Microelectromechanical systems (MEMS), a technology that resulted from significant innovation in semiconductor fabrication, have recently been applied to the development of silicon nanopore membranes (SNM). In contrast to membranes fabricated from polymeric materials, SNM exhibit slit-shaped pores, monodisperse pore size, constant surface porosity, zero pore overlap, and sub-micron thickness. This development in membrane fabrication is applied herein for the validation of the XDLVO (extended Derjaguin, Landau, Verwey, and Overbeek) theory of membrane transport within the context of hemofiltration. In this work, the XDLVO model has been derived for the unique slit pore structure of SNM. Beta-2-microglobulin (B2M), a clinically relevant "midd...
International audienceIn this work, we present a novel fabrication process that enables the monolith...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
Hemodialysis using hollow-fiber membranes provides life-sustaining treatment for nearly 2 million pa...
Thesis (Ph.D.)--University of Rochester. School of Medicine & Dentistry. Dept. of Biochemistry and B...
This study presents a simple approach to perform selective mass transport through freestanding porou...
A new route will be presented for an all-parallel fabrication of highly flexible, freestanding membr...
Porous silicon (PSi) research has been active for several decades. The multiple properties and struc...
An implantable hemofilter for the treatment of kidney failure depends critically on the transport ch...
Extracorporeal membrane oxygenation (ECMO) is a life support system that circulates the blood throug...
International audienceNanoporous membranes are used for the elaboration of implantable medical devic...
Understanding the functionality of neural circuits is important for not only research but also the d...
This dissertation focuses on the design, fabrication, and study necessary for a renal cell device th...
Transport and surface interactions of proteins in nanopore membranes play a key role in many proces...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
International audienceIn this work, we present a novel fabrication process that enables the monolith...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
Hemodialysis using hollow-fiber membranes provides life-sustaining treatment for nearly 2 million pa...
Thesis (Ph.D.)--University of Rochester. School of Medicine & Dentistry. Dept. of Biochemistry and B...
This study presents a simple approach to perform selective mass transport through freestanding porou...
A new route will be presented for an all-parallel fabrication of highly flexible, freestanding membr...
Porous silicon (PSi) research has been active for several decades. The multiple properties and struc...
An implantable hemofilter for the treatment of kidney failure depends critically on the transport ch...
Extracorporeal membrane oxygenation (ECMO) is a life support system that circulates the blood throug...
International audienceNanoporous membranes are used for the elaboration of implantable medical devic...
Understanding the functionality of neural circuits is important for not only research but also the d...
This dissertation focuses on the design, fabrication, and study necessary for a renal cell device th...
Transport and surface interactions of proteins in nanopore membranes play a key role in many proces...
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes f...
International audienceIn this work, we present a novel fabrication process that enables the monolith...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...
A relevant number of organ-on-chips is aimed at modeling epithelial/endothelial interfaces between t...