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首页> 外文期刊>Indian journal of orthopaedics >Radiomorphological Manifestations of Femoral and Tibial Cortical Bones at Different Stages of Limb Lengthening
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Radiomorphological Manifestations of Femoral and Tibial Cortical Bones at Different Stages of Limb Lengthening

机译:肢体延长​​不同阶段股骨和胫骨皮质骨的放射形态学表现

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Background: There has been a lot of research done on Ilizarov's limb lengthening; however, very few publications focus on the quantitative assessment of the distractional bone regeneration in tibial and femur lengthening. Data regarding quality of the bone after lengthening are needed to consider the time of frame removal and develop a rehabilitation program. Materials and Methods: Computed tomography (CT) assessment of a parent bone was performed on 136 patients with limb length discrepancy and bone deformity of various etiologies before and after lengthening. Transosseous osteosynthesis technique with the Ilizarov's external fixation was used for limb lengthening and deformity correction in all the cases. A 64-slice scanner was used for CT assessments. Specific Roentgen-negative units of the Ilizarov apparatus and techniques for interpreting CT findings were employed for artifact-free densitometric assessment. Results: Cortical density of the femur and tibia in patients with limb length discrepancy and bone deformity of various etiologies was shown to have differences as compared to the contralateral limb. The lengthening process was accompanied by decreased cortical density of the segment being lengthened, and the decrease in the density was greater in the areas adjacent to the distractional bone regeneration. The cortical structure underwent characteristic changes. Osteonal density of the cortical bone was higher in the norm and at long term followup as compared to the density of external and internal plates. Conclusion: Cortical bone of the femur and tibia in patients with limb length discrepancy and bone deformity of various etiologies showed various preoperative local densities of external, internal, and osteon layers. The cortical bone demonstrated heterogenic structures with resorption areas of various magnitude and density, with minimal values at the boundary with regenerate bone during distraction and fixation with frame on and at short-term followup. Complete organotypical restructuring of the bone was shown to occur at a 1-to-3-year followup depending on the etiology of the disease and amount of lengthening performed.
机译:背景:关于伊利扎洛夫的肢体延长已经进行了很多研究。然而,很少有出版物集中于对胫骨和股骨延长中牵张性骨再生的定量评估。需要考虑到延长后骨骼质量的数据,以考虑去除框架的时间并制定康复计划。材料与方法:对136例肢体长度不一且加长前后病因不同的骨畸形的患者进行了CT成像评估。在所有情况下,均采用带Ilizarov外固定架的经骨骨合成技术进​​行肢体加长和畸形矫正。使用64层扫描仪进行CT评估。 Ilizarov仪器的特定伦琴阴性单位和解释CT表现的技术用于无伪影的光密度测定。结果:与对侧肢体相比,肢体长度差异和各种病因的骨畸形患者的股骨和胫骨皮质密度存在差异。延长过程伴随着节段的皮质密度降低而被延长,并且密度降低在与牵张性骨再生相邻的区域中更大。皮质结构发生了特征变化。与外部和内部板的密度相比,正常和长期随访时,皮质骨的骨密度更高。结论:各种病因的四肢长度差异和骨畸形患者的股骨和胫骨皮质骨均表现出术前外,内和骨层的不同局部密度。皮质骨表现出异质结构,具有不同大小和密度的吸收区域,在牵张和固定并在框架上以及短期随访期间,在再生骨的边界处具有最小的值。根据疾病的病因和所进行的延长的时间,在1至3年的随访中发现骨骼发生了完整的器官典型重组。

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