Soft Tissue Attenuation Patterns Associated with Upright Acquisition SPECT Myocardial Perfusion Imaging: A Descriptive Study.

Rami Doukky, Mouyyad Rahaby, Dave Chawla, Raj Vashistha, Tareq Alyousef, Amit P Amin
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引用次数: 14

Abstract

Background: Little is known about soft tissue attenuation artifacts when an upright patient-position SPECTmyocardial perfusion imaging (MPI) system is used. In this investigation we sought to describe the patterns and frequency of attenuation artifacts associated with this type of instruments and we explored the impact of gender and body habitus on these artifacts.

Methods: In a cross-sectional study, we described the prevalence of various soft-tissue attenuation patterns in 212 normal SPECT-MPI studies acquired with an upright patient-position imaging system.

Results: In these 212 normal, clinically-indicated, upright-acquisition SPECT-MPIs the attenuation patterns observed were: anterior (6.1%), inferior (63.7%) and lateral (24.1%). Though uncommon, anterior attenuation trended to being more prevalent among women [9.5% vs. 3.4%, P=0.07] and was independently associated with chest circumference. Lateral attenuation was more common among women [34.7% vs. 15.4%, p=0.001] and was strongly associated with obesity (p<0.001). Inferior attenuation was more prevalent among men than women (75.2% vs. 49.5% respectively, P<0.001).

Conclusions: Soft-tissue attenuation artifacts are common in upright-acquisition SPECT-MPI. Recognizing the frequency of these attenuation patterns and their interaction with gender and body habitus is critical for the accurate interpretation of SPECT-MPI.

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与直立采集SPECT心肌灌注成像相关的软组织衰减模式:一项描述性研究。
背景:当使用直立患者体位心肌灌注成像(MPI)系统时,对软组织衰减伪影知之甚少。在这项调查中,我们试图描述与这类仪器相关的衰减伪影的模式和频率,并探讨了性别和身体习惯对这些伪影的影响。方法:在一项横断面研究中,我们描述了212例正常SPECT-MPI研究中各种软组织衰减模式的患病率,这些研究是通过直立患者体位成像系统获得的。结果:在这212例正常的、临床指示的直立采集spect - mpi中,观察到的衰减模式为:前路(6.1%)、下路(63.7%)和侧路(24.1%)。虽然不常见,但前路衰减在女性中更为普遍[9.5%对3.4%,P=0.07],且与胸围独立相关。侧面衰减在女性中更为常见[34.7%对15.4%,p=0.001],并且与肥胖密切相关(结论:软组织衰减伪影在直立采集SPECT-MPI中很常见)。识别这些衰减模式的频率及其与性别和身体习性的相互作用对于准确解释SPECT-MPI至关重要。
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