介入设备进行被动实时跟踪。

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摘要

A novel and fast approach for passive real-time tracking of interventional devices using paramagnetic markers, termed "projection-reconstruction imaging with echo-dephasing" (PRIDE) is presented. PRIDE is based on the acquisition of echo-dephased projections along all three physical axes. Dephasing is preferably set to 4pi within each projection ensuring that background tissues do not contribute to signal formation and thus appear heavily suppressed. However, within the close vicinity of the paramagnetic marker, local gradient fields compensate for the intrinsic dephasing to form an echo. Successful localization of the paramagnetic marker with PRIDE is demonstrated in vitro and in vivo in the presence of different types of off-resonance (air/tissue interfaces, main magnetic field inhomogeneities, etc). In order to utilize the PRIDE sequence for vascular interventional applications, it was interleaved with balanced steady-state free precession (bSSFP) to provide positional updates to the imaged slice using a dedicated real-time feedback link. Active slice positioning (ASP) with PRIDE is demonstrated in vitro, requiring approximately 20 ms for the positional update to the imaging sequence, comparable to existing active tracking methods.
机译:提出了一种新的快速方法,用于使用顺磁标记物对介入设备进行被动实时跟踪,称为“具有回波移相的投影重建成像”(PRIDE)。 PRIDE基于沿所有三个物理轴的回波相减投影的采集。最好在每个投影内将相移设置为4pi,以确保背景组织不参与信号形成,因此看起来受到了严重抑制。但是,在顺磁标记的附近,局部梯度场会补偿固有的相移以形成回波。在存在不同类型的非共振(空气/组织界面,主磁场不均匀性等)的情况下,在体外和体内证明了PRIDE顺磁性标记物的成功定位。为了将PRIDE序列用于血管介入应用,它与平衡的稳态自由进动(bSSFP)交错使用,以使用专用的实时反馈链接为成像切片提供位置更新。在体外证明了使用PRIDE的主动切片定位(ASP),与现有的主动跟踪方法相比,需要大约20 ms才能更新成像序列的位置。

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