Robert Wodnicki

Robert Wodnicki

University of Southern California

H-index: 34

North America-United States

About Robert Wodnicki

Robert Wodnicki, With an exceptional h-index of 34 and a recent h-index of 20 (since 2020), a distinguished researcher at University of Southern California, specializes in the field of Ultrasound, ASIC Electronics, Electronic Packaging, Liver Cancer.

His recent articles reflect a diverse array of research interests and contributions to the field:

System and method for high-frequency imaging array

BEYOND 1D ARRAYS From a transducer perspective, three-dimensional (3D) ultrasound imaging can be accomplished in a number of ways. Perhaps the most straightforward method is to …

2D Arrays

Electronically Scanned Large Apertures for Interventional and Diagnostic Liver

Fast volumetric ultrasound facilitates high-resolution 3D mapping of tissue compartments

2-D array design and fabrication with pitch-shifting interposer at frequencies from 4 MHz up to 10 MHz

Row-Multiplexed 1,024 Element Large Aperture Array for Electronic Scanning in Elevation

Highly integrated multiplexing and buffering electronics for large aperture ultrasonic arrays

Robert Wodnicki Information

University

Position

___

Citations(all)

3437

Citations(since 2020)

1236

Cited By

2819

hIndex(all)

34

hIndex(since 2020)

20

i10Index(all)

64

i10Index(since 2020)

35

Email

University Profile Page

Google Scholar

Robert Wodnicki Skills & Research Interests

Ultrasound

ASIC Electronics

Electronic Packaging

Liver Cancer

Top articles of Robert Wodnicki

System and method for high-frequency imaging array

2024/1/18

BEYOND 1D ARRAYS From a transducer perspective, three-dimensional (3D) ultrasound imaging can be accomplished in a number of ways. Perhaps the most straightforward method is to …

3D Ultrasound: Devices, Applications, and Algorithms

2023/12/22

Robert Wodnicki
Robert Wodnicki

H-Index: 21

2D Arrays

2023/12/22

Robert Wodnicki
Robert Wodnicki

H-Index: 21

Electronically Scanned Large Apertures for Interventional and Diagnostic Liver

2023/9/3

Fast volumetric ultrasound facilitates high-resolution 3D mapping of tissue compartments

Science Advances

2023/5/31

2-D array design and fabrication with pitch-shifting interposer at frequencies from 4 MHz up to 10 MHz

IEEE transactions on ultrasonics, ferroelectrics, and frequency control

2022/10/31

Row-Multiplexed 1,024 Element Large Aperture Array for Electronic Scanning in Elevation

2022/10/10

Highly integrated multiplexing and buffering electronics for large aperture ultrasonic arrays

BME frontiers

2022/6/9

Modular piezoelectric sensor array with co-integrated electronics and beamforming channels

2022/3/17

Two dimensional transducer arrays for ultrasound imaging

2022/3/10

Erratum to “Highly Integrated Multiplexing and Buffering Electronics for Large Aperture Ultrasonic Arrays”

BME frontiers

2022

A theranostic 3D ultrasound imaging system for high resolution image-guided therapy

Theranostics

2022

Deep high resolution 4D ultrafast ultrasound imaging with 2D matrix arrays

APS March Meeting Abstracts

2022

Recent progress in 3D printing piezoelectric materials for biomedical applications

2021/10/6

Modular large array for liver cancer imaging in handheld form factor

2021/9/11

The effective coupling coefficient for a completed PIN-PMN-PT array

Ultrasonics

2021/1/1

Current ultrasound technologies and instrumentation in the assessment and monitoring of COVID-19 positive patients

2020/8/28

Highly Integrated 2D Ultrasonic Arrays and Electronics for Modular Large Apertures

2020

Robert Wodnicki
Robert Wodnicki

H-Index: 21

2-D ultrasonic array-based optical coherence elastography

IEEE transactions on ultrasonics, ferroelectrics, and frequency control

2020/10/23

Large area 1.75 D array for liver cancer by tiling of multi-generation ASIC array modules

2020/9/7

See List of Professors in Robert Wodnicki University(University of Southern California)