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人类颅面生长的腱膜张力模型。

The aponeurotic tension model of craniofacial growth in man.

作者信息

Standerwick Richard G, Roberts W Eugene

机构信息

20159 - 88th Ave, Suite E207, Langley BC V1M 0A4, Canada.

出版信息

Open Dent J. 2009 May 22;3:100-13. doi: 10.2174/1874210600903010100.

Abstract

Craniofacial growth is a scientific crossroad for the fundamental mechanisms of musculoskeletal physiology. Better understanding of growth and development will provide new insights into repair, regeneration and adaptation to applied loads. Traditional craniofacial growth concepts are insufficient to explain the dynamics of airway/vocal tract development, cranial rotation, basicranial flexion and the role of the cranial base in expression of facial proportions. A testable hypothesis is needed to explore the physiological pressure propelling midface growth and the role of neural factors in expression of musculoskeletal adaptation after the cessation of anterior cranial base growth. A novel model for craniofacial growth is proposed for: 1. brain growth and craniofacial adaptation up to the age of 20; 2. explaining growth force vectors; 3. defining the role of muscle plasticity as a conduit for craniofacial growth forces; and 4. describing the effect of cranial rotation in the expression of facial form.Growth of the viscerocranium is believed to be influenced by the superficial musculoaponeurotic systems (SMAS) of the head through residual tension in the occipitofrontalis muscle as a result of cephalad brain growth and cranial rotation. The coordinated effects of the regional SMAS develop a craniofacial musculoaponeurotic system (CFMAS), which is believed to affect maxillary and mandibular development.

摘要

颅面生长是肌肉骨骼生理学基本机制的一个科学交叉点。更好地理解生长和发育将为修复、再生以及对施加负荷的适应提供新的见解。传统的颅面生长概念不足以解释气道/声道发育、颅骨旋转、颅底弯曲以及颅底在面部比例表达中的作用。需要一个可检验的假说来探索推动中面部生长的生理压力以及前颅底生长停止后神经因素在肌肉骨骼适应表达中的作用。提出了一种新的颅面生长模型,用于:1. 解释20岁之前的脑生长和颅面适应;2. 解释生长力向量;3. 定义肌肉可塑性作为颅面生长力传导途径的作用;4. 描述颅骨旋转在面部形态表达中的影响。脏颅的生长被认为受到头部浅表肌肉腱膜系统(SMAS)的影响,这是由于脑向头侧生长和颅骨旋转导致枕额肌中存在残余张力。区域SMAS的协同作用形成了颅面肌肉腱膜系统(CFMAS),据信它会影响上颌骨和下颌骨的发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67dc/2703201/d85dcac36693/TODENTJ-3-100_F1.jpg

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