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Padgett, M. & Di Leonardo, R. Holographic optical tweezers and their relevance to lab on chip devices.
The recent field programmable gate array (FPGA) system on chip devices offer a new degree of design freedom.
This device is intended to be integrated on transparent and rapid prototyping lab on chip devices for biomedical applications.
This work can impact in the design of biomaterials and can be applied to implanted biomedical devices, tissue engineering scaffolds and lab on chip devices.
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In contrast to microfluidic lab-on chip devices, limited to fast kinetics measurements, this setup permits to extract kinetic rate constants of slow reactions at very low cost without requiring any use of soft lithography or glass etching technique for its design, nor miniaturization of analytical tools.
Triscend developed configurable system-on-chip devices and customizable microcontrollers.
A monolithic system, in which the photonic resonator hosts the quantum emitter is required for ideal on-chip devices.
Sensors able to operate with liquid phases are the key-point for the development of biochemical lab-on-chip devices.
Three critical points can be identified to achieve 'true' lab-on-chip devices: sample handling, analytical detection and signal transduction.
The light-addressable potentiometric sensor is a promising technology platform for multi-sensor applications and lab-on-chip devices.
Also the future emerging system of on-chip devices require long wavelength laser for high capacity applications.
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