...
首页> 外文期刊>Current Issues in Pharmacy and Medical Sciences >Assessment of structural and functional condition of rats bone tissue under the influence of various parameters of vibration
【24h】

Assessment of structural and functional condition of rats bone tissue under the influence of various parameters of vibration

机译:各种振动参数影响下大鼠骨骼组织结构和功能状况的评估

获取原文

摘要

Whole body vibration involves the exposure of the entire human body to direct contact with environmental vibration. Chronic mechanical vibrations, combined with the physical attributes of the human body, can amplify the incoming energy and present the potential for negative health effects. Vibration exposure can, thus, result in adverse health effects such as spinal injuries, abdominal neurological and cardiovascular disorders. These can manifest indirectly as an accident causal factor. The aim of our research is to study the impact of vibration fluctuations of different frequencies on the structural and functional condition and mechanisms of bone remodelling. An experimental study was, therefore, conducted on mature male rats. For assessment of bone metabolism in the venous blood of rats, osteocalcin level was determined, while fragments of rats’ lumbar vertebrae were subsequently taken for histologic examination. Our work revealed that with the increase of vibration frequency, an increase of osteocalcin level in the blood of experimental animals comes about. Moreover, we noted after terminating vibration fluctuations on the 56~(th) day of the experiment, osteocalcin levels are gradually reduced. In addition, in the course of histological study of specimens of lumbar vertebrae bone tissue, even as early as of the 28~(th) day of the experiment, evidences of acute impairment of the bone tissue and initial signs of its remodelling are clearly traced. Indeed, on the 56~(th) day, the remodelling processes represented by enhanced regeneration in the zone of the cartilage plate, increased in proliferation activity. We also saw hyperplasia of chondrocytes, hypertrophy of the respective zones of cartilage tissue, zones of forming immature bone tissue on the areas of previous damage, focal replacement fibrosis and angiomatosis. Hence, with increasing vibratory acceleration of 0,5 g, the rate of bone metabolism grows, osteoblast activation processes are accelerated and the impairment of collagen and calcium loss is increased. All this leads subsequently to the occurrence of osteoporosis.
机译:全身振动涉及整个人体暴露于与环境振动的直接接触。慢性机械振动与人体的物理属性相结合,可以放大传入的能量,并可能对健康产生负面影响。因此,暴露于振动会导致不利的健康影响,例如脊柱受伤,腹部神经系统疾病和心血管疾病。这些可以间接表现为事故原因。我们的研究目的是研究不同频率的振动波动对骨骼重塑的结构和功能状况以及机制的影响。因此,对成年雄性大鼠进行了实验研究。为了评估大鼠静脉血中的骨代谢,测定了骨钙素水平,随后取了大鼠腰椎的碎片进行组织学检查。我们的工作表明,随着振动频率的增加,实验动物血液中骨钙素水平也随之增加。此外,我们注意到在实验第56天结束振动波动后,骨钙素水平逐渐降低。此外,在对腰椎骨组织标本进行组织学研究的过程中,甚至早在实验的第28天,就可以清楚地找到骨组织急性受损的证据以及其重塑的初步迹象。 。实际上,在第56天,以软骨板区域再生增强为代表的重塑过程增加了增殖活性。我们还看到软骨细胞增生,软骨组织各个区域的肥大,先前损伤区域上形成的未成熟骨组织的区域,局灶性置换纤维化和血管瘤病。因此,随着增加的0.5 g的振动加速度,骨代谢的速率增加,成骨细胞的活化过程被加速,胶原蛋白和钙的损失增加。所有这些随后导致骨质疏松症的发生。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号