Nothing Special   »   [go: up one dir, main page]

×
Please click here if you are not redirected within a few seconds.
In this study, we showed that platelets were produced from megakaryocytes using a bioreactor with a slope shaped 3D microchannel by applying fluid force.
Dec 3, 2017 · In this study, we showed that platelets were produced from megakaryocytes using a bioreactor with a slope shaped 3D microchannel by applying ...
In this study, we showed a design strategy of a bioreactor to produce platelets (PLTs) from megakaryocytes (MKs) using microfluidic chip.
Dive into the research topics of 'A design strategy of a bioreactor for platelet production using fluid force'. Together they form a unique fingerprint. Sort by ...
Bibliographic details on A design strategy of a bioreactor for platelet production using fluid force.
In this study, we showed a design strategy of a bioreactor to produce platelets (PLTs) from megakaryocytes (MKs) using microfluidic chip.
A design strategy of a bioreactor for platelet production using fluid force · Author Picture Hiroki Kumon. Department of Micro-Nano System Engineering Nagoya ...
Jan 23, 2017 · The bioreactor designs by Lasky's group introduced and furthered the concepts of continuous media perfusion, gas exchange and scaffold ...
We succeeded in evaluating the effect of the fluid force on the production of platelet-like particles (PLPs) using the microchannel with a constant flow rate.
Missing: strategy | Show results with:strategy
Feb 22, 2016 · We present a new, rapid method for producing blood platelets in vitro from cultured megakaryocytes based on a microfluidic device.
Missing: strategy | Show results with:strategy