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Autoradiographic study of the effects of pulsed electromagnetic fields on bone and cartilage growth in juvenile rats

机译:脉冲电磁场​​对幼年大鼠骨质和软骨生长影响的放射造影研究

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摘要

Application of pulsed electromagnetic fields (PEMF) has been used in growth and repair of non-union bone fractures. The similarities between the fibrocartilage callus in non-union bone fractures and the secondary cartilage in the mandibular condyle, both histologically and functionally, lead naturally to study the effects of PEMFs on growth in the condyle. The purposes of this study were: (1) to describe the effects of PEMFs on the growth of the condyle using autoradiography, [3H]-proline and [3H]-thymidine, and (2) to differentiate between the effects of the magnetic and electrical components of the field. Male pre-adolescent Sprague-Dawley rats (28 days old) were divided into three experimental groups of five animals each: (1) PEMF-magnetic (M), (2) PEMF-electrical (E) and (3) control, and were examined at three different times--3, 7 and 14 days of exposure. Each animal was exposed to the field for 8 h per day. Histological coronal sections were processed for quantitative autoradiography to determine the mitotic activity of the condylar cartilage and the amount of bone deposition. The PEMF (magnetic or electrical) had statistically significant effects only on the thickness of the articular zone, with the thickness in the PEMF-M group being the most reduced. Length of treatment was associated with predictable significant changes in the thickness of the condylar cartilage zones and the amount of bone deposition. As the animals aged, less condylar growth was observed and generally the highest mean thicknesses were found in the 3- and 7-day groups; likewise as more bone was deposited, the 7-day measurements of proline-band thickness were significantly greater than the 3-day measurements. Thus, the PEMF-M had a negative effect on the chondrogenic layer of the articular zone, but no other chondrogenic or osteogenic effects were noted.
机译:脉冲电磁场​​(PEMF)的应用已被用于非联合骨骨折的生长和修复。非联合骨折和颌骨髁上的二次软骨之间的相似性,包括组织学和功能性,自然地引发​​PEMFS对髁上的生长的影响。本研究的目的是:(1)描述PEMFS使用放射向量,[3H] - 脯氨酸和[3H] - 尿样,(2)分辨磁性和磁性效应之间的髁突该领域的电气部件。男性青春期前的Sprague-Dawley大鼠(28天龄)分成五只动物每三个实验组:(1)PEMF磁性(M),(2)PEMF-电(E)和(3)控制,和在三种不同的时间检查 - 3,7和14天的接触。每只动物暴露于该领域每天8小时。处理组织学冠状切片以进行定量放射自显影,以确定髁突软骨的有丝分裂活性和骨沉积量。 PEMF(磁或电)仅在关节区的厚度上具有统计学意义的效果,PEMF-M组中的厚度最低。治疗长度与髁突软骨区厚度和骨沉积量的可预测的显着变化有关。随着年龄的动物,观察到较少的髁突生长,通常在3-和7天内发现最高的平均厚度;同样随着沉积更多的骨,脯氨酸带厚度的7天测量值明显大于3天的测量。因此,PEMF-M对关节区的软骨形成层具有负面影响,但没有注意其他有软骨菌或骨质发生的效果。

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