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首页> 外文期刊>Journal of Biomechanics >Altered biomechanical stimulation of the developing hip joint in presence of hip dysplasia risk factors
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Altered biomechanical stimulation of the developing hip joint in presence of hip dysplasia risk factors

机译:在髋关节发育性危险因素存在下改变了发展髋关节的生物力学刺激

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Fetal kicking and movements generate biomechanical stimulation in the fetal skeleton, which is important for prenatal musculoskeletal development, particularly joint shape. Developmental dysplasia of the hip (DDH) is the most common joint shape abnormality at birth, with many risk factors for the condition being associated with restricted fetal movement. In this study, we investigate the biomechanics of fetal movements in such situations, namely fetal breech position, oligohydramnios and primiparity (firstborn pregnancy). We also investigate twin pregnancies, which are not at greater risk of DDH incidence, despite the more restricted intra-uterine environment. We track fetal movements for each of these situations using cine-MRI technology, quantify the kick and muscle forces, and characterise the resulting stress and strain in the hip joint, testing the hypothesis that altered biomechanical stimuli may explain the link between certain intra-uterine conditions and risk of DDH. Kick force, stress and strain were found to be significantly lower in cases of breech position and oligohydramnios. Similarly, firstborn fetuses were found to generate significantly lower kick forces than non-firstborns. Interestingly, no significant difference was observed in twins compared to singletons. This research represents the first evidence of a link between the biomechanics of fetal movements and the risk of DDH, potentially informing the development of future preventative measures and enhanced diagnosis. Our results emphasise the importance of ultrasound screening for breech position and oligohydramnios, particularly later in pregnancy, and suggest that earlier intervention to correct breech position through external cephalic version could reduce the risk of hip dysplasia. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:胎儿踢和运动在胎儿骨架中产生生物力学刺激,这对于产前肌肉骨骼发育很重要,特别是关节形状。髋关节(DDH)的发育不良是出生时最常见的关节形状异常,具有许多风险因素,条件与胎儿运动有关。在这项研究中,我们研究了这种情况下的胎儿运动的生物力学,即胎儿后膛位置,少洛米氏菌和孕产性(初生妊娠)。我们还调查了双胞胎妊娠,尽管子宫内环境越来越受到DDH发病率的风险。我们使用Cine-MRI技术跟踪每个情况的胎儿运动,量化踢腿和肌肉力,并表征髋关节中所产生的应力和应变,测试改变的生物力学刺激的假设可以解释某些内宫内的联系DDH的条件和风险。在膛位置和寡盐水晶系统的情况下,发现踢力,压力和菌株显着降低。类似地,发现小胎儿产生比非统一的显着降低的摩托力。有趣的是,与单身人士相比,双胞胎中没有观察到显着差异。本研究代表了胎儿运动生物力学与DDH的风险之间的联系的第一个证据,可能会向未来的预防措施发展和提高诊断。我们的结果强调超声波筛选对后膛位置和OligoHydramnios的重要性,特别是怀孕后的尤其是妊娠期,并提出通过外部头部版本纠正后膛位置的早期干预可以降低髋关节发育不良的风险。 (c)2018作者。 elsevier有限公司出版

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