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Furlong-Vazquez, Cosme
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Worcester Polytechnic Institute
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Rotor vibrations: optical metrology & analysis
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HIGH-SPEED SHAPE AND DISPLACEMENT MEASUREMENTS BY HOLOGRAPHY AND APPLICATIONS IN MIDDLE-EAR RESEARCH
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Development of digital holographic vibrometry methods for determination of mechanical properties of bioengineered tissues
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Digital sculpture restoration
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Residual Stress in RF MEMS switches
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Multi-functional autonomous solar-hydrogen robot
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Development and characterization of a miniaturized PEM fuel-cell for MEMS applications
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Design and analysis of a piezoelectrically actuated nanopositioner
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Analytical and experimental investigations of high-resolution MEMS pressure sensors
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Electromagnet Eddy Current and Friction Elevator Brake
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Opto-mechanical Characterization Methods to Understand Physical and Mechanical Properties of Bioengineered Tissue
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Rapid prototyping of fiber-optic based micro-force sensors by two-photon polymerization
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Vortex Tube Cooling System
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Design, Realization, and Application of an Ultra-High-Speed Shock Tube for Middle-Ear Mechanics
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Application of Virtual Reality to the Engineering Design Process
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Development and Application of Quantitative Methodologies for the Characterization of Passive Hearing Protection Devices
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Multifunctional Testing Artifacts for Evaluation of 3D Printed Components by Fused Deposition Modeling
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Automation of Pleated Catridge Assembly
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Design and Realization of a Laser Holographic Otoscope
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Design for Assembly: Part Orientation, Prediction and Demonstration
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Development of a Miniaturized Otoscope for Middle Ear Diagnostics by High Speed Holography
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DEVELOPMENT OF A POST-FABRICATION STIFFNESS CHARACTERIZATION TOOL FOR MEMS
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Development of ISO Compliant Repeatability Procedures for Evaluating Collaborative Robots
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Development of Spatial Optical Coherence Tomography Methods to Characterize Thin Biological Samples
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Evaluation and Application of a High-Resolution Fiber-Optic Strain Sensor
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Fully Reversed Engineering: streamlining 3D component digitization, modification, and reproduction
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Heat Sealing Fundamentals, Testing, and Numerical Modeling
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High Efficiency Moped
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Integrated Rapid Prototyping: Efficient Development of Custom Orthotics
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INVERSE METHOD OF NANOINDENTATION BY LASER INTERFEROMETRY
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INVESTIGATIONS OF THERMO-MECHANICAL PROPERTIES OF CONVENTIONAL MATERIALS FOR COMPARISON WITH NANO-PARTICLE BASED COMPOSITES
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Mapping the Histology of the Human Tympanic Membrane by Spatial Domain Optical Coherence Tomography
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Medical Impulse Turbine Cutting Device
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MEMS for real-time imaging
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Miniaturization of an optoelectronic holographic otoscope for measurement of nanodisplacements in tympanic membranes
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MRI Compatible Optical Force Sensing Technique for Robotically Assisted Biopsies
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Packaging and Optimization of a Digital Holographic Otoscope For Clinical Use
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Quantitative Corrosion Evaluation and Damage Modeling in Ferrous Materials
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Thermoelectric Management of Lithium Ion Batteries in Mobile Devices
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Towards Automated Ear Surgery: Improved Calibration and Registration Procedures
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Updating Selected Laboratories in Engineering Experimentation Course at Worcester Polytechnic Institute
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Voice Driven Stroboscopic Illumination with MEMS
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Electronic amplification and music.
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A Feasibility Study on Using Infrared- transmitting Fiber-optics for Thermal Imaging
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Development of high-speed digital holographic shape and displacement measurement methods for middle-ear mechanics in-vivo
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Development of an Infrared Direct Viewer Based on a MEMS Focal Plane Array
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Full-field vibrometry by high-speed digital holography for middle-ear mechanics
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Development of a multi-wavelength lensless digital holography system for 3D deformations and shape measurements of tympanic membranes
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Development of Holographic Interferometric Methodologies for Characterization of Shape and Function of the Human Tympanic Membrane
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Computational and Experimental Approach for Non-destructive Testing by Laser Shearography
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Interferometric Optical Readout System for a MEMS Infrared Imaging Detector
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Powering of endoscopic cutting tools for minimally invasive procedures
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Development of a High Speed, Robust System for Full Field-of-View 3D Shape Measurements
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Development of Sound Presentation System (SPS) for Characterization of Sound Induced Displacements in Tympanic Membranes
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Development of an Optoelectronic Holographic Platform for Otolaryngology Applications
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Development of an optoelectronic holographic otoscope system for characterization of sound-induced displacements in tympanic membranes
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Phase modulating interferometry with stroboscopic illumination for characterization of MEMS
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Development of a wireless MEMS inertial system for health monitoring of structures
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