• Phantoms of optical and stress-related properties of cerebral arteries with aneurysms for intravascular optical coherence tomography
  • Numerical simulation of optical coherence tomography interference signal occurring in the intravascular space under a layer of soft biological tissue




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    Numerical simulation of optical coherence tomography interference signal occurring in the intravascular space under a layer of soft biological tissue, A.Yu. Potlov, S.V. Frolov, and S.G. Proskurin, Tambov State Technical University, Russia

  • High-precision evaluation of stress-related properties of blood vessel walls using intravascular optical coherence elastography with forward-view probe, A.Yu. Potlov, S.V. Frolov, T.A. Frolova and S.G. Proskurin, Tambov State Technical University, Russia

  • Phantoms of optical and stress-related properties of cerebral arteries with aneurysms for intravascular optical coherence tomography, A.Yu. Potlov, S.V. Frolov, T.A. Frolova and S.G. Proskurin, Tambov State Technical University, Russia

  • Tissue-mimicking phantoms of human retina with consideration to blood circulation for Doppler optical coherence tomography, A.Yu. Potlov, S.V. Frolov, S.G. Proskurin, Tambov State Technical University, Russia


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    Numerical simulation of optical coherence tomography interference signal occurring in the intravascular space under a layer of soft biological tissue

    Download 492,9 Kb.