The unibody lab-on-a-chip (ULOC) concept entails a fast and affordable micro-prototyping system built around a single monolithic 3D printed element (unibody). A consumer-grade stereo lithography (SL) 3D printer can configure ULOCs with different forms of sample delivery, transport, handling and readout, while minimizing material costs and fabrication time. ULOC centralizes all complex fabrication procedures and replaces the need for clean room resources, delivering prototypes for less than 1 US$, which can be printed in 10 min and ready for testing in less than 30 min. Recent examples of ULOC integration of transport, chemical sensing for optical readout and flow mixing capabilities are discussed, as well as the integration of the first ch...
Abstract The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biolog...
In the past few decades, significant advancement has been made towards the development of automated ...
Organs-on-a-chip, or OoCs, are microfluidic tissue culture devices with micro-scaled architectures t...
The unibody lab-on-a-chip (ULOC) concept entails a fast and affordable micro-prototyping system buil...
In this thesis, solutions for the development of autonomous Lab-on-a-chip (LOC), and 3D printing for...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
This work describes a preliminary investigation of commercially available 3D printing technologies f...
For the past decade, the concept of ‘Lab-on-a-chip’ has been getting increasingly popular with biome...
The formation of smart Lab-on-a-Chip (LOC) devices featuring integrated sensing optics is currently ...
The majority of commercially oriented microfluidic technologies provide novel point-of-use solutions...
In laboratory environments, 3D printing is used for fast prototyping of assays and devices. Stereoli...
The Organ on Chip (OoC) market is fast-growing and has the promise to drastically reduce the cost of...
The integration of actuators within disposable lab-on-a-chip devices is a demanding goal that requir...
The present work reports the first demonstration of straightforward fabrication of monolithic unibod...
Abstract The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biolog...
In the past few decades, significant advancement has been made towards the development of automated ...
Organs-on-a-chip, or OoCs, are microfluidic tissue culture devices with micro-scaled architectures t...
The unibody lab-on-a-chip (ULOC) concept entails a fast and affordable micro-prototyping system buil...
In this thesis, solutions for the development of autonomous Lab-on-a-chip (LOC), and 3D printing for...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
In this work, inexpensive manufacturing of unibody transparent mesofluidic platforms for pressure-dr...
This work describes a preliminary investigation of commercially available 3D printing technologies f...
For the past decade, the concept of ‘Lab-on-a-chip’ has been getting increasingly popular with biome...
The formation of smart Lab-on-a-Chip (LOC) devices featuring integrated sensing optics is currently ...
The majority of commercially oriented microfluidic technologies provide novel point-of-use solutions...
In laboratory environments, 3D printing is used for fast prototyping of assays and devices. Stereoli...
The Organ on Chip (OoC) market is fast-growing and has the promise to drastically reduce the cost of...
The integration of actuators within disposable lab-on-a-chip devices is a demanding goal that requir...
The present work reports the first demonstration of straightforward fabrication of monolithic unibod...
Abstract The technology of “Lab-on-a-Chip” allows the synthesis and analysis of chemicals and biolog...
In the past few decades, significant advancement has been made towards the development of automated ...
Organs-on-a-chip, or OoCs, are microfluidic tissue culture devices with micro-scaled architectures t...