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W Wisser

Publications and source records attributed to W Wisser.

At least 37 records · Page 2Linked to original sources

Comparison between mycophenolate mofetil- and azathioprine-based immunosuppressions in clinical lung transplantation.

BACKGROUND: The aim of the study was to assess the impact of mycophenolate mofetil (MMF) on the early phase after lung transplantation. PATIENTS AND METHODS: Thirty-eight consecutive patients between November 1994 and January 1997 were treated with cyclosporine, prednisolone, antithymocyte globuline induction therapy, and either MMF (n = 21) or azathioprine (Aza) (n = 17). Four patients from the MMF group and 2 patients from the Aza group were intubated and in the ICU prior to transplantation. Demographic data and primary diagnosis were comparable. MMF was administered at a dosage of 2 gm/day whereas Aza was initiated at 2 mg/kg/day and adapted by leukocyte count. Three-month survival and incidence of rejections and infections were compared. RESULTS: Six-month survival in the MMF group was 76% compared to 65% in the Aza group (n.s.). The mean number of acute rejection episodes in the MMF and Aza group were 0.29+/-0.10 and 1.53+/-0.29 (p<0.01) respectively. Transbronchial biopsy (TBB) results > or =grade 2 ISHLT were seen in 10% of MMF and in 43% of Aza-treated patients; completely free from rejection were 17 MMF and 3 Aza patients. The mean number of infections per patient in the MMF and Aza group were 1.57+/-0.29 and 2.29+/-0.40 respectively, bacterial (1.10 vs. 1.71), viral (0.35 vs. 0.33), and fungal (0.14 vs. 0.24) infections were the same in both groups. CONCLUSIONS: These data result suggest that mycophenolate mofetil therapy is more effective in preventing rejection episodes in patients early after lung transplantation than therapy with azathioprine. We therefore conclude that MMF is a safe and effective drug to optimize immunosuppressive therapy in the early phase after lung transplantation.

Adolescent↗

Renal hemodynamic effects of L-arginine and sodium nitroprusside in heart transplant recipients.

BACKGROUND: Long-term treatment with cyclosporine A (CsA) induces vasoconstriction in the kidney and causes renal impairment. An altered L-arginine (L-Arg)/nitric oxide (NO) pathway may play a key role in CsA nephrotoxicity. METHODS: We studied the effect of L-Arg (dosage, 17 mg/kg/min over 30 min), the precursor of NO synthesis, and sodium nitroprusside (SNP; dosage, 1.0 microgram/kg/min over 30 min) on renal hemodynamics in a double-blind, placebo-controlled, randomized, three-way cross-over study comprising 12 stable cardiac transplant recipients on long-term CsA treatment, 10 patients with chronic nephropathy not receiving CsA, and 13 healthy controls. Renal plasma flow (RPF) and glomerular filtration rate (GFR) were measured by paraaminohippurate (PAH) and the inulin clearance method, respectively. RESULTS: In healthy subjects, L-Arg induced an increase in RPF (P = 0.009) and GFR (P = 0.001). By contrast, L-Arg did not induce renal hemodynamic effects in heart transplant patients or patients with chronic nephropathy. SNP reduced RPF (P = 0.050) and GFR (P = 0.005) in patients with chronic nephropathy but did not affect renal hemodynamics in heart transplant recipients or in healthy subjects. CONCLUSIONS: These data indicate that L-Arg cannot be used to reverse CsA-induced renal vasoconstriction in heart transplant recipients under long-term CsA treatment, although these patients have a normal renal response to SNP.

Aged↗

Lung volume reduction surgery: preoperative functional predictors for postoperative outcome.

