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At least 19 recordsLinked to original sources

Treatment of combined subglottic and critically low tracheal stenoses secondary to burn inhalation injury.

We report a case of combined severe subglottic and lower tracheobronchial stenoses after an inhalation burn injury. The patient was successfully treated by the insertion of a bifurcated silicone rubber stent. The proximal limb of the silicone tube was used to stent the subglottic stenosis after it had been resected, a treatment option not previously reported. It is speculated that the diffuse airway damage resulted from a combination of thermal injury, mechanical trauma and infection. The relatively late symptomatic presentation of the lower tracheal stricture is stressed and the treatment options discussed.

Burns, Inhalation↗

[Inhalation burns: apropos of 198 cases. Incidence of laryngotracheal involvement].

Inhalation burns and laryngotracheal involvement were studied in a retrospective series of 635 patients hospitalized for skin burns at the Center for Burn Treatment from January 1993 to January 1997. Inhalation burns were observed in 31.1% of the cases. Exclusive laryngeal involvement occurred in 19.6% of the inhalation burns. Both tracheobronchial and laryngeal burns were observed in 27.2%. Patients with inhalation burns also had facial burns (90.9%) and extensive (> 50%) or severe (UBS > 200) skin burns in 39.8% and 29.7% of the cases respectively. Mortality of skin burns was increased six-fold to 19.1% in patients who also had inhalation burns. Intubation was used alone in 60.1% and was followed by tracheotomy in 27.2%. The decision for tracheotomy was essentially based on the probable duration of ventilatory assistance. Tracheotomy was required in case of severe inhalation burns and the predictable duration of intubation was over 8 days. Laryngotracheal stenosis occurring after inhalation burns is complex and extensive, with great variability over time. Laryngotracheal calibration is indicated as first intention therapy.

Burns, Inhalation↗

The role of carbon monoxide poisoning in the production of inhalation burns.

Because heat and many poisonous chemicals are generated in a fire, studies of inhalation burns have tended to focus on injury by heat and irritative chemicals. In view of the frequent carbon monoxide (CO) poisoning associated with burn deaths and in patients with inhalation burns, however, nonirritative poisonous gases such as CO cannot be disregarded as possible causative factors involved in the production of inhalation burns. Accordingly, we attempted to clarify in animals the effect of nonlethal CO poisoning on inhalation burns due to heated air. The experimental results indicate that inhaling an amount of moderately heated dry air that alone could not cause pulmonary injury produces severe pulmonary injury in the presence of CO. This seems to occur because CO poisoning causes hyperventilation and thus allows a massive amount of heat to reach the lung.

Animals↗

Inhalation burns in children.

Survival from serious burns in children has improved substantially in recent years. Mortality is predominantly determined by the total body surface area burned and the often unrecognised inhalation injury. A retrospective review of 4,451 consecutive children with thermal injuries over a 10-year period was undertaken to determine the incidence, clinical presentation, and pathology of inhalation injury and its contribution to morbidity and mortality. Inhalation burns were diagnosed clinically and confirmed endoscopically and post-mortem in 97 (2.2%) children; 77 sustained fire burns (mean age 4 years) and 20 hot-water burns (mean age 18 months). The Moylan classification stratified them into upper-airway burns in 59 children, major-airway burns in 29, and parenchymal burns in 44. Major-airway burns were always seen in conjunction with either upper-airway or parenchymal injury. Stridor and acute progressive respiratory distress were the two main symptoms, the onset of which was occasionally delayed for up to 72 h. Endoscopy was most helpful in confirming the diagnosis and determining airway management. Endotracheal intubation was needed in more than 50% of children, usually for less than 5 days, and was converted to tracheostomy in only 6. Persistent laryngeal and tracheal damage was identified in 4. Secondary pneumonia occurred in 41.5% of children with fire burns and 55% with hot-water burns. Extensive surface burns, parenchymal injury, and secondary pneumonia all contributed to the significant mortality. Post-mortem findings corroborated clinical and endoscopic evidence. This study suggests that inhalation burns were often not recognised, could present late, and usually had significant consequences. Early clinical diagnosis, supported by endoscopic findings and appropriate management, is essential if the high morbidity and mortality amongst these children is to be improved.

Burns, Inhalation↗

Mass ammonia inhalational burns--experience in the management of 12 patients.

Twelve Korean crew members of a deep sea fishing vessel were admitted to the Burns Centre, Singapore General Hospital following exposure to ammonia gas. The injuries sustained were primarily respiratory burns with minor cutaneous and corneal burns. They were divided into three grades of severity based on the admission findings and subsequent clinical course. Management was according to a standard respiratory burns protocol. Eight patients were intubated. Ten of the patients with mild and moderate involvement of the respiratory tract recovered without complication. Of the two patients with severe respiratory burns, one died while another progressed to chronic debilitating airway disease.

