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Biomedical subjects

Amardeep Hoonjan

Publications and source records attributed to Amardeep Hoonjan.

2 recordsLinked to original sources

Primary stroke center: basic components and recommendations.

Stroke is the leading cause of disability and the third leading cause of death in the United States. The brain attack coalition (BAC), whose members belong to several professional medical societies, formed a working group to explore the factors and elements that are associated with better clinical outcome after acute stroke. In the year 2000, the BAC published the recommendations for primary stroke centers (PSC). The primary goals for the PSC are to improve and to standardize stroke care. Convinced by the compelling data on the PSC, the Joint Commission on Accreditation of Healthcare Organization adopted the BAC recommendations and started certifying hospitals as designated PSCs. Many hospitals are already certified and numerous others are currently seeking certification. The BAC is now working on the recommendations for a comprehensive stroke center. The nihilism which dominated the stroke field has finally been replaced by remarkable progress and better understanding of stroke and stroke treatment.

Clinical Protocols↗

In situ cell nucleus deformation in tendons under tensile load; a morphological analysis using confocal laser microscopy.

Cell and cell nucleus deformations have been implicated in the mechanotransduction of mechanical loads acting on tissues. While in situ cell nucleus deformation in response to increasing tissue strains has been examined in articular cartilage this phenomenon has not been investigated in tendons. To examine in situ cell nuclei deformation in tendons undergoing tensile strain rat tail tendons were harvested from adult Sprague-Dawley rats and stained with acridine orange to highlight the cell nuclei. The tendons were mounted on a custom-designed, low-load, tensile testing device affixed to the mechanical stage of a confocal laser microscope. Cells within the tendons were isolated for analysis. Images of individual cells were captured at 0% strain as well as sequentially at 2%, 4% and 6% grip-to-grip tendon strain. Digital images of the cell nuclei were then measured in the x (length) and y (height) axis and deformation expressed as a percentage of cell nuclei strain. In addition, centroid-to-centroid distances of adjacent cell nuclei within each image were measured and used to calculate local tissue strain. There was a weak (r2 = 0.34) but significant (p < 0.01) correlation between local tissue strain and cell nucleus strain in the x axis. The results of this study support the hypothesis that in situ cell nucleus deformation does occur during tensile loading of tendons. This deformation may play a significant role in the mechanical signal transduction pathway of this tissue.

Animals↗