An In Vitro Analysis of the Influence of the Arterial Stiffness on the Aortic Flow Using Three-Dimensional Particle Tracking Velocimetry

Author(s):  
U. Gülan ◽  
B. Lüthi ◽  
M. Holzner ◽  
A. Liberzon ◽  
A. Tsinober ◽  
...  
2019 ◽  
pp. 75-81 ◽  
Author(s):  
Ismail Hakki Baltacioglu ◽  
◽  
Gulbike Demirel ◽  
Mehmet Eray Kolsuz ◽  
Kaan Orhan ◽  
...  

2015 ◽  
Vol 14 (1) ◽  
Author(s):  
Annika Osswald ◽  
Zhongke Sun ◽  
Verena Grimm ◽  
Grace Ampem ◽  
Karin Riegel ◽  
...  

Microscopy ◽  
2020 ◽  
Vol 69 (5) ◽  
pp. 324-329
Author(s):  
Shingo Hirashima ◽  
Keisuke Ohta ◽  
Tomonoshin Kanazawa ◽  
Akinobu Togo ◽  
Risa Tsuneyoshi ◽  
...  

Abstract Conventional imaging for three-dimensional (3D) ultra-architectural analysis of collagen fibers and fibroblasts is time-consuming and requires numerous ultrathin sections to search the target area. Currently, no method allows 3D ultra-architectural analysis of predetermined areas including spatial relationships between collagen fibers and fibroblasts in vitro. Herein, we developed a new method for in vitro analysis of the 3D ultrastructure of fibroblasts and collagen fibers using CLEM optimized for picrosirius red staining and FIB/SEM tomography. Collagen fibers were observed between, rather than on top of, stacked cells. This method offers the advantage of mesoscopic and ultrastructural analysis, thus minimizing bias and ensuring accurate observation.


Author(s):  
R.A. Milligan ◽  
P.N.T. Unwin

A detailed understanding of the mechanism of protein synthesis will ultimately depend on knowledge of the native structure of the ribosome. Towards this end we have investigated the low resolution structure of the eukaryotic ribosome embedded in frozen buffer, making use of a system in which the ribosomes crystallize naturally.The ribosomes in the cells of early chicken embryos form crystalline arrays when the embryos are cooled at 4°C. We have developed methods to isolate the stable unit of these arrays, the ribosome tetramer, and have determined conditions for the growth of two-dimensional crystals in vitro, Analysis of the proteins in the crystals by 2-D gel electrophoresis demonstrates the presence of all ribosomal proteins normally found in polysomes. There are in addition, four proteins which may facilitate crystallization. The crystals are built from two oppositely facing P4 layers and the predominant crystal form, accounting for >80% of the crystals, has the tetragonal space group P4212, X-ray diffraction of crystal pellets demonstrates that crystalline order extends to ~ 60Å.


2005 ◽  
Vol 173 (4S) ◽  
pp. 315-316
Author(s):  
Kari Hendlin ◽  
Brynn Lund ◽  
Manoj Monga

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