Advanced Microfluidics Based Point-of-Care Diagnostics

Advanced Microfluidics Based Point-of-Care Diagnostics

A Bridge Between Microfluidics and Biomedical Applications

Salammal, D. Shabi Thankaraj; Dhand, Chetna; Khan, Raju; Mishra, Ashtbhuja Prasad; Sanghi, Sunil Kumar

Taylor & Francis Ltd






15 a 20 dias


Descrição não disponível.
Chapter 1 The Basic Concept for Microfluidics-Based Devices

Chapter 2 Role of Microfluidics-Based Point-of-Care Testing (POCT) for Clinical Applications

Chapter 3 Microfluidic Paper-Based Analytical Devices for Glucose Detection

Chapter 4 Microfluidics-Based Point-of-Care Diagnostic Devices

Chapter 5 Microfluidics Device for Isolation of Circulating Tumor Cells in Blood

Chapter 6 3D-Printed Microfluidic Device with Integrated Biosensors for Biomedical Applications

Chapter 7 Integrated Biosensors for Rapid and Point-of-Care Biomedical Diagnosis

Chapter 8 Paper-Based Microfluidics Devices with Integrated Nanostructured Materials for Glucose Detection

Chapter 9 Microfluidics Devices as Miniaturized Analytical Modules for Cancer Diagnosis

Chapter 10 Analytical Devices with Instrument-Free Detection Based on Paper Microfluidics

Chapter 11 Micromixers and Microvalves for Point-of-Care Diagnosis and Lab-on-a-Chip Applications

Chapter 12 Microfluidic Contact Lenses for Ocular Diagnostics

Chapter 13 Microfluidic Platforms for Wound Healing Analysis

Chapter 14 Chromatographic Separation and Visual Detection on Wicking Microfluidics Devices

Chapter 15 Microfluidic Electrochemical Sensor System for Simultaneous Multi Biomarker Analyses

Chapter 16 Commercialization of Microfluidic Point-of-Care Diagnostic Devices
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diagnostics;Multiplexed detection;Biosensor;Biomarkers;Bioengineering;Nanotechnology;Point-of-care;Chemical Sciences;Microfabrication designs;lab-on-chip;Microfluidics Devices;We;CTC Isolation;POC Device;PDMS;POC Testing;Microfluidics Chip;Paper Devices;Microfluidic Channel;American Chemical Society;Chaotic Advection;CTCs;Glucose Detection;Detection Zone;Contact Angle;Microfluidics Technology;Dep Force;WBCs;White Blood Cells;Rapid POCT;Wax Printing;Microfluidics System;POCT Device;Inertial Lift Force;CTC Detection