Danz J C, Habegger M, Bosshardt D D, Katsaros C, Stavropoulos A
Department of Orthodontics and Dentofacial Orthopedics, University of Bern, Bern, Switzerland; Section of Periodontology, University of Aarhus, Aarhus, Denmark.
J Anat. 2014 Feb;224(2):85-94. doi: 10.1111/joa.12140. Epub 2013 Nov 25.
Histomorphometric evaluation of the buccal aspects of periodontal tissues in rodents requires reproducible alignment of maxillae and highly precise sections containing central sections of buccal roots; this is a cumbersome and technically sensitive process due to the small specimen size. The aim of the present report is to describe and analyze a method to transfer virtual sections of micro-computer tomographic (CT)-generated image stacks to the microtome for undecalcified histological processing and to describe the anatomy of the periodontium in rat molars. A total of 84 undecalcified sections of all buccal roots of seven untreated rats was analyzed. The accuracy of section coordinate transfer from virtual micro-CT slice to the histological slice, right-left side differences and the measurement error for linear and angular measurements on micro-CT and on histological micrographs were calculated using the Bland-Altman method, interclass correlation coefficient and the method of moments estimator. Also, manual alignment of the micro-CT-scanned rat maxilla was compared with multiplanar computer-reconstructed alignment. The supra alveolar rat anatomy is rather similar to human anatomy, whereas the alveolar bone is of compact type and the keratinized gingival epithelium bends apical to join the junctional epithelium. The high methodological standardization presented herein ensures retrieval of histological slices with excellent display of anatomical microstructures, in a reproducible manner, minimizes random errors, and thereby may contribute to the reduction of number of animals needed.
对啮齿动物牙周组织颊侧进行组织形态计量学评估,需要对上颌骨进行可重复的对齐,并获得包含颊侧牙根中央部分的高精度切片;由于样本尺寸小,这是一个繁琐且技术要求高的过程。本报告的目的是描述和分析一种将微计算机断层扫描(CT)生成的图像堆栈的虚拟切片转移到切片机进行脱钙组织学处理的方法,并描述大鼠磨牙牙周膜的解剖结构。对7只未处理大鼠的所有颊侧牙根的84个脱钙切片进行了分析。使用Bland-Altman方法、组内相关系数和矩估计方法计算了从虚拟微CT切片到组织学切片的切片坐标转移精度、左右侧差异以及微CT和组织学显微照片上线性和角度测量的测量误差。此外,还比较了微CT扫描大鼠上颌骨的手动对齐与多平面计算机重建对齐。大鼠牙槽上的解剖结构与人类解剖结构相当相似,而牙槽骨为致密型,角化牙龈上皮向根尖弯曲以连接结合上皮。本文提出的高方法标准化确保了以可重复的方式获取具有优异解剖微观结构显示的组织学切片,最大限度地减少随机误差,从而可能有助于减少所需动物的数量。