[Right bronchial rupture during intubation with carlens tube].
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Biomedical subjects
Publications and source records attributed to P Bonnette.
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PURPOSE: To determine the sensitivity and specificity of CT in depicting bronchial anastomotic complications after lung transplantation. MATERIALS AND METHODS: A retrospective, blinded review of 105 CT scans obtained after single (n = 17) or double (n = 10) lung transplantation in 27 patients was done by two radiologists in consensus. CT images, were analyzed with respect to the status of bronchial anastomoses, with three possible answers given to the readers: normal, dehiscence, or stenosis. CT features were correlated to bronchoscopic and follow-up findings, which were considered as standard of reference. RESULTS: CT had a 60% sensitivity and 98% specificity for the diagnosis of bronchial dehiscence, and 40% and 99% for the diagnosis of anastomotic stenosis. One case of bronchial disruption was diagnosed on CT scan only and subsequently confirmed by repeated bronchoscopy. CONCLUSION: In our study, CT has a low sensitivity but a high specificity in the detection of bronchial anastomotic complications after lung transplantation. However, CT remains useful in some cases, as it can show complications not seen bronchoscopically.
Bronchial healing is good with heart lung transplantation but this technique is actually not often performed. Single lung transplantation and bilateral sequential lung transplantation (two single lung transplantations) have at present an incidence of anastomotic problems of between 4 and 30%. Efforts to improve surgical technique and medical perioperative treatment are described. Often the anomalies seen improve by themselves. On the other hand, endoscopic treatment is usually performed (dilation, yag laser, cryotherapy, stents) to maintain the bronchial airway opened. Precocious resutures, late broncho-resections of stenosed zones or retransplantations are more rare. Series which are for the moment short, of revascularisation of the bronchial arteries during the graft seem to give good results.
Bilateral lung transplantation without cardiopulmonary bypass consists of two sequential single lung transplantations. Variations in ventilatory status during the procedure led us to study the (PaCO2-PE'CO2) gradient to see if PE'CO2 might reflect PaCO2. The gradient was studied in 14 patients at six times during operation. (PaCO2-PE'CO2) (kPa) was mean 1.97 (SD 0.7) after induction, 3.2 (1.4) during single lung ventilation, 1.9 (1.1) after clamping of the contralateral pulmonary artery, 2.96 (1.6) after ventilation and vascularization of the first transplant and the remaining native lung, 0.99 (0.8) during single lung ventilation with the first transplant and 1.3 (0.8) during ventilation of both transplants. With ventilation by the allograft lung(s) alone, the small (PaCO2-PE'CO2) value demonstrated improvement in ventilatory status, enabled PaCO2 to be assessed by PE'CO2 and demonstrated efficiency of the grafts.
The present case describes an acute respiratory-related hemodynamic failure during a single left lung transplantation in a 32-year-old woman suffering from end-stage pulmonary lymphangiomyomatosis. During the first 5 min of single right lung ventilation, a progressive increase in airway pressure and decrease in tidal volume associated with a decrease in arterial pressure and Spo2 occurred that were successfully countered by reventilation of the left lung. Proper positioning of the double-lumen tube was confirmed with a fiberoptic bronchoscope. Despite deliberate hypoventilation, within a few respiratory cycles, each further attempt at single lung ventilation was followed by abrupt hypotension, increase in pulmonary artery pressure, while airway pressure rose and tidal volume collapsed. The surgical team saw no signs of right pneumothorax. In these circumstances, cardiopulmonary bypass was required to perform pneumonectomy and grafting. Postoperatively a right anterior pneumothorax remained undiscovered on standard radiograph but was later revealed on soft radiograph. This acute intraoperative respiratory failure could equally well have been related to air trapping, in which case, however, deliberate hypoventilation would have been effective. In addition, the striking difference between the progressive onset of the first episode of hemodynamic failure and the immediate onset of the others argues in favor of a pneumothorax being at cause. Patients with pulmonary lymphangiomyomatosis are at high risk for intraoperative pneumothorax, but in our case, it could not be confirmed and treated during the surgical procedure without putting the patient at high risk for lung injury because of pleurodesis due to earlier pleural abrasion. This case again clearly shows the need to have cardiopulmonary bypass whenever single lung transplantation is performed.
