首页> 外文期刊>Molecular imaging and biology: MIB : the official publication of the Academy of Molecular Imaging >Age-related changes in the metabolic activity and distribution of the red marrow as demonstrated by 2-deoxy-2-(F-18)fluoro-D-glucose-positron emission tomography.
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Age-related changes in the metabolic activity and distribution of the red marrow as demonstrated by 2-deoxy-2-(F-18)fluoro-D-glucose-positron emission tomography.

机译:2-脱氧-2-(F-18)氟-D-葡萄糖-正电子发射断层扫描显示,与年龄相关的红细胞代谢活性和分布变化。

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摘要

OBJECTIVES: The objective of the study was to determine age-related changes occurring in red marrow with regard to its distribution and the degree of its metabolic activity by whole-body 2-deoxy-2-[F-18]fluoro-D-glucose (FDG)-positron emission tomography (PET). METHODS: This retrospective study included 112 patients (56 male, 56 female, mean age 40 years, range 2-85) who underwent whole-body FDG-PET scans for assessment of disorders that were determined not to affect red marrow activity. These patients were categorized into the following groups with equal gender distribution: 0-15 years (12 individuals), 16-25 years (20), 26-35 years (10), 36-45 years (20), 46-55 years (14), 56-65 years (16), 66-75 years (14), and 76-85 years (6). Whole-body FDG-PET images were performed at 60 min after the intravenous administration of 0.14 mCi/kg of FDG. By employing a dedicated whole-body PET scanner. Maximal standardized uptake value (SUV(max)) was calculated from three consecutive transverse sections of the upper thirds of the humeri and femora, manubrium of the sternum, 12th thoracic and 5th lumbar vertebra and anterior superior iliac crests of the pelvis. All available results from other imaging examinations [magnetic resonance imaging (MRI), computed tomography (CT), and conventional radiolography], laboratory data, biopsies, and the clinical course of these subjects were reviewed to make certain that the bone marrow sites examined were free of any known pathologies. RESULTS: SUV(max) in the extremities showed significant decline with aging (correlation coefficient of -0.60 to -0.67, p < 0.01). In contrast, a weak correlation was noted in the axial skeletal activity with advancing age (correlation coefficient of -0.28 to -0.48, p < 0.05). CONCLUSIONS: These data suggest that FDG metabolic activity of the red marrow in the extremities decline significantly with normal aging, while that of the axial skeleton show minimal decrease related to this biologic phenomenon. These findings are of value in assessing the effects of hematological and other disorders in the distribution and the metabolic activity of this important tissue and testing therapeutic interventions that are employed for treating such maladies.
机译:目的:研究目的是确定全身2-脱氧-2- [F-18]氟-D-葡萄糖在红骨髓中的分布和代谢活性程度,与年龄有关。 (FDG)-正电子发射断层扫描(PET)。方法:这项回顾性研究包括112例患者(56例男性,56例女性,平均年龄40岁,范围2-85),他们接受了全身FDG-PET扫描,以评估确定不影响红骨髓活动的疾病。这些患者按性别分布分为以下几类:0-15岁(12个人),16-25岁(20),26-35岁(10),36-45岁(20),46-55岁(14),56-65岁(16),66-75岁(14)和76-85岁(6)。静脉内施用0.14 mCi / kg FDG后60分钟进行全身FDG-PET图像。通过使用专用的全身PET扫描仪。从肱骨和股骨上半部的三个连续横断面,胸骨的手掌,第12胸和第5腰椎以及骨盆的superior前上rest计算出最大标准化摄取值(SUV(max))。回顾了其他影像学检查(磁共振成像(MRI),计算机断层扫描(CT)和常规放射照相),实验室数据,活检和临床过程的所有可用结果,以确保检查的骨髓部位均已没有任何已知的病理。结果:随着年龄的增长,四肢的SUV(max)显着下降(相关系数为-0.60至-0.67,p <0.01)。相反,轴向骨骼活动与年龄的增长之间存在弱相关性(相关系数为-0.28至-0.48,p <0.05)。结论:这些数据表明,四肢的红骨髓的FDG代谢活性随正常衰老而显着下降,而轴向骨骼的FDG代谢活性与这种生物学现象有关的下降最小。这些发现对于评估血液和其他疾病对该重要组织的分布和代谢活性的影响,以及测试用于治疗此类疾病的治疗干预措施具有价值。

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