Accidents, Occupational↗

Successful reconstruction of extensive laryngotracheal strictures after inhalation burn injury: report of a case.

We report a rare case of long segmental laryngotracheal stenosis following inhalation burn injury. The patient presented 2 months after his injury with progressive stridor and dyspnea necessitating tracheostomy. A computed tomographic scan of the neck revealed stenosis extending from the vocal cords to the top of the sternum. Repair was successfully carried out with multiple surgical procedures employing hinge-flap closure tented with autogenous tissue.

Adult↗

[Bronchoscopy in inhalation burns].

The treatment of burns of various depth and location which are combined with thermoinhalation affections of the respiratory organs is a serious problem during the entire course of burn disease. Despite advances in modern treatment of burns, the death rate of pulmonary complications is still high. Pulmonary disorders encountered in inhalation of chemical toxic products of burning, smoke and its finely divided components increase the fatal outcomes by 30-100% in different periods of the burn disease. Until recently, thermoinhalation affections were not often taken into account in analysis of the causes of death of patients with burns, and the diagnosis was based on scanty historical data and late clinical symptoms. In works published from the beginning of the eighties, bronchoscopy was assigned secondary significance. Evaluation of the character of the lesion, the extent and depth of pathological changes in the tracheobronchial tree in thermoinhalation affections is based in most cases on the post-mortem findings. The purpose of this work was to evaluate clinically and by laboratory studies the role and significance of bronchoscopy in establishing the diagnosis in individuals with burns and thermoinhalation damage during life, in the treatment and prevention of the expected complications in the respiratory organs, and to promote wide use of a bronchoscope in this category of seriously ill patients. On the basis of the study, the authors revealed a close correlation between respiratory insufficiency of various degree and extent and the depth of the affection of the tracheobronchial tree. They also substantiated indications for systemic bronchoscopic treatment of thermoinhalation lesions.

Adolescent↗

Salvage of a patient with burn inhalation injury and pancreatitis.

A multidisciplinary approach by the staffs of the Emergency Department and the Regional Burn Center saved the life of a burn patient with an inhalation injury and pancreatitis. This successful treatment is attributed to ventilatory management using fibreoptic bronchoscopy in the Emergency Department, followed by burn eschar excision with coverage by cultured skin and non-operative management of an enlarging pseudocyst by percutaneous transgastric drainage.

Adult↗

Percutaneous versus Conventional Tracheostomy in Burned Patients with Inhalation Injury.

The aim of the study was to compare conventional tracheostomy with percutaneous dilatational tracheostomy in patients with inhalation burn injury. A total of 37 patients with severe burn injuries and associated inhalation injury, underwent percutaneous tracheostomy in our burn unit and were retrospectively compared with 22 patients who underwent conventional surgical tracheostomy. In the first group, 25 of 37 patients and in the second group 17 of 22 patients presented with partial or full-thickness burn injuries (or both) in the neck region. The cost of the procedure, operating time, complications, and incidence of pulmonary infection were recorded. There were no significant perioperative complications in the percutaneous tracheostomy group, and no patient required surgical revision or conversion to surgical tracheostomy. In the conventional tracheostomy group, 2 patients developed tracheal stenosis, 1 had a tracheoesophageal fistula, and 10 had stomal infections. The average procedure time in the first group was 9 minutes, and in the second group it was 22 minutes. The cost of the bedside percutaneous tracheostomy was one-fifth the cost of a conventional tracheostomy. The incidence of pulmonary sepsis was 45% after percutaneous tracheostomy compared to 68% after conventional tracheostomy. With the percutaneous technique, spontaneous closure of the stoma occurred within 1 to 3 days after removal of the tracheostomy tube, whereas with the conventional technique it was within 5 to 7 days. Percutaneous tracheostomy is associated with a lower complication rate and can be safely performed at the bedside. Moreover, it is faster and can be done at a lower cost than conventional open tracheostomy.

Adolescent↗

Inhalation injury in burns.

(1) Inhalation injury usually occurs in persons with large flame burns indoors, frequently followed by respiratory failure and death. (2) fiberoptic bronchoscopy accurately verifies the diagnosis. (3) Assessment of pulmonary capillary integrity plus bronchoscopy can predict early respiratory failure. (4) Surfactant deficiency may promote late respiratory failure. (5) Corticosteroids probably are beneficial.

Adolescent↗