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產(chǎn)品詳情
  • 產(chǎn)品名稱:ibidi 血管模擬/u-Slide y-shaped/80126 80122 80123 80124 80125 80121

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  • 產(chǎn)品廠商:德國ibidi
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簡單介紹:
Rolling and adhesion of leukocytes on endothelial cells cultured under flow · Simulation of the bifurcation of blood vessels for arteriosclerosis research · Cell-cell interaction studies and cell-drug interaction screenings under flow conditions
詳情介紹:
A flow through μ-Slide for bifurcation studies and blood vessel simulation---ibidi
·                                 Perfect simulation of live conditions in branching blood vessels
·                                 Allows flows in two different directions under different angles
 
Applications:
·                                 Rolling and adhesion of leukocytes on endothelial cells cultured under flow
·                                 Simulation of the bifurcation of blood vessels for arteriosclerosis research
·                                 Cell-cell interaction studies and cell-drug interaction screenings under flow conditions
 
 
Specifications:
Adapters
Female Luer
Volume per reservoir
60 μl
Volume of the channel
110 μl
Height of the channel
0.4 mm
Growth area
2.8 cm2
Bottom: ibidi Standard Bottom
 
 
 
Technical Features:
·                                 30° and 45° angles to simulate the bifurcation of blood vessels
·                                 Easy connection to tubes and pumps
·                                 Fully compatible with high resolution microscopy and immunofluorescence staining
·                                 Also available as a Flow Kit
·                                 Defined shear stress and shear rate levels
·                                 The flow is always laminar, i.e., turbulent flows* are not possible
* For simulation of turbulences we recommend oscillating the flow using the ibidi Pump System.
Non-Uniform, Laminar Shear Stress                                                                                                
  QQ圖片20151221142702.png
 Two Flow Directions Possible     
  
 QQ圖片20151221142716.png
 Use Application Note 18 to calculate the shear stress in a μ-Slide y-shaped.
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