We present a 3-D microfluidic device designed for localized drug delivery to cellular networks. The device features a flow cell comprising a main channel for nutrient delivery as well as multiple channels for drug delivery. This device is one key component of a larger, fully integrated system now under development, based upon a microelectrode array (MEA) with on-chip CMOS circuitry for recording and stimulation of electrogenic cells (e.g. neurons, cardiomyocytes). As a critical system unit, the microfluidics must be carefully designed and characterized to ensure that candidate drugs are delivered to specific regions of the culture at known concentrations. Furthermore, microfluidic design and functionality is dictated by the size, geometry, ...
In this contribution we present the development of three microfabricated devices for the study of ne...
A microfluidic chip featuring laminar flow-based parallel gradient-generating networks was designeda...
Spatially and temporally resolved delivery of soluble factors is a key feature for pharmacological a...
We present a 3-D microfluidic device designed for localized drug delivery to cellular networks. The ...
We present a 3-D microfluidic device designed for localized drug delivery to cellular networks. The ...
We present a 3-D microfluidic device designed for localized drug delivery to cellular networks. The ...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
Abstract The study of individual cells and cellular net-works can greatly benefit from the capabilit...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
A three-dimensional microfluidic device has been successfully fabricated and the flow streams charac...
In this contribution we present the development of three microfabricated devices for the study of ne...
A microfluidic chip featuring laminar flow-based parallel gradient-generating networks was designeda...
Spatially and temporally resolved delivery of soluble factors is a key feature for pharmacological a...
We present a 3-D microfluidic device designed for localized drug delivery to cellular networks. The ...
We present a 3-D microfluidic device designed for localized drug delivery to cellular networks. The ...
We present a 3-D microfluidic device designed for localized drug delivery to cellular networks. The ...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
Abstract The study of individual cells and cellular net-works can greatly benefit from the capabilit...
The study of individual cells and cellular networks can greatly benefit from the capabilities of mic...
A three-dimensional microfluidic device has been successfully fabricated and the flow streams charac...
In this contribution we present the development of three microfabricated devices for the study of ne...
A microfluidic chip featuring laminar flow-based parallel gradient-generating networks was designeda...
Spatially and temporally resolved delivery of soluble factors is a key feature for pharmacological a...