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Quantification of regional left ventricular function from electrocardiogram-gated cardiac nuclear medicine tomographic images.

机译:从心电图门控心脏核医学断层扫描图像量化区域左心室功能。

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Single Photon Emission Computed Tomography (SPECT) and Positron Emission Tomography (PET) have the unique potential to provide a three-dimensional (3D) map of perfusion/metabolic activity throughout the left ventricle (LV) of the heart. Through electrocardiogram gating of the acquisition, these modalities have the potential to also allow the assessment of global and regional mechanical function. However, a number of physical factors, including image noise and poor spatial resolution, limit the clinical utility of these modalities. In this work, we investigate various data analysis techniques in order to (1) recover the true cardiac radioisotope distribution from noisy, blurry images, and (2) establish a scheme to assess regional LV function quantitatively.; First, we discuss a resolution-correcting, model-based fitting method for measuring regional wall thickening (TK) from gated 18F PET/201Tl SPECT perfusion/metabolism studies. To reduce the method's high sensitivity to noise, we introduce a refinement of the model by applying a temporal constraint on the tracer uptake within the LV, and fitting profile data from all time-points simultaneously. Experiments using mathematical and physical phantom data indicated a reduced variability in TK.; We then extended the model to two spatial dimensions, while introducing Fourier constraints on the LV's shape and motion. We applied the method to simulated 99mTc SPECT gated blood pool (GBP) images, in which the tracer binds to the blood rather than the LV muscle. Results suggest that lower-frequency terms describing the LV shape and motion can be recovered despite high noise-levels and poor resolution. Next, we investigated the feasibility of short-duration cardiac stress GBP studies. Rest scans of 10 normals and two patients (obtained from the Nuclear Medicine Department, Clinical Center, National Institutes of Health) were analyzed quantitatively, and the clinical impact of increased noise was estimated. We found that stress studies may provide reliable regional LV function measurements, despite the increased noise.; Finally, we developed 3D and 4D spherical harmonic Models for 201Tl SPECT perfusion data. Results were assessed qualitatively using actual patient data and quantitatively using simulations. Our methods compared unfavorably with 1D and 2D models when applied to ideal data, but outperformed them at a realistic noise-level and resolution.
机译:单光子发射计算机断层扫描(SPECT)和正电子发射断层扫描(PET)具有提供心脏整个左心室(LV)灌注/代谢活动的三维(3D)映射的独特潜力。通过采集的心电图门控,这些模式也有可能允许评估整体和区域机械功能。但是,许多物理因素(包括图像噪声和较差的空间分辨率)限制了这些方式的临床实用性。在这项工作中,我们研究了各种数据分析技术,以(1)从嘈杂,模糊的图像中恢复真正的心脏放射性同位素分布,以及(2)建立定量评估区域左室功能的方案。首先,我们讨论了一种基于分辨率校正,基于模型的拟合方法,用于通过门控18F PET / 201T1 SPECT灌注/代谢研究来测量区域壁增厚(TK)。为了降低该方法对噪声的高度敏感性,我们通过对LV内的示踪剂吸收施加时间约束并同时拟合所有时间点的剖面数据来引入模型的改进。使用数学和物理幻象数据进行的实验表明,TK的可变性有所降低。然后,我们将模型扩展到两个空间维度,同时对LV的形状和运动引入傅立叶约束。我们将该方法应用于模拟的99mTc SPECT门控血池(GBP)图像,其中示踪剂与血液而不是LV肌肉结合。结果表明,尽管噪声水平较高且分辨率较差,但可以恢复描述LV形状和运动的低频术语。接下来,我们调查了短期心脏应激GBP研究的可行性。定量分析了10名正常人和2名患者(从美国国立卫生研究院临床医学中心的核医学科获得)的静息扫描,并评估了噪声增加的临床影响。我们发现,尽管噪声增加,压力研究仍可提供可靠的局部左室功能测量。最后,我们为201Tl SPECT灌注数据开发了3D和4D球谐模型。使用实际患者数据定性评估结果,并使用模拟定量评估结果。当应用于理想数据时,我们的方法与一维和二维模型相比不利,但在实际噪声水平和分辨率下却优于它们。

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