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Biomedical subjects

Majid M Mughal

Publications and source records attributed to Majid M Mughal.

4 recordsLinked to original sources

Short-term deployment of self-expanding metallic stents facilitates healing of bronchial dehiscence.

Bronchial dehiscence after lung transplantation is difficult to treat and associated with high mortality. We describe our experience using self-expanding metallic stents to treat post-lung transplant bronchial dehiscence. From January 1995 to June 2004, 189 single and 118 double lung transplants were performed in our institution, totaling 425 at-risk bronchial anastomoses. Seven (1.6%) incidents of life-threatening bronchial dehiscence were treated with self-expanding metallic stents. The interval between transplant and diagnosis of dehiscence was 29.1 +/- 18.5 days. All patients presented with respiratory distress, and three required mechanical ventilation. Self-expanding metallic stent placement resulted in complete bronchial healing. All three patients with respiratory failure requiring mechanical ventilation were successfully weaned after stent placement. In two later cases, the stents were electively removed after adequate healing of the dehiscence. Complications included stent migration (one patient) and in-stent stenosis (three patients). Two of these patients required repeat stent insertion after removal, due to bronchomalacia. In patients with life-threatening bronchial dehiscence, self-expanding metallic stents offer prospects for a successful outcome. Self-expanding metallic stents are known to be associated with significant granulation tissue formation, and this property provides a platform for healing of dehiscence and, in time, peribronchial soft tissue grows in to cover the defect, allowing stent removal.

Anastomosis, Surgical↗

Auto-positive end-expiratory pressure: mechanisms and treatment.

Auto-positive end-expiratory pressure (auto-PEEP) is a common problem in patients receiving full or partial ventilatory support, as well as in those ready to be weaned from the ventilator. Physicians should be alert for it and take measures to reduce it, as it can have serious consequences.

Humans↗

Reprocessing the bronchoscope: the challenges.

Spread of infection through the flexible bronchoscope is underrecognized and underreported. Prevention of bronchoscopy-induced infection requires increased vigilance by the physician, assiduous implementation of reprocessing protocols, and closer collaboration between bronchoscopy personnel, infection control practitioners, and instrument manufacturers. Patient safety depends on adequate disinfection of bronchoscopes and accessories used, as well as proper training of bronchoscopists, nurses, and ancillary staff. It is important to recognize that microbial transmission may occur via any part of instruments or anything in contact with the instruments including cleaning solutions, automated washers, and rinsing water. Numerous surveys have suggested poor adherence to published preventive guidelines. To address the challenges of reprocessing bronchoscopes, all users must comply with guidelines for cleaning and disinfection and each procedure should be performed with a clean, disinfected bronchoscope.

Journal Article↗

Implementing a shared-care approach to improve the management of patients with pulmonary arterial hypertension.

Patients with pulmonary arterial hypertension (PAH) may present to internists, rheumatologists, cardiologists, or pulmonologists. This breadth of clinicians who encounter PAH patients, together with the complicated nature of PAH as a disease entity, argues for a shared-care approach to the management of these patients. This review describes the contributions of several key specialties to PAH management and outlines the collaborative PAH management model in place at our institution.

Attitude of Health Personnel↗