Schulich School of Medicine and Dentistry, Western University, London, Canada.
Department of Otolaryngology-Head and Neck Surgery, Western University, London, Canada.
J Anat. 2021 Oct;239(4):771-781. doi: 10.1111/joa.13457. Epub 2021 May 31.
The ossicular chain is a middle ear structure consisting of the small incus, malleus and stapes bones, which transmit tympanic membrane vibrations caused by sound to the inner ear. Despite being shown to be highly variable in shape, there are very few morphological studies of the ossicles. The objective of this study was to use a large sample of cadaveric ossicles to create a set of three-dimensional models and study their statistical variance. Thirty-three cadaveric temporal bone samples were scanned using micro-computed tomography (μCT) and segmented. Statistical shape models (SSMs) were then made for each ossicle to demonstrate the divergence of morphological features. Results revealed that ossicles were most likely to vary in overall size, but that more specific feature variability was found at the manubrium of the malleus, the long process and lenticular process of the incus, and the crura and footplate of the stapes. By analyzing samples as whole ossicular chains, it was revealed that when fixed at the malleus, changes along the chain resulted in a wide variety of final stapes positions. This is the first known study to create high-quality, three-dimensional SSMs of the human ossicles. This information can be used to guide otological surgical training and planning, inform ossicular prosthesis development, and assist with other ossicular studies and applications by improving automated segmentation algorithms. All models have been made publicly available.
听小骨链是中耳结构,由小镫骨、锤骨和砧骨组成,将鼓膜振动传递到内耳。尽管听小骨的形状有很大的可变性,但对其形态学的研究很少。本研究的目的是使用大量的尸体听小骨样本创建一组三维模型,并研究其统计方差。使用微计算机断层扫描(μCT)对 33 个尸体颞骨样本进行扫描并进行分割。然后为每个听小骨制作统计形状模型(SSM),以展示形态特征的差异。结果表明,听小骨最有可能在整体大小上发生变化,但在锤骨的柄部、砧骨的长突和匙突以及镫骨的脚和底结处发现了更具体的特征变化。通过对整个听小骨链进行分析,发现当固定在锤骨上时,沿链的变化会导致镫骨的最终位置有很大的差异。这是已知的第一个创建人类听小骨高质量三维 SSM 的研究。这些信息可用于指导耳科手术培训和规划,为听小骨假体的开发提供信息,并通过改进自动分割算法,协助其他听小骨研究和应用。所有模型都已公开提供。