Publications by authors named "Michael Gouzos"

Antibiotics are often administered to patients perioperatively and have been shown to affect ROS production of nasal cells , but their effect in the setting of active wound healing remains unclear. Reactive oxygen species (ROS) are known to play a significant role in wound healing. This study analyzed a broad array of antibiotics used after sinus surgery to assess their effect on wound healing and ROS production .

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Background: Middle meatal antrostomy (MMA) provides limited access to the anteromedial and inferior aspect of the maxillary sinus (MS) often resulting in residual disease and inflammatory burden. Newer extended procedures, such as mega-antrostomy (Mega-A) and extended modified mega-antrostomy (EMMA), have been developed to address this limitation. This study assesses the effect of varying extent of MS surgery on irrigation penetration and access of instrumentation.

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Transoral robotic surgery (TORS) has become an accepted treatment option for a variety of benign and malignant pathologies of the head and neck. The Medrobotics Flex system is a novel single port platform available as an alternative tool to current multiport robotic technology. We present the Adelaide experience with this system thus far.

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Collapse of the resection plane presents a frustrating problem during transoral robotic resection, in a situation already typified by limited vision and access for instruments. We present a quick and cost-effective retraction technique to effectively mitigate this issue and increase the ease and reliability of robotic oropharyngeal resection. This technique utilises a simple transnasal apparatus to create greater exposure of the resection plane.

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Normal wound healing is a highly regulated and coordinated process. However, tissue injury often results in inflammation with excessive scar tissue formation after 40-70% of operations. Here, we evaluated the effect of the iron chelator deferiprone on inflammation and the migration of primary nasal fibroblasts and primary human nasal epithelial cells (HNECs) in vitro.

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