UNLABELLED: Approximately 20% of patients undergoing lung volume reduction surgery (LVRS) exhibit no functional improvement postoperatively. Therefore, we examined whether variables characterizing ventilatory mechanics before LVRS could serve as predictors for outcome. In 32 patients undergoing LVRS, lung function, dyspnea score, and ventilatory mechanics were assessed preoperatively and 3 mo after LVRS. Ventilatory mechanics were characterized by total resistive work of breathing (WOB), mean airway resistance (Rawm), and dynamic intrinsic positive end-expiratory pressure (PEEPi,dyn). Calculations of WOB, Rawm, and PEEPi,dyn were made from measurements of airflow, volume, and esophageal pressure. Preoperative PEEPi,dyn correlated well with the increase in forced expiratory volume percent predicted (r = 0.75; P < 0.0001) and the decrease in dyspnea score (r = -0.74; P < 0.0001) after LVRS. Rawm and WOB showed inferior correlation compared with PEEPi,dyn. The examination of distinct threshold values for WOB, Rawm, and PEEPi,dyn with respect to predicting improvement resulted in a sensitivity of 93% and specificity of 88% for a cutoff point of preoperative PEEPi,dyn > or =5 cm H2O. Preoperative PEEPi,dyn correlated well with improvement in forced expiratory volume and dyspnea score after LVRS. Thus, preoperative assessment of PEEPi,dyn could improve risk to benefit stratification before LVRS. IMPLICATIONS: We examined the preoperative ventilatory mechanics of patients with emphysema undergoing lung volume reduction surgery with respect to their value in predicting outcome. Preoperative intrinsic positive end-expiratory pressure correlated well with the increase in forced expiratory volume in 1 s after surgery. Thus, this variable seems promising for improved patient selection.

Adult↗

Neural drive to the diaphragm after lung volume reduction surgery.

STUDY OBJECTIVES: The aim of this study was to investigate prospectively the changes in neural drive to the diaphragm in the first year after lung volume reduction surgery (LVRS) in patients with COPD. PATIENTS AND METHODS: In 14 patients with severe emphysema (mean +/- SD; age, 53.7 +/- 8.3 years; FEV(1), 0.64 +/- 0. 18 L; residual volume [RV], 5.33 +/- 1.25 L; PaO(2), 62.3 +/- 9.0 mm Hg; PaCO(2), 39.0 +/- 6.0 mm Hg), we assessed lung function, arterial blood gases, maximal exercise capacity (Wmax), and oxygen uptake (f1.gif" BORDER="0">O(2)max); intrinsic positive end-expiratory pressure (PEEPi); diaphragmatic strength (transdiaphragmatic pressure, Pdisniff) and endurance capacity (tlim); central diaphragmatic drive assessed by root mean square analysis of the esophageal electromyogram (rmsdia); and isotime dyspnea during loaded breathing tests (BS). RESULTS: Despite a significant increase (expressed as a percentage of baseline) in FEV(1) (40.6%) and a decrease in RV (30.0%) and PEEPi (75.7%) 1 month after LVRS, the improvements in Wmax (31.2%) and f1.gif" BORDER="0">O(2)max (13.7%); Pdisniff (25.4%) and tlim (64.9%); rmsdia (34.6%); and BS (21.7%) did not reach statistical significance (p < 0.05) until 6 months after LVRS. Arterial blood gases did not change significantly. Significant correlations were found between decrease in rmsdia and changes in PEEPi (r = 0.69), Wmax (r = -0.56), Pdisniff (r = -0.65), tlim (r = -0.59), and BS (r = 0.71) 6 months after LVRS. CONCLUSIONS: Our results show that LVRS is able to increase the efficacy of the respiratory pump and by this way reduce ventilatory drive and respiratory effort sensation.

Diaphragm↗

Morphologic grading of the emphysematous lung and its relation to improvement after lung volume reduction surgery.

BACKGROUND: The morphologic criteria for lung volume reduction surgery, such as severity and heterogeneity of disease, differ widely between patients, and this makes any comparison of functional results between centers difficult. Here we present a morphologic scoring system and describe its possible relation to functional results after lung volume reduction operations. METHODS: Between September 1994 and December 1996, 47 consecutive patients underwent bilateral lung volume reduction operations. The morphology of emphysema was quantified with standard chest roentgenograms and computed tomographic imaging, which were used to define the following four variables: degree of hyperinflation (grade 0 to 4), degree of impairment in diaphragmatic mechanics, degree of heterogeneity (grade 0 to 4), and severity of parenchymal destruction (range, 0 to 48). RESULTS: All four variables showed good reproducibility. Degree of heterogeneity had a significant influence on functional improvement in terms of forced expiratory volume in 1 second (p = 0.0413, r2 = 0.11). Severity of parenchymal destruction was significantly associated with 30-day mortality: patients who died after operation (n = 4) had a severity of parenchymal destruction of 28.4 +/- 2.1 compared with 21.3 +/- 1.0 for those who survived (n = 43) (p = 0.003). CONCLUSIONS: This morphologic scoring system is easy to use, is reproducible, and allows quantification of the morphology of emphysema, thereby allowing definition of different patient subgroups. Such an exact morphologic quantification may help in the comparison of functional results between centers. Furthermore, the risk factors for certain morphologic subgroups, such as patients with a homogeneous distribution pattern, may be clarified in the future.

