Kim H J, Karp J S, Mozley P D, Yang S O, Moon D H, Kung H F, Lee H K, Alavi A
Department of Nuclear Medicine, University of Ulsan, Asan Medical Center, Seoul, Korea.
Ann Nucl Med. 1996 Feb;10(1):153-60. doi: 10.1007/BF03165071.
The choice of collimator and the selection of a filter can affect the quality of clinical SPECT images of the brain. The compromises that 4 different collimators make between spatial resolution and sensitivity were studied by imaging a three-dimensional Hoffmann brain phantom. The planar data were acquired with each collimator on a three-headed SPECT system and were reconstructed with both a standard Butterworth filter and a Wiener pre-filter. The reconstructed images were then evaluated by specialists in nuclear medicine and were also quantitatively analyzed with specific regions of interest (ROI) in the brain. All observers preferred the Wiener filter reconstructed images regardless of the collimator used to acquire the planar images. With this filter, the ultrahigh-resolution fan-beam collimator was the most subjectively preferable and quantitatively produced the highest contrast ratios. The findings support suggestions that higher resolution collimators are preferable to higher sensitivity collimators, and indicate that fan-beam collimators are preferable to parallel-hole collimators for clinical SPECT studies of cerebral perfusion. The results also suggest that Wiener filter enhances the quality of SPECT brain images regardless of which collimator is used to acquire the data.
准直器的选择和滤过器的挑选会影响脑部临床单光子发射计算机断层显像(SPECT)图像的质量。通过对一个三维霍夫曼脑模型进行成像,研究了4种不同准直器在空间分辨率和灵敏度之间所做的权衡。平面数据是在一个三头SPECT系统上使用每种准直器采集的,并使用标准巴特沃斯滤波器和维纳预滤波器进行重建。然后由核医学专家对重建图像进行评估,并使用脑部特定的感兴趣区域(ROI)进行定量分析。所有观察者都更喜欢维纳滤波器重建的图像,无论用于采集平面图像的准直器是什么。使用这种滤波器时,超高分辨率扇形束准直器在主观上是最可取的,并且在定量方面产生了最高的对比度。这些发现支持了以下建议:更高分辨率的准直器比更高灵敏度的准直器更可取,并且表明对于脑灌注的临床SPECT研究,扇形束准直器比平行孔准直器更可取。结果还表明,无论使用哪种准直器来采集数据,维纳滤波器都能提高SPECT脑图像的质量。