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慢性下腰痛患者腰椎的SPECT/CT成像:病例报告

SPECT/CT imaging of the lumbar spine in chronic low back pain: a case report.

作者信息

Carstensen Michael H, Al-Harbi Mashael, Urbain Jean-Luc, Belhocine Tarik-Zine

机构信息

Department of Medical Imaging, St Joseph's Hospital London, Ontario, Canada.

出版信息

Chiropr Man Therap. 2011 Jan 11;19(1):2. doi: 10.1186/2045-709X-19-2.

Abstract

Mechanical low back pain is a common indication for Nuclear Medicine imaging. Whole-body bone scan is a very sensitive but poorly specific study for the detection of metabolic bone abnormalities. The accurate localisation of metabolically active bone disease is often difficult in 2D imaging but single photon emission computed tomography/computed tomography (SPECT/CT) allows accurate diagnosis and anatomic localisation of osteoblastic and osteolytic lesions in 3D imaging. We present a clinical case of a patient referred for evaluation of chronic lower back pain with no history of trauma, spinal surgery, or cancer. Planar whole-body scan showed heterogeneous tracer uptake in the lumbar spine with intense localisation to the right lateral aspect of L3. Integrated SPECT/CT of the lumbar spine detected active bone metabolism in the right L3/L4 facet joint in the presence of minimal signs of degenerative osteoarthrosis on CT images, while a segment demonstrating more gross degenerative changes was more quiescent with only mild tracer uptake. The usefulness of integrated SPECT/CT for anatomical and functional assessment of back pain opens promising opportunities both for multi-disciplinary clinical assessment and treatment for manual therapists and for research into the effectiveness of manual therapies.

摘要

机械性下背痛是核医学成像的常见指征。全身骨扫描对于检测代谢性骨异常是一项非常敏感但特异性较差的检查。在二维成像中,代谢活跃的骨病准确定位通常很困难,但单光子发射计算机断层扫描/计算机断层扫描(SPECT/CT)能够在三维成像中对成骨和溶骨病变进行准确诊断和解剖定位。我们呈现了一例临床病例,该患者因慢性下背痛前来评估,无创伤、脊柱手术或癌症病史。平面全身扫描显示腰椎放射性示踪剂摄取不均匀,L3右侧有强烈定位。腰椎的SPECT/CT融合成像在CT图像上仅有轻微退行性骨关节炎迹象的情况下,检测到右侧L3/L4小关节有活跃的骨代谢,而一个显示更明显退行性改变的节段则较为静止,仅有轻微的示踪剂摄取。SPECT/CT融合成像在背痛的解剖和功能评估中的应用,为多学科临床评估和手法治疗师的治疗以及手法治疗效果的研究都带来了广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4012/3039827/be140dcfe2d8/2045-709X-19-2-1.jpg

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