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Biomedical subjects

Lindsey A Clemson

Publications and source records attributed to Lindsey A Clemson.

3 recordsLinked to original sources

Transthoracic closure of a postpneumonectomy bronchopleural fistula with coils and cyanoacrylate.

Standard treatment for persistent bronchopleural fistulas involves thoracotomy with primary closure and transposition of a vascularized muscle flap to the bronchial leak site. This major operation may be ineffective or medically contraindicated. We successfully treated 2 patients by insertion of coils and cyanoacrylate glue into and adjacent to the fistula of a postpneumonectomy bronchial stump with computed tomographic-guided transthoracic needle. The coils served as scaffolding for cyanoacrylate glue to control the bronchopleural fistula.

Adenocarcinoma↗

Supportive care in acute respiratory distress syndrome.

Although the central focus of acute respiratory distress syndrome (ARDS) is the pathology within the lung, ARDS is very much a systemic disease. As such, the whole body needs care and support while the disease process within the lung runs its course. The issues of pain management, sedation, fluid balance, nutrition, metabolic and hormonal processes, infection control, and patient positioning are important for any patient in a critical care setting. For patients with ARDS, the required ventilatory support and ARDS-associated systemic inflammation mandate the above supportive measures.

Procedural Sedation↗

Artificial lung: progress and prototypes.

Lung disease is the fourth leading cause of death (one in seven deaths) in the USA. Acute respiratory distress syndrome (ARDS) affects approximately 150,000 patients a year in the USA, and an estimated 16 million Americans are afflicted with chronic lung disease, accounting for 100,000 deaths per year. Medical management is the standard of care for initial therapy, but is limited by the progression of disease. Chronic mechanical ventilation is readily available, but is cumbersome, expensive and often requires tracheotomy with loss of upper airway defense mechanisms and normal speech. Lung transplantation is an option for less than 1100 patients per year since demand has steadily outgrown supply. For the last 15 years, the authors' group has studied ARDS in order to develop viable alternative treatments. Both extracorporeal gas exchange techniques, including extracorporeal membrane oxygenation, extracorporeal and arteriovenous CO(2) removal, and intravenous oxygenation, aim to allow for a less injurious ventilatory strategy during lung recovery while maintaining near-normal arterial blood gases, but precludes ambulation. The paracorporeal artificial lung (PAL), however, redefines the treatment of both acute and chronic respiratory failure with the goal of ambulatory total respiratory support. PAL prototypes tested on both normal sheep and the absolute lethal dose smoke/burn-induced ARDS sheep model have demonstrated initial success in achieving total gas exchange. Still, clinical trials cannot begin until bio- and hemodynamic compatibility challenges are reconciled. The PAL initial design goals are for a short-term (weeks) bridge to recovery or transplant, but eventually, for long-term support (months).

Animals↗