Na FER-u postoji više zaposlenika s imenom

A Study of Handgrip Force Prediction Scheme Based on Electrical Impedance Myography
Dynamics Combined with Hill Model for Functional Electrical Stimulation Ankle Angle Prediction
High Precision Dual-channel Electrochemical POCT Device with Automatic Adjustment of Current Detection Sensitivity
Intrabody Communication Methods – A Short Overview
Smartphone-based electrochemical on-site quantitative detection device for nonenzyme lactate detection
Finite element modeling and experimental analysis of bladder volume body surface monitoring method
Detection of low back muscle state based on electrical impedance myography
Grip force prediction based on changes in Brachioradialis Muscle Impedance
EIM multi-frequency Measurement System Based on Virtual Instrument
Electrical Impedance Myography for Evaluating Muscle Fatigue Induced by Neuromuscular Electrical Stimulation
Ten Years of Collaboration Between University of Zagreb, Faculty of Electrical Engineering and Computing and Fuzhou University
萨格勒布大学电气工程与计算学院与福州大学合作的十年
Intrabody Communication Research
Electrical Impedance Myography for Muscle Fatigue Monitoring
Integrated Intrabody Communication Node based on OOK modulation
Wireless Body Sensor Communication Systems Based on UWB and IBC Technologies: State-of-the-Art and Open Challenges
Electrical Impedance Myography Applied to Monitoring of Muscle Fatigue during Dynamic Contractions
Preliminary Characterization of Capacitive Intrabody Communication Channel under Implantable-Like Conditions
A Differential Analog Receiver Front-End for Galvanic-Coupled Human Body Communication
Design and Implementation of Galvanic Coupling Intra-Body Communication Transceivers using Differential Phase Shift Keying
Design of Galvanic Coupling Intra-body Communication Transceiver using Direct Sequence Spread Spectrum Technology
Optimization of the Electrode Configuration of Electrical Impedance Myography for Wearable Application
Analysis of Electrical Impedance Myography Electrodes Configuration for Local Muscle Fatigue Evaluation Based on Finite Element Method
A Leg Phantom Model Based on the Visible Human Data for Intra-Body Communication
An Investigation on Phase Characteristics of Galvanic Coupling Human Body Communication
Estimating the Ankle Angle Induced by FES via the Neural Network-Based Hammerstein Model
A Contactless Human Respiration Rate Measurement Using UWB Transversal Propagation Method
Past Results, Present Trends and Future Challenges in Intrabody Communication
Electrical exposure analysis of galvanic-coupled intra-body communication based on the empirical arm models
Single-Chip Intrabody Communication Node
A Novel Gait Detection Algorithm Based on Wireless Inertial Sensors
Investigation of implantable signal transmission characteristics based on visible data of the human leg
Biological Evaluation of the Effect of Galvanic Coupling Intrabody Communication on Human Skin Fibroblast Cells
An intra-body communication research platform based on virtual instrument
Effect of transformer symmetry on intrabody communication channel measurements using grounded instruments
Wireless intrabody communication sensor node realized using PSoC microcontroller
Human posture detection based on human body communication with multi-carriers modulation
Intrabody Communication in Biotelemetry
Measurement of the Received Power in a Realistic Intrabody Communication Scenario
An Investigation of the FEM Simulation for the Galvanic Coupling IBC Based on Visible Human Data
The Design and Experiment of the Leg Model Based on Galvanic Coupling Intra-Body Communication
The Analysis of Channel Characteristics and Implementation of Modem Based on Virtual Instrument in Intra-body Communication
Prijenos signala ljudskim tijelom kapacitivnom metodom
Intrabody communication based on capacitive method
On the Transformer Effects in the Measurements of Capacitive Intrabody Communication Transmission Characteristics Using Grounded Instruments
Investigation of Power Consumption with Different MAC Layer Protocols for Galvanic Coupling Intra-body Communication
Measurements of Capacitive Intrabody Communication Channel
On a pulse response of a capacitive intrabody communication channel
Concept of an intrabody networked brain-computer interface controlled assistive robotic system
Effect of Transmitter and Receiver Electrodes Configurations on the Capacitive Intrabody Communication Channel from 100 kHz to 100 MHz
Channel Modeling and Simulation for Galvanic Coupling Intra-body Communication
Capacitive Intrabody Communication Channel Research
Capacitive Intrabody Communication Research in Croatia
Effect of Body Positions and Movements in a Capacitive Intrabody Communication Channel from 100 kHz to 100 MHz
A Capacitive Intrabody Communication Channel from 100 kHz to 100 MHz
Effect of Electrodes Configurations on the Capacitive Intrabody Communication Channel from 100 kHz to 100 MHz
Intrabody communication Research
A Capacitive Intrabody Communication Channel from 100 kHz to 100 MHz
Prijenos signala ljudskim tijelom
