PubMed Health⌕ Search

PubMed · 7953486

Thoracoplasty.

Abstract

Langston and Sampson point out that the sine qua non of empyema management is early, adequate, and dependent drainage. Diagnostic thoracentesis followed by closed tube thoracostomy and conversion to open drainage, either by a large-bore tube or a rib-resection with a pleurocutaneous fistula, are initial procedures that may be continued for an extended period to control infection, obliterate loculations, and heal co-apted pleural surfaces secondarily. Clagett and Geraci have noted that postpneumonectomy empyema spaces can be "sterilized" and the initial drainage site can be closed after antibiotic instillation. Miller, however, reports success rates for this procedure only in the range of 25% to 33%. Our results are somewhat higher. Obliteration of the persistent space after control of infection by drainage can be accomplished by interposition of muscle flaps with closure of any bronchopleural fistulas and/or by thoracoplasty. As stated previously, myoplastic techniques to obliterate empyemas and close bronchial fistulas in tuberculous disease have a success rate of approximately 75%. Such techniques, however, not only assist in limiting the extent of thoracoplasty, but also may avoid the procedure entirely in some cases. Virkkula has emphasized that use of pedicled myoplasty does not necessarily obviate the need for thoracoplasty. Pairolero and colleagues reported that the use of selected thoracoplasty combined with muscle transposition afforded a 73% success rate for postpneumonectomy empyema and a 64% success rate for closure of persistent bronchopleural fistulas and precludes protracted drainage and/or extended thoracoplasty. Young and Ungerleider concluded that (1) thoracoplasty is more successful if it is applied for patients with parapneumonic rather than postresectional empyemas; (2) concomitant tailoring thoracoplasty has a higher rate of failure; (3) preliminary drainage followed by thoracoplasty has a higher success rate in eliminating the empyema than thoracoplasty alone; (4) first rib resection is indicated for apical collapse only; (5) preoperative preparation is important to control and manage underlying suppurative processes; and (6) thoracoplasty of any type should not be used as a desperation modality of therapy in which uncontrolled sepsis and inadequate drainage are present or in which cancer or unidentified sites of hemorrhage exist. Sequential management of the residual infected space can proceed along several pathways. Many patients with empyema are well-controlled with simple open drainage and with underlying lung reexpansion, either spontaneously or in association with decortication, and may never need thoracoplasty. Drainage and thoracoplasty alone may be effective not only in obliterating an empyema space but also in sealing a bronchopleural fistula.(ABSTRACT TRUNCATED AT 400 WORDS)

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

W L Barker. 1994. Thoracoplasty.. https://pubmed.ncbi.nlm.nih.gov/7953486/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Changing dogmas: history of development in treatment modalities of traumatic pneumothorax, hemothorax, and posttraumatic empyema thoracis.

Development of treatment modalities for chest wounds and traumatic empyema thoracis is reviewed in the light of war experience. Mortality from thoracic injury was more than 50% before World War I and was about 25% during World War I. It came down to 10% in World War II and was about 5% during the Korean War. It improved further during the Vietnam War, until it ranged at 2% to 4%, where no further improvement could be imagined. Thoracic surgery was born in the field hospitals of World War I. Established drainage methods and standardized anesthesia made thoracotomy a standard procedure in World War II. As experience increased in chest trauma, surgical aggression diminished. Drainage ruled primary chest trauma treatment algorithms during the Vietnam War and coexisted with the full arsenal of cardiothoracic surgery when it was needed. Optimization of thoracic surgical aggression includes a case-tailored approach when major chest surgery with or without interventions on the central cardiovascular system is needed. This is where we are now, provided a proper logistic, Medevac system exists. If we let the past fade away, the danger of committing the mistakes of our predecessors increases without having their excuses. Our present is only the past of the future.

Empyema, Pleural↗

[Parapneumonic effusion and pleural empyema - topical aspects of classification, diagnosis and treatment].

Parapneumonic effusions can be diagnosed in about 40 - 50 % of patients with bacterial pneumonia, and therefore should be considered as a frequent condition. Despite their prevalence, there is limited consensus about diagnostic pathways and therapeutic procedures due to the lack of evidence-based data available. The classification of parapneumonic effusions is based on morphological, chemical and bacteriological criteria. Dependent on the complexity of the effusion, available management approaches include observation without intervention, thoracentesis, chest tube drainage with or without local fibrinolysis and the surgical options VATS and thoracotomy. This overview summarizes the actual aspects of classification, diagnosis and treatment of the parapneumonic effusion and draws conclusions for the daily management of this condition.

Empyema, Pleural↗