scholarly journals Generation and 3-Dimensional Quantitation of Arterial Lesions in Mice Using Optical Projection Tomography

Author(s):  
Nicholas S. Kirkby ◽  
Lucinda Low ◽  
Junxi Wu ◽  
Eileen Miller ◽  
Jonathan R. Seckl ◽  
...  
PLoS ONE ◽  
2011 ◽  
Vol 6 (2) ◽  
pp. e16906 ◽  
Author(s):  
Nicholas S. Kirkby ◽  
Lucinda Low ◽  
Jonathan R. Seckl ◽  
Brian R. Walker ◽  
David J. Webb ◽  
...  

2019 ◽  
Author(s):  
Claire Anderson ◽  
Bill Hill ◽  
Hui-Chun Lu ◽  
Adam Moverley ◽  
Youwen Yang ◽  
...  

AbstractWe present a detailed analysis of gene expression in the 2-day (HH12) embryonic chick heart. RNA-seq of 13 micro-dissected regions reveals regionalised expression of 15,570 genes. Of these, 132 were studied by in situ hybridisation and a subset (38 genes) was mapped by Optical Projection Tomography or serial sectioning to build a detailed 3-dimensional atlas of expression. We display this with a novel interactive 3-D viewer and as stacks of sections, revealing the boundaries of expression domains and regions of overlap. Analysis of the expression domains also defines some sub-regions distinct from those normally recognised by anatomical criteria at this stage of development, such as a previously undescribed subdivision of the atria into two orthogonal sets of domains (dorsoventral and left-right). We also include a detailed comparison of expression in the chick with the mouse and other species.


Author(s):  
Andrea Bassi ◽  
Daniele Brida ◽  
Cosimo D’Andrea ◽  
Gianluca Valentini ◽  
Sandro De Silvestri ◽  
...  

Author(s):  
Olli Koskela ◽  
Md Tanvirul Kabir Chowdhury ◽  
Toni Montonen ◽  
Birhanu Belay ◽  
Sampsa Pursiainen ◽  
...  

2018 ◽  
Vol 45 (3) ◽  
pp. 0307012
Author(s):  
李颖超 Li Yingchao ◽  
刘昂 Liu Ang ◽  
李贵叶 Li Guiye ◽  
刘丽娜 Liu Lina ◽  
胡学娟 Hu Xuejuan ◽  
...  

2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Catriona Munro ◽  
Zer Vue ◽  
Richard R. Behringer ◽  
Casey W. Dunn

Abstract The Portuguese man of war, Physalia physalis, is one of the most conspicuous, but poorly understood members of the pleuston, a community of organisms that occupy a habitat at the sea-air interface. Physalia physalis is a siphonophore that uses a gas-filled float as a sail to catch the wind. The development, morphology, and colony organization of P. physalis is very different from all other siphonophores. Here, we look at live and fixed larval and juvenile specimens, and use optical projection tomography to build on existing knowledge about the morphology and development of this species. We also propose a framework for homologizing the axes with other siphonophores, and also suggest that the tentacle bearing zooids should be called tentacular palpons. Previous descriptions of P. physalis larvae, especially descriptions of budding order, were often framed with the mature colony in mind. However, we use the simpler organization of larvae and the juvenile specimens to inform our understanding of the morphology, budding order, and colony organization in the mature specimen. Finally, we review what is known about the ecology and lifecycle of P. physalis.


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