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尚未确定:在临床前肺结构-功能研究中,推荐在生理/病理生理容积范围内固定肺。

The fix is not yet in: recommendation for fixation of lungs within physiological/pathophysiological volume range in preclinical pulmonary structure-function studies.

机构信息

Department of Biomedical Engineering, Stevens Institute of Technology, Hoboken, New Jersey, United States.

Institute of Functional and Applied Anatomy, Hannover Medical School, Hannover, Germany.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2024 Aug 1;327(2):L218-L231. doi: 10.1152/ajplung.00341.2023. Epub 2024 May 7.

Abstract

Quantitative characterization of lung structures by morphometrical or stereological analysis of histological sections is a powerful means of elucidating pulmonary structure-function relations. The overwhelming majority of studies, however, fix lungs for histology at pressures outside the physiological/pathophysiological respiratory volume range. Thus, valuable information is being lost. In this perspective article, we argue that investigators performing pulmonary histological studies should consider whether the aims of their studies would benefit from fixation at functional transpulmonary pressures, particularly those of end-inspiration and end-expiration. We survey the pressures at which lungs are typically fixed in preclinical structure-function studies, provide examples of conditions that would benefit from histological evaluation at functional lung volumes, summarize available fixation methods, discuss alternative imaging modalities, and discuss challenges to implementing the suggested approach and means of addressing those challenges. We aim to persuade investigators that modifying or complementing the traditional histological approach by fixing lungs at minimal and maximal functional volumes could enable new understanding of pulmonary structure-function relations.

摘要

通过对组织切片进行形态计量学或体视学分析来定量描述肺结构,是阐明肺结构-功能关系的有力手段。然而,绝大多数研究都是在生理/病理呼吸量范围之外的压力下对肺进行组织学固定,因此,有价值的信息正在丢失。在这篇观点文章中,我们认为,进行肺组织学研究的研究人员应该考虑他们的研究目标是否会受益于在功能跨肺压下进行固定,特别是在吸气末和呼气末。我们调查了在临床前结构-功能研究中肺通常被固定的压力,提供了一些在功能肺容量下进行组织学评估将受益的情况的示例,总结了现有的固定方法,讨论了替代成像方式,并讨论了实施所建议方法的挑战和解决这些挑战的方法。我们的目的是说服研究人员,通过在最小和最大功能容积下固定肺来修改或补充传统的组织学方法,可以使人们对肺结构-功能关系有新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bda9/11444500/2855cd81fcab/l-00341-2023r01.jpg

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