It is difficult to find lungs of appropriate size for double-lung transplantation in teenagers and small adults. Nevertheless, many young patients suffering from cystic fibrosis are waiting for lung transplantation. We have performed two bilateral lobar transplantations (left lower lobe plus right middle and lower lobe) with good recovery. Details of the technique are described.
Bilateral single lung transplantation (BSLT) (the procedure of choice for double lung replacement) and single lung transplantation (SLT) have at present a low incidence of anastomotic problems. In our experience, we have recorded no death related to anastomotic problems and 4 complications occurred for 33 anastomoses with a follow up of at least 2 months. A stent was temporarily inserted for two patients. The decrease of anastomotic complications is confirmed in the literature. It is one of the reasons why the number of SLT and BSLT performed all over the world increases rapidily to the detriment of heart lung transplantation.
Between November 1989 and April 1991, 14 bilateral single lung transplantations (BSLT) were performed at our institution using the technique we have described without omentoplasty and rarely cardiopulmonary bypass. The indications included emphysema (8), cystic fibrosis (3), infected fibrosis (1), alveolar microlithiasis (1) and lymphocytic interstitial pneumonitis (1). Maximum mean pulmonary artery pressure was 53 mmHg and minimal right ventricular ejection fraction was 15%. Two patients experienced bronchial complications: 1 complete left bronchial dehiscence, 1 late partial stenosis which required a temporary insertion of a stent. One patient had a posterior dehiscence which healed spontaneously. Five patients died postoperatively (3 of infection, 1 after a volume mismatch and 1 after a circulating anticoagulant). BSLT is the technique of choice for double lung transplantation in adults and heart lung transplantation has very few indications in infected end-stage pulmonary disease. We hope that modification of our immunosuppressive regimen will decrease postoperative mortality.
An isolated left lower lobe was used as a left graft, during a bilateral single lung transplantation procedure, in a patient with infected fibrosis. This technique is suitable for patients with small lung volume (especially cystic fibrosis) or asymmetric retraction.
Bilateral lung transplantation (BLT) is a recently described procedure based on two sequential single-lung transplantations (SLT), which are performed by a transverse sternobithoracotomy. It does not require either cardiac arrest or routine use of cardiopulmonary bypass (CPB). The intraoperative management of 10 patients suffering from end-stage pulmonary disease is reported. Implantation of the first graft is quite similar to a SLT. Problems encountered during this procedure (ie, hypoxemia, hypercapnia, or low cardiac output) were due to restricted pulmonary and cardiac reserve. Preoperative and intraoperative assessment of the recipient's respiratory and cardiac status was, therefore, of prime importance. Mild preoperative pulmonary hypertension, well-preserved right ventricular function, and removal of the less well-perfused lung limited these difficulties; no patient required partial CPB at this stage. During the second lung implantation, gas exchange was provided by the first grafted lung. Measurements of pulmonary vascular resistance (PVR), venous admixture (Qva/Qt), and dead space (VD/VT) assessed with the arterial-to-end-tidal CO2 difference were used to confirm the adequacy of perfusion and V/Q matching. In one patient, partial CPB was instituted because of surgical difficulty related to inadequate size matching of the lungs. In the other patients, first graft function was satisfactory and the second graft was implanted without CPB. With chest closure, PVR returned to nearly normal values (range, 57-293, mean 167 dynes.s.cm-5) and Qva/Qt increased (range, 3 to 36, mean 20%). This limited series demonstrates that CPB is optional during this procedure. Good selection of recipients and donors, good lung preservation methods, and a short duration of cold ischemia are essential to success.
For double lung transplantation, lung volume matching is easier comparing the predicted total lung capacities of the donor and recipient and the recipient's true TLC. The major concern in the inability to close the chest when the donor lungs are too large. The technique reported of left lower lobe implantation during bilateral single lung transplantation might be of great value in patients with small lung volume.
