World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
58
Citations
16938
World Ranking
2436
National Ranking
751

Overview

What is he best known for?

The fields of study he is best known for:

  • Electrical engineering
  • Composite material
  • Mechanical engineering

Dorin Panescu mostly deals with Renal nerve, Electrically conductive, Composite material, Ablation and Electrical engineering. Dorin Panescu works mostly in the field of Electrically conductive, limiting it down to concerns involving Maximum diameter and, occasionally, Axial force, Geometry, Axial symmetry and Structural engineering. His work on Porosity as part of general Composite material study is frequently linked to Porous electrode, therefore connecting diverse disciplines of science.

The study incorporates disciplines such as Electrical conductor and Electronic engineering in addition to Porosity. His work deals with themes such as Tissue temperature, Tissue heating and Biomedical engineering, which intersect with Ablation. As a part of the same scientific family, Dorin Panescu mostly works in the field of Electrical engineering, focusing on Optoelectronics and, on occasion, Body tissue.

His most cited work include:

  • Systems and methods for controlling power in an electrosurgical probe (720 citations)
  • Systems and methods for guiding movable electrode elements within multiple-electrode structures (490 citations)
  • Systems and methods for sensing multiple temperature conditions during tissue ablation (428 citations)

What are the main themes of his work throughout his whole career to date?

The scientist’s investigation covers issues in Biomedical engineering, Ablation, Body tissue, Body region and Artificial intelligence. His Biomedical engineering course of study focuses on Tissue morphology and Depolarization and Matching. His work carried out in the field of Ablation brings together such families of science as Tissue heating and Electrical conductor, Composite material, Charring.

When carried out as part of a general Composite material research project, his work on Electrically conductive is frequently linked to work in Ionic bonding, therefore connecting diverse disciplines of study. Dorin Panescu combines subjects such as Tissue temperature, Lesion, Tissue ablation, Transmission and Optoelectronics with his study of Body tissue. His biological study spans a wide range of topics, including Computer vision and Pattern recognition.

He most often published in these fields:

  • Biomedical engineering (33.73%)
  • Ablation (27.71%)
  • Body tissue (22.89%)

What were the highlights of his more recent work (between 1998-2002)?

  • Body region (14.46%)
  • Biomedical engineering (33.73%)
  • Computer vision (9.64%)

In recent papers he was focusing on the following fields of study:

Body region, Biomedical engineering, Computer vision, Artificial intelligence and Position are his primary areas of study. His Body region study incorporates themes from Function, Electrical engineering and Electric potential energy. His research combines Ablation and Biomedical engineering.

His studies deal with areas such as Electrical impedance, Control power and Charring as well as Ablation. The Orientation research he does as part of his general Computer vision study is frequently linked to other disciplines of science, such as Interface, Graphical user interface and Operative instrument, therefore creating a link between diverse domains of science. His Position study also includes fields such as

  • Control engineering most often made with reference to Coordinate system,
  • Lesion and related Curvilinear coordinates and Body tissue.

Between 1998 and 2002, his most popular works were:

  • Tissue heating and ablation systems and methods which predict maximum tissue temperature (389 citations)
  • Interactive systems and methods for controlling the use of diagnostic or therapeutic instruments in interior body regions (251 citations)
  • Systems and methods for forming elongated lesion patterns in body tissue using straight or curvilinear electrode elements (246 citations)

In his most recent research, the most cited papers focused on:

  • Electrical engineering
  • Mechanical engineering
  • Artificial intelligence

His primary areas of investigation include Body tissue, Curvilinear coordinates, Position, Orientation and Lesion. His study in Body tissue is interdisciplinary in nature, drawing from both Tissue heating, Transmission and Ablation.

Best Publications

  • Systems and methods for controlling power in an electrosurgical probe

    David K Swanson;Robert Burnside;James G. Whayne;Dorin Panescu

  • Systems and methods for guiding movable electrode elements within multiple-electrode structures

    David K. Swanson;Dorin Panescu;James G. Whayne

  • Systems and methods for sensing multiple temperature conditions during tissue ablation

    Dorin Panescu;David K. Swanson;Sidney D. Fleischman;Thomas M. Bourne

  • Systems and methods for visualizing interior tissue regions using expandable imaging structures

    Dorin Panescu;James G. Whayne;David K. Swanson;David McGee

  • Systems and methods for guilding diagnostic or therapeutic devices in interior tissue regions

    Dorin Panescu;David McGee;James G. Whayne;David K. Swanson

  • Tissue heating and ablation systems and methods which predict maximum tissue temperature

    Dorin Panescu;Sidney D. Fleischman;David K. Swanson

  • Multi-function electrode structures for electrically analyzing and heating body tissue

    Dorin Panescu;David K Swanson;James G Whayne;Jerome Jackson

  • Systems and methods using a porous electrode for ablating and visualizing interior tissue regions

    David McGee;Dorin Panescu;David K. Swanson;James G. Whayne

  • Systems and methods for positioning multiple electrode structures in electrical contact with the myocardium

    David K. Swanson;Dorin Panescu

  • Expandable-collapsible mesh electrode structures

    David McGee;Patrick M. Owens;James G. Whayne;Russell B. Thompson

  • Tissue heating and ablation systems and methods using porous electrode structures with electrically conductive surfaces

    David K. Swanson;Dorin Panescu;James G. Whayne;Patrick M. Owens

  • Folding electrode structures

    Jerome Jackson;Dorin Panescu;David K. Swanson;Russell B. Thompson

  • Systems and methods for forming elongated lesion patterns in body tissue using straight or curvilinear electrode elements

    Sidney D. Fleischman;Thomas M Bourne;Dorin Panescu;David K. Swanson

  • Expandable-collapsible electrode structures with distal end steering or manipulation

    Jerome Jackson;James G. Whayne;Patrick M. Owens;Thomas F. Kordis

  • Systems and methods for sensing temperature within the body

    David K. Swanson;Sidney D. Fleischman;Dorin Panescu;Russell B. Thompson

  • Systems and methods for sensing sub-surface temperatures in body tissue during ablation with actively cooled electrodes

    Dorin Panescu;David K. Swanson;Sidney D. Fleischman;Thomas M. Bourne

  • Flexible tissue ablation elements for making long lesions

    Sidney D. Fleischman;Russell B. Thompson;Dorin Panescu;David K. Swanson

  • Structures for supporting porous electrode elements

    David K Swanson;Russell B Thompson;Sidney D Fleischman;Dorin Panescu

  • Tissue heating and ablation systems and methods using porous electrode structures

    David K. Swanson;Dorin Panescu;James G. Whayne;Patrick M. Owens

  • Systems and methods for identifying the physical, mechanical, and functional attributes of multiple electrode arrays

    Dorin Panescu;James G. Whayne;David K. Swanson

Frequent Co-Authors

David K. Swanson
David K. Swanson Estech Systems (United States)
James G. Whayne
James G. Whayne Myocardial Solutions Inc.
Sidney D. Fleischman
Sidney D. Fleischman Boston Scientific (United States)
Russell B. Thompson
Russell B. Thompson AcelRx Pharmaceuticals (United States)
Kenneth R. Foster
Kenneth R. Foster University of Pennsylvania
Michael D. Lesh
Michael D. Lesh University of California, San Francisco

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