Mele M, De Mattia D, D'Addabbo A, Schettini F, Lauriero F, Rubini G
Centro Interdipartimentale di Biocibernetica e Tecniche Radioisotopiche, Università, Bari.
Radiol Med. 1989 Nov;78(5):455-60.
The kinetics of 99mTc(Sn) methylene diphosphonate [99mTc(Sn)MDP] were evaluated by means of compartmental analysis in 5 normal children and 17 thalassemic subjects. Blood and urine activity were analyzed with a computer program which generates intercompartmental rate constants by an iterative least-square method providing a best-fit to the input data. The amount of tracer in each compartment (corrected for decay) was determined as a function of time. The transfer rate of 99mTc(Sn)MDP from blood to extracellular fluid and lamellar bone (K1-3) was about 20% higher in thalassemic subjects than in normal children. The transfer rate of 99mTc(Sn)MDP from blood to woven bone (K1-4) was about 57% higher in thalassemic subjects. A faster rate of spread into woven bone appears to be the major cause of higher bone uptake of 99mTc(Sn)MDP in thalassemic subjects, which suggests that in these patients bone tissue reoccupies the space previously replaced by hyperplastic marrow. Moreover, the increased bone extraction rate revealed a correlation between anemia and bone metabolic activity.
采用房室分析方法对5名正常儿童和17名地中海贫血患者进行了99m锝(锡)亚甲基二膦酸盐[99mTc(Sn)MDP]动力学评估。利用计算机程序分析血液和尿液活性,该程序通过迭代最小二乘法生成房室间速率常数,以最佳拟合输入数据。确定每个房室中示踪剂的量(校正衰变)随时间的变化。地中海贫血患者中99mTc(Sn)MDP从血液到细胞外液和板层骨的转移率(K1-3)比正常儿童高约20%。地中海贫血患者中99mTc(Sn)MDP从血液到编织骨的转移率(K1-4)高约57%。向编织骨扩散速度更快似乎是地中海贫血患者99mTc(Sn)MDP骨摄取较高的主要原因,这表明在这些患者中,骨组织重新占据了先前被增生性骨髓替代的空间。此外,骨摄取率增加揭示了贫血与骨代谢活性之间的相关性。