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Engineering and Technology

D-Index
74
Citations
22701
World Ranking
805
National Ranking
280

Research.com Recognitions

  • 1986 - IEEE Fellow For contributions to biomedical engineering education and research, and development of textbooks in medical instrumentation and clinical engineering.

Overview

John G Webster had an academic affiliation with the University of Wisconsin-Madison in the United States. Their professional work was recognized in the field of biomedical engineering, particularly in education and research related to medical instrumentation and clinical engineering.

Webster was awarded the IEEE Fellow distinction in 1986. The citation for this award noted contributions to biomedical engineering education and research, along with the development of textbooks in medical instrumentation and clinical engineering.

Although specific details on journal articles, coauthors, publication venues, or subfields were not available, Webster's career was notably associated with biomedical engineering education and research topics. These areas likely encompassed a focus on technologies applicable to clinical environments and instrumentation used in medical diagnosis and treatment.

Their work contributed to the academic and practical understanding of medical instrumentation, serving both educational and research functions within biomedical engineering. This implies involvement in the development or evaluation of devices critical for clinical practice, as well as in the pedagogical materials used to train engineers in this specialization.

Webster was deceased as of the time of this profile.

Best Publications

  • Electrotactile and vibrotactile displays for sensory substitution systems

    K.A. Kaczmarek;J.G. Webster;P. Bach-y-Rita;W.J. Tompkins

  • Comparing Reconstruction Algorithms for Electrical Impedance Tomography

    Thomas J. Yorkey;John G. Webster;Willis J. Tompkins

  • Estimation of QRS Complex Power Spectra for Design of a QRS Filter

    Nitish V. Thakor;John G. Webster;Willis J. Tompkins

  • Driven-right-leg circuit design

    Bruce B. Winter;John G. Webster

  • Skin impedance from 1 Hz to 1 MHz

    J. Rosell;J. Colominas;P. Riu;R. Pallas-Areny

  • Three-dimensional finite-element analyses for radio-frequency hepatic tumor ablation

    S. Tungjitkusolmun;S.T. Staelin;D. Haemmerich;Jang-Zern Tsai

  • Estimation of energy expenditure by a portable accelerometer.

    Henry J. Montoye;Richard Washburn;Stephen Servais;Andrew Ertl

  • Measurement, Instrumentation, and Sensors Handbook : Two-Volume Set

    John G. Webster;Halit Eren

  • An Impedance Camera for Spatially Specific Measurements of the Thorax

    Ross P. Henderson;John G. Webster

  • Dielectric properties of human normal, malignant and cirrhotic liver tissue: in vivo and ex vivo measurements from 0.5 to 20 GHz using a precision open-ended coaxial probe

    Ann P O’Rourke;Mariya Lazebnik;John M Bertram;Mark C Converse

  • Dry electrodes for electrocardiography

    N Meziane;N Meziane;J G Webster;J G Webster;M Attari;A J Nimunkar

  • In vivo electrical conductivity of hepatic tumours

    Dieter Haemmerich;S T Staelin;J Z Tsai;S Tungjitkusolmun

  • Expanding the Bioheat Equation to Include Tissue Internal Water Evaporation During Heating

    D. Yang;M.C. Converse;D.M. Mahvi;J.G. Webster

  • Measurement and Analysis of Tissue Temperature During Microwave Liver Ablation

    Deshan Yang;M.C. Converse;D.M. Mahvi;J.G. Webster

  • Minimizing Electrode Motion Artifact by Skin Abrasion

    Unknown

  • Reductionl of Interference Due to Common Mode Voltage in Biopotential Amplifiers

    Bruce B. Winter;John G. Webster

  • Ground-Free ECG Recording with Two Electrodes

    Nitish V. Thakor;John G. Webster

  • Optimal QRS detector.

    N. V. Thakor;J. G. Webster;W. J. Tompkins

  • Hepatic radiofrequency ablation with internally cooled probes: effect of coolant temperature on lesion size

    D. Haemmerich;L. Chachati;A.S. Wright;D.M. Mahvi

  • Motion Artifact from Spot and Band Electrodes During Impedance Cardiography

    Minghai Qu;Yujian Zhang;John G. Webster;Willis J. Tompkins

  • Impedance of Skeletal Muscle from 1 Hz to 1 MHz

    E. Zheng;S. Shao;J. G. Webster

  • A floating sleeve antenna yields localized hepatic microwave ablation

    Deshan Yang;J.M. Bertram;M.C. Converse;A.P. O'Rourke

Frequent Co-Authors

Willis J. Tompkins
Willis J. Tompkins University of Wisconsin–Madison
Dieter Haemmerich
Dieter Haemmerich Medical University of South Carolina
Nitish V. Thakor
Nitish V. Thakor National University of Singapore
Robert G. Radwin
Robert G. Radwin University of Wisconsin–Madison
Eung Je Woo
Eung Je Woo Kyung Hee University
Jerome A. Dempsey
Jerome A. Dempsey University of Wisconsin–Madison
David J. Beebe
David J. Beebe University of Wisconsin–Madison
Yu Hen Hu
Yu Hen Hu University of Wisconsin–Madison
Yongmin Kim
Yongmin Kim Pohang University of Science and Technology
John H. Booske
John H. Booske University of Wisconsin–Madison

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