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Silicon photomultiplier performance tests in magnetic resonance pulsed fields

机译:磁共振脉冲场中的硅光电倍增管性能测试

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We are investigating the performance of silicon photomultipliers (SiPM) in a magnetic resonance imaging (MRI) environment with a view to exploiting the potential advantages in a combined positron emission tomography / magnetic resonance imaging (PET/MR) system. SiPMs are attractive for PET because they are compact, provide high gain at low bias voltage, and fast response times. Importantly for combined PET/MR applications, they offer performance comparable to that of the photomultiplier tube (PMT) and are insensitive to magnetic fields. To study the effect of MR static magnetic, pulsed gradient and radio-frequency fields on SiPM performance, we have acquired data whilst switching magnetic fields with the SiPM positioned in the MR system. The wide ''dynamic range'' of SiPMs facilitates their use in both low light level and PET applications; we have acquired ''single photoelectron'' and
机译:我们正在研究硅光电倍增管(SiPM)在磁共振成像(MRI)环境中的性能,以利用正电子发射断层扫描/磁共振成像(PET / MR)组合系统中的潜在优势。 SiPM对于PET具有吸引力,因为它们结构紧凑,在低偏置电压下提供高增益以及快速的响应时间。对于PET / MR组合应用而言,重要的是,它们提供的性能可与光电倍增管(PMT)媲美,并且对磁场不敏感。为了研究MR静态磁场,脉冲梯度和射频场对SiPM性能的影响,我们在将MR系统置于MR系统中的同时切换磁场的同时获取了数据。 SiPM的“动态范围”很广,有助于它们在弱光和PET应用中使用;我们已经获得了“单光电子”,并且

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