Garcia Yolanda, Breen Ailish, Burugapalli Krishna, Dockery Peter, Pandit Abhay
National Centre for Biomedical Engineering Science, National University of Ireland, Galway, Ireland.
Biomaterials. 2007 Jan;28(2):175-86. doi: 10.1016/j.biomaterials.2006.08.037. Epub 2006 Sep 8.
The stereological approach can provide an objective unbiased assessment of structural change in biological systems. In this review, we elucidate the basic principles of stereology and their implementation in the analysis of tissue response to tissue-engineering scaffolds. A brief outline of tissue response parameters that can be estimated using stereological approach is included. The focus is on frequently quantified parameters in tissue response, such as host tissue infiltration, inflammatory cell numbers, angiogenesis, fibrous tissue thickness, areas of calcification, and/or necrosis, among others. Special consideration is given to sampling techniques and how these techniques can influence the reliability of the obtained results as well as minimizing potential sources of bias. These basic principles are illustrated with practical examples, where measurements are performed and estimations calculated using conventional stereological techniques. As the next generation of biomaterials continue to be developed, it is essential that researchers develop a rigorous and unbiased method of performance quantification.
体视学方法能够对生物系统中的结构变化进行客观、无偏倚的评估。在本综述中,我们阐明了体视学的基本原理及其在分析组织对组织工程支架的反应中的应用。文中还简要概述了可使用体视学方法估计的组织反应参数。重点关注组织反应中经常量化的参数,例如宿主组织浸润、炎症细胞数量、血管生成、纤维组织厚度、钙化和/或坏死区域等。特别考虑了采样技术以及这些技术如何影响所获结果的可靠性,同时尽量减少潜在的偏倚来源。这些基本原理通过实际示例进行说明,其中使用传统体视学技术进行测量和计算估计值。随着下一代生物材料不断研发,研究人员必须开发一种严谨且无偏倚的性能量化方法。