Khashayar azar biography of abraham

  • Ajith Abraham, Abdelkrim Haqiq, Adel M. Alimi, Ghita Mezzour, Nizar Rokbani, Azah Kamilah Muda, 1st ed.
  • Today would have been the 47th birthday of my younger brother, Kashi.
  • Mucus dysfunction in the airways is common in primary chronic respiratory conditions such as asthma [7], chronic obstructive pulmonary disease .
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    Sandra Rugonyi is a tenured professor of biomedical engineering at the OHSU School of Medicine. In 1995, she earned her degree in Nuclear Engineering from Instituto Balseiro (Balseiro Institute), Argentina, one of the most prestigious research centers in Latin America. In 1999, she earned her M.S. in Mechanical Engineering from the Massachusetts Institute of Technology (MIT), and went on to complete her Ph.D., also in Mechanical Engineering, from MIT. From 2001-2005, Dr. Rugonyi held a postdoctoral fellowship at OHSU, after which she became an assistant professor of Biomedical Engineering at OHSU. In 2011, she was promoted to the rank of associate professor, and in 2017 she was promoted to the rank of full professor with tenure.

    Dr. Rugonyi's main research interests include are on cardiovascular mechanics: how blood flow influences the heart and vessel tissues leading to a healther environment or disease. She is particularly interested in the application of finite element methods and other numerical techniques, as well as imaging and image analyses, to quantify and visualize the response of cardiovascular tissues to blood flow conditions. Dr. Rugonyi's current research projects involve investigating the effects of blood flow on heart development, congenita

    Physiology and pathophysiology of mucus and mucolytic use in critically ill patients

    • Review
    • Open access
    • Published:
    • Thomas Roe1,2,
    • Thomas Talbot1,
    • Isis Terrington1,2,
    • Jayant Johal3,
    • Ivan Kemp1,
    • Kordo Saeed1,2,3,
    • Elizabeth Webb1,
    • Rebecca Cusack1,2,3,
    • Michael P. W. Grocott1,2,3 &
    • Ahilanandan Dushianthan1,2,3

    Critical Carevolume 29, Article number: 68 (2025) Cite this article

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    Abstract

    Airway mucus is a highly specialised secretory fluid which functions as a physical and immunological barrier to pathogens whilst lubricating the airways and humifying atmospheric air. Dysfunction is common during critical illness and is characterised by changes in production rate, chemical composition, physical properties, and inflammatory phenotype. Mucociliary clearance, which is determined in part by mucus characteristics and in part by ciliary function, is also dysfunctional in critical illness via disease related and iatrogenic mechanisms. The consequences of mucus dysfunction are potentially devastating, contributing to prolonged ventilator dependency, increased risk of secondary pneumonia, and worsened lung injury. Mucolytic therapies are designed to decrease viscosity, impr

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