Since 1975 200 tracheal sleeve resections for iatrogenic tracheal and subglottic laryngeal stenoses have been performed in our institution. Preoperative Nd:YAG laser is of paramount help in opening the stenoses. Tracheography is usually performed to specify the length of the stenosis and the distance from the vocal cords. Operative procedures are described. One hundred seventy five (87.5%) patients are definitely cured, but in this group 16 patients required a Montgomery tube for 6 months to 1 year to recover a normal tracheal diameter. Two patients needed a second tracheal sleeve resection. Nine (4.5%) patients died, and 16 (8%) had recurrent stenoses. Stenoses in these patients were treated with use of a tracheostomy tube, a permanent Montgomery tube, or an endotracheal stent. Partial anterior cricoid resections performed in 21 patients have had the same results as those of the whole series. Twenty one laryngeal releases were performed and proved to be efficient and safe. In our experience complications can be avoided by good selection and preparation of the patients, accurate identification of the level and length of the stenosis, and meticulous technique.
Thirteen single lung transplantations have been performed in our department for non-infected end-stage lung diseases. Two patients died after surgery; a female patient died of uterine carcinoma one year and six months after the operation. The remaining ten patients are alive; they have resumed an active life and often working. The number of single lung transplantation is rapidly growing in the world, whereas heart-lung transplantation is regressing considerably.
Two techniques are currently practiced to achieve bilateral lung transplantation for the treatment of patients with end-stage pulmonary disease associated with infection: heart-lung transplantation, which is illogical, and double lung transplantation by the Toronto technique, which is difficult and entails tracheal complications. After our short experience with single lung transplantation without any bronchial problems, we have performed three double lung transplantations by a new technique, "bilateral single lung" transplantation. After a sternal bithoracotomy, first one lung was transplanted and then the other, without cardiopulmonary bypass. This bilateral single lung transplantation provides all the advantages of single lung transplantation and is particularly recommended for use in patients with severe pleural adhesions.
We present 10 cases of a new double lung transplantation technique: following, then the other, without requiring cardiopulmonary bypass. This "bilateral single" lung transplantation procures all the advantages of single lung transplantation.
Single lung transplantation was performed in several steps: laparotomy to prepare an omentopexy, followed by pneumonectomy and implantation of a pulmonary graft, both by postero-lateral thoracotomy. The patients suffered from lymphangiomyomatosis (1), panacinar emphysema (2) and idiopathic pulmonary fibrosis (1). Immunosuppressive treatment was started before surgery. Anaesthesia was induced and maintained with alfentanil, midazolam and vecuronium. The patients were intubated with a Carlens endotracheal tube. Ventilation was carried out using an oxygen-air mixture, without any nitrous oxide or halogenated anaesthetic agent. Besides the usual parameters, expired CO2 concentrations, and oxygen saturation in the pulmonary artery were monitored. Partial femoro-femoral cardiopulmonary bypass was not required. Three major problems were encountered: hypoxia, hypercapnia, and pulmonary arterial hypertension. Hypoxia first occurred during the period of one-lung ventilation, during pneumonectomy, and again after unclamping of the graft vessels before the bronchus had been anastomosed. It was treated either by increasing the FiO2, inflating the lungs with pure oxygen, or partial clamping of the homolateral pulmonary artery. Hypercapnia occurred in three of the four patients until the graft was ventilated again. Except in one patient with preoperative pulmonary hypertension, the increase in pulmonary vascular resistances remained moderate after clamping of the pulmonary artery. Sufficient oxygen delivery, with more than 50% venous oxygen saturation, was maintained at this time by the infusion of dopamine and dobutamine. Two other specific problems were encountered in the emphysematous patients: severe hypotension following the start of artificial ventilation and after placing the patient in lateral position; thoracic asymetry with overdistension of the emphysematous lung, and mediastinal shift.(ABSTRACT TRUNCATED AT 250 WORDS)
The technique of enbloc double lung transplantation described by the Toronto team, with cardiopulmonary bypass, cardioplegia, and tracheal suture is complicated by problems of tracheal anastomosis for its authors. Single lung transplantation has a more straight forward postoperative course and bronchial complications are moderate. We present a new technique of lung transplantation, the "bilateral single lung transplantation". It consists, via a single anterior horizontal incision, of successively performing two single lung transplantations without bypass. This operation has been performed ten times since November 1989. As expected, bronchial healing has been excellent.
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