Giorgi Mario, Carriero Alessandra, Shefelbine Sandra J, Nowlan Niamh C
Department of Bioengineering, Imperial College London, UK.
Department of Bioengineering, Imperial College London, UK; Department of Biomedical Engineering, Florida Institute of Technology, USA.
J Biomech. 2015 Sep 18;48(12):3390-7. doi: 10.1016/j.jbiomech.2015.06.002. Epub 2015 Jun 30.
Joint morphogenesis is an important phase of prenatal joint development during which the opposing cartilaginous rudiments acquire their reciprocal and interlocking shapes. At an early stage of development, the prenatal hip joint is formed of a deep acetabular cavity that almost totally encloses the head. By the time of birth, the acetabulum has become shallower and the femoral head has lost substantial sphericity, reducing joint coverage and stability. In this study, we use a dynamic mechanobiological simulation to explore the effects of normal (symmetric), reduced and abnormal (asymmetric) prenatal movements on hip joint shape, to understand their importance for postnatal skeletal malformations such as developmental dysplasia of the hip (DDH). We successfully predict the physiological trends of decreasing sphericity and acetabular coverage of the femoral head during fetal development. We show that a full range of symmetric movements helps to maintain some of the acetabular depth and femoral head sphericity, while reduced or absent movements can lead to decreased sphericity and acetabular coverage of the femoral head. When an abnormal movement pattern was applied, a deformed joint shape was predicted, with an opened asymmetric acetabulum and the onset of a malformed femoral head. This study provides evidence for the importance of fetal movements in the prevention and manifestation of congenital musculoskeletal disorders such as DDH.
关节形态发生是产前关节发育的一个重要阶段,在此期间,相对的软骨雏形获得相互嵌合的形状。在发育早期,产前髋关节由一个深的髋臼腔构成,该髋臼腔几乎完全包裹股骨头。到出生时,髋臼变浅,股骨头失去了大量的球形度,降低了关节覆盖度和稳定性。在本研究中,我们使用动态力学生物学模拟来探究正常(对称)、减少和异常(不对称)的产前运动对髋关节形状的影响,以了解它们对诸如髋关节发育不良(DDH)等产后骨骼畸形的重要性。我们成功预测了胎儿发育过程中股骨头球形度和髋臼覆盖度降低的生理趋势。我们表明,全方位的对称运动有助于维持一定的髋臼深度和股骨头球形度,而运动减少或缺乏会导致股骨头球形度和髋臼覆盖度降低。当应用异常运动模式时,预测会出现关节形状变形,髋臼不对称张开且股骨头开始畸形。本研究为胎儿运动在预防和表现诸如DDH等先天性肌肉骨骼疾病中的重要性提供了证据。