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Measurement of cardiovascular function using a novel view-sharing PET reconstruction method and tracer kinetic analysis

机译:使用新型的视图共享PET重建方法和示踪剂动力学分析测量心血管功能

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摘要

Recent advancements in PET instrumentation have made the non-invasive assessment of cardiovascular function in small animals a reality. The majority of small animal PET systems use stationary detector gantries, thus affording high temporal resolution imaging of cardiac function. Systems designed to maximize spatial resolution and detection sensitivity employing rotating gantry designs are suboptimal when high temporal resolution imaging is needed. To overcome this limitation, the current work developed a novel view-sharing data analysis scheme suitable for dynamic cardiac PET imaging using 18F-NaF as the tracer and tracer kinetic model analysis. This scheme was tested in a rat model of cardiovascular function where the relationship between direct transonic flow measures of cardiac output were highly correlated (f(x) = 1.0216x − 24.233, R = 0.9158, p < 0.001) with the new model. Similarly, derived measures of stroke volume were also highly correlated (f(x) = 0.9655x − 0.0428, R = 0.9453, p < 0.001) with the current approach. Administration of xylazine caused a statistically significant increase in stroke volume (0.32 ± 0.07 ml, p = 0.003, n = 4) and a significant decrease in both heart rate (−155 ± 7.1 beats/min, p < 0.001, n = 4) and cardiac output (−75.9 ± 23.0 ml/kg min, p = 0.01, n = 4). These findings suggest that the new sinogram binning and kinetic modeling methods produce reliable cardiac function measures suitable for longitudinal monitoring of cardiovascular function.
机译:PET仪器的最新进展已使对小动物的心血管功能进行非侵入性评估成为现实。大多数小型动物PET系统使用固定式检测架,从而提供了对心功能的高时间分辨率成像。当需要高时间分辨率成像时,采用旋转机架设计来最大化空间分辨率和检测灵敏度的系统是次优的。为了克服这一限制,当前的工作开发了一种新颖的视图共享数据分析方案,该方案适用于动态心脏PET成像,使用 18 F-NaF作为示踪剂和示踪剂动力学模型分析。该方案在心血管功能的大鼠模型中进行了测试,在该模型中,经心音输出的直接跨音速血流测量之间的关系与新模型高度相关(f(x)= 1.0216x − 24.233,R = 0.9158,p <0.001)。类似地,得出的中风量的测量值也与当前方法高度相关(f(x)= 0.9655x-0.0428,R = 0.9453,p <0.001)。服用甲苯噻嗪会导致中风量的统计学显着增加(0.32±±0.07 ml,p,= 0.003,n = 4)和两种心率均显着降低(-155±7.1次/分钟,p <0.001,n = 4)和心输出量(−75.9±23.0 ml / kg·min,p = 0.01,n = 4)。这些发现表明,新的正弦图分类和动力学建模方法可产生适用于纵向监测心血管功能的可靠心脏功能测量。

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