Division of Pulmonary and Critical Care, Oregon Health and Sciences University, Portland, OR 97239-3098, USA.
Am J Respir Cell Mol Biol. 2013 Jan;48(1):10-6. doi: 10.1165/rcmb.2012-0290MA. Epub 2012 Oct 25.
The quantitative histological analysis of airway innervation using tissue sections is challenging because of the sparse and patchy distribution of nerves. Here we demonstrate a method using a computational approach to measure airway nerve architecture that will allow for more complete nerve quantification and the measurement of structural peripheral neuroplasticity in lung development and disease. We demonstrate how our computer analysis outperforms manual scoring in quantifying three-dimensional nerve branchpoints and lengths. In murine lungs, we detected airway epithelial nerves that have not been previously identified because of their patchy distribution, and we quantified their three-dimensional morphology using our computer mapping approach. Furthermore, we show the utility of this approach in bronchoscopic forceps biopsies of human airways, as well as the esophagus, colon, and skin.
使用组织切片对气道神经支配进行定量组织学分析具有挑战性,因为神经分布稀疏且呈斑片状。在这里,我们展示了一种使用计算方法测量气道神经结构的方法,该方法将允许更完整的神经定量和测量肺发育和疾病中的结构性周围神经可塑性。我们展示了我们的计算机分析如何在量化三维神经分支点和长度方面优于手动评分。在小鼠肺部,我们检测到了以前由于分布不均而未被识别的气道上皮神经,并使用我们的计算机映射方法对其三维形态进行了量化。此外,我们还展示了该方法在人类气道、食管、结肠和皮肤支气管活检中的应用。