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首页> 外文期刊>IEEE Transactions on Nuclear Science >Feasibility of using beta-gamma coincidence for 3D PET attenuation correction
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Feasibility of using beta-gamma coincidence for 3D PET attenuation correction

机译:使用β-伽马重合进行3D PET衰减校正的可行性

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Better attenuation correction is needed in 3D PET in order to reduce image noise. It is well known that positrons must lose an appreciable amount of energy before annihilation with an electron can occur. If this energy is lost in a plastic scintillator or PIN photo-diode, this could provide a pulse to a coincidence circuit, while the conventional PET detectors provide a second pulse identifying the line of response. Cheaper, non-positron emitting isotopes, which decay by beta-gamma cascade, (e.g. Co-60) could also be used. The authors have shown that the energy loss of positrons emitted from F-18 can be detected with a PIN diode. The recorded energy is above the noise for most events, and the timing spectrum from a PIN diode detecting the positron and an LSO crystal detecting the gamma ray show excellent timing resolution. A narrow coincidence window allows high count rates. Multiple sources and post-injection scans can be used. Based on preliminary data presented here it should be possible to adapt this technique to modern PET scanners which now use 2D acquisitions, and extended septa only for performing transmission scans.
机译:为了减少图像噪声,在3D PET中需要更好的衰减校正。众所周知,在发生电子an灭之前,正电子必须损失相当数量的能量。如果这种能量在塑料闪烁体或PIN光电二极管中丢失,则可能会向符合电路提供脉冲,而常规的PET检测器会提供识别响应线的第二个脉冲。也可以使用便宜的,不发射正电子的同位素,该同位素会通过β-γ级联(例如Co-60)衰变。作者表明,可以使用PIN二极管检测F-18发射的正电子的能量损失。在大多数情况下,记录的能量都高于噪声,并且检测正电子的PIN二极管和检测伽马射线的LSO晶体的定时频谱显示出出色的定时分辨率。狭窄的符合窗口允许高计数率。可以使用多个源和注射后扫描。根据此处提供的初步数据,应该有可能使这项技术适应现在使用2D采集和扩展间隔仅用于执行透射扫描的现代PET扫描仪。

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