Grant Alexander M, Levin Craig S
Department of Bioengineering, Stanford University, Stanford, CA, USA. Molecular Imaging Program at Stanford (MIPS), Department of Radiology, Stanford University, Stanford, CA, USA.
Phys Med Biol. 2014 Jul 7;59(13):3421-30. doi: 10.1088/0031-9155/59/13/3421. Epub 2014 Jun 3.
Time-over-threshold (ToT) is attractive as a method of combined timing and energy encoding in positron emission tomography (PET) due to its simplicity in implementation and readout. However, conventional single threshold ToT has a nonlinear response and generally suffers from a tradeoff between timing and energy resolution. The resulting poor performance is not fit for applications requiring fast timing, such as time-of-flight (ToF) PET. In this work it is shown experimentally that by replacing single threshold ToT with a dual threshold method in a new compact circuit, excellent time resolution can be achieved (154 ps FWHM for 3 × 3 × 5 mm(3) LYSO crystals), suitable for ToF. Dual threshold ToT timing results have been compared to a similar single threshold design, demonstrating that dual threshold ToT performance is far superior to that of single threshold ToT (154 ps versus 418 ps coincidence time resolution for the dual and single threshold cases, respectively). A method of correcting for nonlinearity in dual threshold ToT energy spectra is also demonstrated.
超阈值时间(ToT)作为正电子发射断层扫描(PET)中一种结合时间和能量编码的方法颇具吸引力,因为其实现和读出都很简单。然而,传统的单阈值ToT具有非线性响应,并且在时间分辨率和能量分辨率之间通常存在权衡。由此产生的性能不佳并不适用于需要快速计时的应用,如飞行时间(ToF)PET。在这项工作中,通过在一个新的紧凑型电路中用双阈值方法取代单阈值ToT进行实验表明,可以实现出色的时间分辨率(对于3×3×5 mm³的LYSO晶体,半高宽为154 ps),适用于ToF。已将双阈值ToT计时结果与类似的单阈值设计进行了比较,表明双阈值ToT的性能远优于单阈值ToT(双阈值和单阈值情况下的符合时间分辨率分别为154 ps和418 ps)。还展示了一种校正双阈值ToT能谱非线性的方法。