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Engineering and Technology

D-Index
45
Citations
11170
World Ranking
5357
National Ranking
1499

Overview

David Isaacson is affiliated with Rensselaer Polytechnic Institute in the United States. Their research primarily focuses on the field of engineering, with significant contributions to electrical and electronic engineering, mechanics of materials, surgery, geophysics, and mechanical engineering.

The scientist's main research topics cover electrical and bioimpedance tomography, flow measurement and analysis, hemodynamic monitoring and therapy, geophysical and geoelectrical methods, non-destructive testing techniques, and electrochemical analysis and applications.

Isaacson's recent publications showcase a concentration on electrical impedance tomography (EIT) and related biomedical engineering applications. Notable recent papers include:

  • ACT5 Electrical Impedance Tomography System, 2023, published in IEEE Transactions on Biomedical Engineering
  • A 3D Reconstruction Algorithm for Real-time Simultaneous Multi-Source EIT Imaging for Lung Function Monitoring, 2020, published in bioRxiv (Cold Spring Harbor Laboratory)
  • Fast absolute 3D CGO-based electrical impedance tomography on experimental tank data, 2022, published in Physiological Measurement
  • Simultaneous Acquisition of EIT and ECG Signals on Active EIT Electrodes, 2024, published in IEEE Transactions on Biomedical Engineering
  • Feasibility of Electric Impedance Tomography in the Assessment of Lung Perfusion and Ventilation in Congenital Pulmonary Vein Stenosis, 2025, published in Pediatric Cardiology

Isaacson frequently collaborates with several researchers, including G.J. Saulnier, Omid Rajabi Shishvan, Jennifer L. Mueller, J.C. Newell, and Sarah Jane Hamilton. These collaborative efforts reflect sustained teamwork in advancing the understanding and applications of electrical impedance tomography and related biomedical technologies.

The scientist's body of work is featured prominently in various publication venues such as:

  • IEEE Transactions on Biomedical Engineering
  • arXiv (Cornell University)
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Physiological Measurement
  • Pediatric Cardiology

Best Publications

  • Electrical Impedance Tomography

    Margaret Cheney;David Isaacson;Jonathan C. Newell

  • Existence and uniqueness for electrode models for electric current computed tomography

    Erkki Somersalo;Margaret Cheney;David Isaacson

  • NOSER: An algorithm for solving the inverse conductivity problem

    Margaret Cheney;David Isaacson;Jonathan C. Newell;S. Simske

  • Electrode models for electric current computed tomography

    Kuo-Sheng Cheng;D. Isaacson;J.C. Newell;D.G. Gisser

  • Distinguishability of Conductivities by Electric Current Computed Tomography

    David Isaacson

  • ACT3: a high-speed, high-precision electrical impedance tomograph

    G.J. Saulnier;R.D. Cook;D.G. Gisser;J.C. Goble

  • An implementation of the reconstruction algorithm of A Nachman for the 2D inverse conductivity problem

    Samuli Siltanen;Jennifer Mueller;David Isaacson

  • Current source design for electrical impedance tomography.

    Alexander S Ross;G J Saulnier;J C Newell;D Isaacson

  • Reconstructions of chest phantoms by the D-bar method for electrical impedance tomography

    D. Isaacson;J.L. Mueller;J.C. Newell;S. Siltanen

  • Electrical impedance tomography

    G.J. Saulnier;R.S. Blue;J.C. Newell;D. Isaacson

  • Layer stripping: a direct numerical method for impedance imaging

    E Somersalo;M Cheney;D Isaacson;E Isaacson

  • Electric current computed tomography eigenvalues

    D. G. Gisser;D. Isaacson;J. C. Newell

  • An electric current tomograph

    J.C. Newell;D.G. Gisser;D. Isaacson

  • Distinguishability in impedance imaging

    M. Cheney;D. Isaacson

  • Current topics in impedance imaging

    D G Gisser;D Isaacson;J C Newell

  • A reconstruction algorithm for electrical impedance tomography data collected on rectangular electrode arrays

    J.L. Mueller;D. Isaacson;J.C. Newell

  • A direct reconstruction algorithm for electrical impedance tomography

    J.L. Mueller;S. Siltanen;D. Isaacson

  • Imaging cardiac activity by the D-bar method for electrical impedance tomography.

    D Isaacson;J L Mueller;J C Newell;S Siltanen

  • A linearized inverse boundary value problem for Maxwell's equations

    Erkki Somersalo;David Isaacson;Margaret Cheney

  • A real-time electrical impedance tomograph

    P.M. Edic;G.J. Saulnier;J.C. Newell;D. Isaacson

Frequent Co-Authors

Jonathan C. Newell
Jonathan C. Newell Rensselaer Polytechnic Institute
Gary J. Saulnier
Gary J. Saulnier University at Albany, State University of New York
Erkki Somersalo
Erkki Somersalo Case Western Reserve University
Georges Belfort
Georges Belfort Rensselaer Polytechnic Institute
Dana H. Brooks
Dana H. Brooks Northeastern University
Daniel B. Kopans
Daniel B. Kopans Harvard University
Steven J. Simske
Steven J. Simske Colorado State University
Matti Lassas
Matti Lassas University of Helsinki
David A. Boas
David A. Boas Boston University

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