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Alexander L. Klibanov

Alexander L. Klibanov

D-Index & Metrics

Medicine

D-Index
73
Citations
23739
World Ranking
19573
National Ranking
9744

Overview

Alexander L. Klibanov is affiliated with the University of Virginia in the United States. Their research primarily spans the fields of Engineering and Medicine, with a particular focus on Biomedical Engineering and Radiology, Nuclear Medicine and Imaging. Additional subfields of study include Molecular Biology, Materials Chemistry, and Neurology.

The scientist's main topics of work encompass Ultrasound and Hyperthermia Applications, Photoacoustic and Ultrasonic Imaging, Ultrasound Imaging and Elastography, Ultrasound and Cavitation Phenomena, Traumatic Brain Injury and Neurovascular Disturbances, Advanced MRI Techniques and Applications, and Microfluidic and Bio-sensing Technologies.

Frequent publication venues for Alexander L. Klibanov include Investigative Radiology, Ultrasound in Medicine & Biology, Journal of Visualized Experiments, bioRxiv (Cold Spring Harbor Laboratory), and Radiology.

Some of their recent papers include:

  • Augmentation of brain tumor interstitial flow via focused ultrasound promotes brain-penetrating nanoparticle dispersion and transfection, 2020, Science Advances
  • From Anatomy to Functional and Molecular Biomarker Imaging and Therapy: Ultrasound Is Safe, Ultrafast, Portable, and Inexpensive, 2020, Investigative Radiology
  • Sonoselective transfection of cerebral vasculature without blood-brain barrier disruption, 2020, Proceedings of the National Academy of Sciences
  • Ultrasound Contrast, 2020, Investigative Radiology
  • Bubble Cloud Behavior and Ablation Capacity for Histotripsy Generated from Intrinsic or Artificial Cavitation Nuclei, 2020, Ultrasound in Medicine & Biology

Alexander L. Klibanov has frequently collaborated with several coauthors, including John A. Hossack, Richard J. Price, Catherine M. Gorick, William J. Garrison, and G. Wilson Miller.

Best Publications

  • Microbubbles in ultrasound-triggered drug and gene delivery

    Sophie Hernot;Alexander L. Klibanov

  • BAI1 is an engulfment receptor for apoptotic cells upstream of the ELMO/Dock180/Rac module

    Daeho Park;Annie-Carole Tosello-Trampont;Michael R. Elliott;Mingjian Lu

  • Imaging Tumor Angiogenesis With Contrast Ultrasound and Microbubbles Targeted to αvβ3

    Dilantha B. Ellegala;Howard Leong-Poi;Joan E. Carpenter;Alexander L. Klibanov

  • Ultrasound Assessment of Inflammation and Renal Tissue Injury With Microbubbles Targeted to P-Selectin

    Jonathan R. Lindner;Ji Song;Jonathan Christiansen;Alexander L. Klibanov

  • Microbubble contrast agents: targeted ultrasound imaging and ultrasound-assisted drug-delivery applications.

    Alexander L Klibanov

  • Microvascular Recruitment Is an Early Insulin Effect That Regulates Skeletal Muscle Glucose Uptake In Vivo

    Michelle A. Vincent;Lucy H. Clerk;Jonathan R. Lindner;Alexander L. Klibanov

  • Noninvasive Assessment of Angiogenesis by Ultrasound and Microbubbles Targeted to αv-Integrins

    Howard Leong-Poi;Jonathan Christiansen;Alexander L. Klibanov;Sanjiv Kaul

  • Ligand-carrying gas-filled microbubbles: ultrasound contrast agents for targeted molecular imaging.

    Alexander L. Klibanov

  • Acoustic radiation force in vivo: A mechanism to assist targeting of microbubbles

    Paul Dayton;Alexander Klibanov;Gary Brandenburger;Kathy Ferrara

  • Targeted delivery of gas-filled microspheres, contrast agents for ultrasound imaging.

    Alexander L. Klibanov

  • Noninvasive Ultrasound Imaging of Inflammation Using Microbubbles Targeted to Activated Leukocytes

    Jonathan R. Lindner;Ji Song;Fang Xu;Alexander L. Klibanov

  • Optical and acoustical observations of the effects of ultrasound on contrast agents

    P.A. Dayton;K.E. Morgan;A.L. Klibanov;G.H. Brandenburger

  • Targeted tissue transfection with ultrasound destruction of plasmid-bearing cationic microbubbles

    Jonathan P Christiansen;Brent A French;Alexander L Klibanov;Sanjiv Kaul

  • Ultrasound Imaging of Acute Cardiac Transplant Rejection With Microbubbles Targeted to Intercellular Adhesion Molecule-1

    Gregory E.R. Weller;Erxiong Lu;Melissa M. Csikari;Alexander L. Klibanov

  • Microglial Cells Contribute to Endogenous Brain Defenses after Acute Neonatal Focal Stroke

    Joel V. Faustino;Xia Wang;Cali E. Johnson;Alexander Klibanov

  • Microbubble Persistence in the Microcirculation During Ischemia/Reperfusion and Inflammation Is Caused by Integrin- and Complement-Mediated Adherence to Activated Leukocytes

    Jonathan R. Lindner;Matthew P. Coggins;Sanjiv Kaul;Alexander L. Klibanov

  • Targeted accumulation of polyethylene glycol-coated immunoliposomes in infarcted rabbit myocardium.

    V P Torchilin;A L Klibanov;L Huang;S O'Donnell

  • Ultrasonic imaging of tumor angiogenesis using contrast microbubbles targeted via the tumor-binding peptide arginine-arginine-leucine.

    Gregory E.R. Weller;Michael K.K. Wong;Ruth A. Modzelewski;Erxiong Lu

  • Phosphatidylserine receptor BAI1 and apoptotic cells as new promoters of myoblast fusion.

    Amelia E. Hochreiter-Hufford;Chang Sup Lee;Jason M. Kinchen;Jennifer D. Sokolowski

  • Lipophilic polylysines mediate efficient DNA transfection in mammalian cells.

    Xiaohuai Zhou;Aleksander L. Klibanov;Leaf Huang

Frequent Co-Authors

John A. Hossack
John A. Hossack University of Virginia
Jonathan R. Lindner
Jonathan R. Lindner Oregon Health & Science University
Vladimir P. Torchilin
Vladimir P. Torchilin Northeastern University
Klaus Ley
Klaus Ley Augusta University
Sanjiv Kaul
Sanjiv Kaul Oregon Health & Science University
Katherine W. Ferrara
Katherine W. Ferrara Stanford University
Craig H. Meyer
Craig H. Meyer University of Virginia
Paul A. Dayton
Paul A. Dayton University of North Carolina at Chapel Hill
Justin Hanes
Justin Hanes Johns Hopkins University
William R. Wagner
William R. Wagner University of Pittsburgh

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