Behavioral Physiology & Sociobiology (Zoology II), Biozentrum, University of Würzburg, Am Hubland, 97074, Würzburg, Germany.
Sci Rep. 2017 Aug 29;7(1):9786. doi: 10.1038/s41598-017-09967-8.
A recent study by Peng and Yang in Scientific Reports using confocal-microscopy based automated quantification of anti-synapsin labeled microglomeruli in the mushroom bodies of honeybee brains reports potentially incorrect numbers of microglomerular densities. Whereas several previous studies using visually supervised or automated counts from confocal images and analyses of serial 3D electron-microscopy data reported consistent numbers of synaptic complexes per volume, Peng and Yang revealed extremely low numbers differing by a factor of 18 or more from those obtained in visually supervised counts, and by a factor 22-180 from numbers in two other studies using automated counts. This extreme discrepancy is especially disturbing as close comparison of raw confocal images of anti-synapsin labeled whole-mount brain preparations are highly similar across these studies. We conclude that these discrepancies may reside in potential misapplication of confocal imaging followed by erroneous use of automated image analysis software. Consequently, the reported microglomerular densities during maturation and after manipulation by insecticides require validation by application of appropriate confocal imaging methods and analyses tools that rely on skilled observers. We suggest several improvements towards more reliable or standardized automated or semi-automated synapse counts in whole mount preparations of insect brains.
最近,彭和杨在《Scientific Reports》上发表的一项研究使用共聚焦显微镜对蜜蜂大脑蘑菇体中标记抗突触素的微小球体进行了自动定量分析,报告了可能不正确的微小球体密度值。虽然之前有几项使用共聚焦图像的视觉监督或自动计数以及对连续 3D 电子显微镜数据的分析的研究报告了每体积的突触复合物数量一致,但彭和杨发现,与视觉监督计数获得的数量相比,这些数量极低,相差 18 倍或更多,与另外两项使用自动计数的研究的数量相差 22-180 倍。这种极端差异尤其令人不安,因为这些研究中对整个大脑抗突触素标记的共聚焦图像的原始图像进行了高度相似的密切比较。我们得出结论,这些差异可能源于共聚焦成像的潜在错误应用,随后是错误使用自动图像分析软件。因此,报告的微小球体密度在成熟过程中和杀虫剂处理后的变化需要通过应用适当的共聚焦成像方法和分析工具进行验证,这些工具依赖于有经验的观察者。我们提出了一些改进方法,以实现昆虫大脑整体标本中更可靠或标准化的自动或半自动突触计数。