Application of Wireless Intrabody Communication System to Muscle Fatigue Monitoring
A finite element method study of the current density distribution in a capacitive intrabody communication system
Intrabody Communication in Biotelemetry
Prijenos biotelemetrijskih signala ljudskim tijelom
A multichannel wireless EMG measurement system based on intrabody communication
Effects of Transmitter Position and Receiver Ground Plane on Signal Transmission in Intrabody Wireless EMG Measurement System
Multifunctional Configurable USB Data Acquisition System
Programabilni mjerni kanal inteligentnog mjernog sustava opće namjene
Životopis
Dr. sc. Željka Lučev Vasić je izvanredna profesorica Sveučilišta u Zagrebu Fakulteta elektrotehnike i računarstva (FER). Diplomirala je s naglaskom na znanstveno-istraživačkom radu 2007. godine, na smjeru industrijska elektronika, a doktorirala s temom „Intrabody communication based on capacitive method“ (hrv. „Prijenos signala ljudskim tijelom zasnovan na kapacitivnoj metodi“) 2014. godine. Na FER-u je zaposlena od listopada 2007. godine kao znanstveni suradnik, od ožujka 2008. kao znanstveni novak u suradničkom zvanju asistenta, od rujna 2014. kao poslijedoktorand, od lipnja 2016. kao docent te od listopada 2021. kao izvanredni profesor. Njeni profesionalni i znanstveni interesi uključuju prijenos signala ljudskim tijelom te biomedicinsku elektroničku instrumentaciju i mjerenja. Sudjeluje u nastavi iz predmeta u području biomedicine, razvoja elektroničkih sustava te senzorskih tehnologija. Dobitnica je Državne nagrade za znanost za 2020. godinu u području tehničkih znanosti. Članica je stručnih udruženja IEEE (Institute of Electrical and Electronic Engineers), IFMBE (International Federation of Medical and Biological Engineering) i HDBIMF (Hrvatsko društvo za biomedicinsko inženjerstvo i medicinsku fiziku).
Nastava
Sveučilišni preddiplomski
- Electronic Systems Design (Nositelj)
- Projektiranje elektroničkih sustava (Nositelj)
- Računalom podržano projektiranje elektroničkih uređaja (Nositelj)
- Technology in Medicine (Nositelj)
- Tehnologija u medicini (Nositelj)
- Projekt (Predavanja)
- Projekt (Predavanja)
- Projekt R (Predavanja)
- Završni rad (Predavanja)
- Završni rad (Predavanja)
- Završni rad (Predavanja)
Sveučilišni diplomski
- Biomedicinski signali i sustavi (Nositelj)
- Multisenzorski sustavi i lokomocija (Nositelj)
- Projektiranje i simulacija elektroničkih uređaja korištenjem programskih paketa Siemens EDA (Nositelj)
- Projektiranje ugradbenih elektroničkih sustava (Nositelj)
- Senzorske tehnologije (Nositelj)
- Diplomski projekt (Predavanja)
- Diplomski projekt (Predavanja)
- Diplomski rad (Predavanja)
- Projekt (Predavanja)
Poslijediplomski doktorski
- Biomedicinski signali i sustavi (Nositelj)
Kompetencije
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Communications technology
Biomedical communication Biomedical telemetry Personal communication networks Near field communication Personal area networks Wireless sensor networks Body sensor networks Modulation -
Components, packaging, and manufacturing technology
Electronic components Biomedical transducers Integrated circuit manufacture Integrated circuit packaging -
Engineering – general
Electrical engineering Research and development -
Engineering in medicine and biology
Biomedical telemetry Biomedical computing Biomedical engineering Bioimpedance Biomedical electronics Biomedical signal processing Biomedical equipment Biomedical electrodes Biomedical telemetry Biomedical transducers -
IEEE organization
IEEE Conference activities IEEE Educational activities IEEE Publishing activities IEEE Technical activities IEEE Volunteer activities IEEE Societies IEEE members -
Instrumentation and measurement
Electric variables Medical instruments Oscilloscopes Biomedical measurement Biomedical monitoring Electromyography Electrophysiology Electric variables measurement Electromagnetic measurements Electromagnetic modeling Measurement errors Measurement techniques Measurement uncertainty Measurement units Circuit testing Electronic equipment testing Frequency response Test equipment -
Sensors
Sensor phenomena and characterization Sensor systems and applications Wearable sensors -
Signal processing
Digital signal processing Modulation Amplitude modulation Demodulation Digital modulation Frequency modulation Phase modulation Pulse width modulation -
Vehicular and wireless technologies
Wireless sensor networks Body sensor networks -
Circuits and systems
Analog circuits Analog integrated circuits Analog processing circuits Application specific integrated circuits Circuit analysis Circuit analysis computing Coupled mode analysis Nonlinear network analysis Circuit simulation Digital circuits Digital integrated circuits Distributed parameter circuits Equivalent circuits Integrated circuits Microprocessors Printed circuits Rail to rail operation Rail to rail amplifiers -
Education
Biomedical engineering education Electronics engineering education -
Systems engineering and theory
Computer simulation Scattering parameters