Adult↗

Chronic hypercapnia should not exclude patients from lung volume reduction surgery.

OBJECTIVE: Chronic hypercapnia is still considered to increase the risk for perioperative mortality and therefore to be a contraindication for lung volume reduction surgery (LVRS). The aim of this study was to analyse the influences of hypercapnia upon postoperative outcome. METHODS: The functional improvement (preop vs. 3 months postop) and clinical outcome was studied in 22 patients with chronic hypercapnia (preoperative arterial pCO2 > or = 45 mmHg) who underwent LVRS between 9/94 and 2/97 and were compared to all other patients (n = 58) without hypercapnia. Data are expressed as the mean +/- SEM. RESULTS: The 30-day mortality was 9.1% (2/22) in patients with chronic hypercapnia (HC) and 5.2% (3/58) in patients with normal arterial pCO2 levels (control) (P = n.s). The stay on the ICU (3.5 +/- 0.8 vs. 2.1 +/- 0.3 days) and duration of chest drainage (7.3 +/- 1.2 vs. 7.2 +/- 0.8 days) was similar between both groups (HC vs. control) (P = n.s). The preoperative lung function (% of predicted) and blood gas (mmHg) parameters were significantly worse in HC patients compared to control patients. In both groups significant functional improvements were observed: FeV1 in the control group increased by 37% within the first 3 months (29.1 +/- 1.7% of predicted vs. 39.9 +/- 3.1% of predicted, P = 0.0198). In the HC group, FeV1 increased by 73% which was even higher than in the controls (19.5 +/- 1.5% of predicted vs. 33.7 +/- 4.7% of predicted, P = 0.0385). All patients of both groups who died perioperatively had a significantly higher severity of parenchymal destruction than those who survived (P = 0.0277 and 0.0380, respectively). CONCLUSIONS: Patients with chronic hypercapnia alone, had no significantly higher mortality and morbidity, and therefore should not be excluded from LVRS. However, the presence of additional risk factors, such as homogeneity of disease, high degree of parenchymal destruction or pulmonary hypertension should be considered as contraindications for the procedure.

Case-Control Studies↗

Functional improvement after volume reduction: sternotomy versus videoendoscopic approach.

BACKGROUND: Volume reduction has been proved to increase ventilatory mechanics in diffuse, nonbullous lung emphysema. However, the best approach is still controversial. METHODS: We retrospectively compared the perioperative data of and functional results in 15 patients having sternotomy (group I) with those of 15 patients having a videoendoscopic approach (group II). RESULTS: The 30-day mortality was 2 patients in group I and 1 patient in group II. Mean duration of chest tube drainage was 8.7 +/- 1.8 days and 8.0 +/- 1.9 days and mean hospital stay, 12.3 +/- 1.9 and 12.5 +/- 2.1 days in groups I and II, respectively. Work of breathing decreased from 1.89 +/- 0.33 J/L and 1.76 +/- 0.22 J/L preoperatively to 0.75 +/- 0.06 J/L and 0.8 +/- 0.06 J/L (p < 0.01 and p < 0.05, respectively) after 3 months; and intrinsic positive end-expiratory pressure decreased from 7.15 +/- 1.31 cm H2O and 6.24 +/- 1.33 cm H2O to preoperatively 0.79 +/- 0.46 cm H2O and 1.13 +/- 0.44 cm H2O (p < 0.005 and p < 0.01, respectively) after 3 months in groups I and II, respectively. Forced expiratory volume in 1 second increased from preoperative values of 21.6% +/- 2.9% and 25.3% +/- 2.4% of predicted to 34.5% +/- 5.0% and 40.9% +/- 7.5% of predicted after 3 months (p < 0.05 in both groups) in groups I and II, respectively. CONCLUSIONS: Both surgical approaches resulted in similar substantial improvement in lung function and physical fitness. The incidence of air leakage, the duration of chest tube drainage, and the hospital stay were the same for both procedures.

Case-Control Studies↗

Functional improvements in ventilatory mechanics after lung volume reduction surgery for homogeneous emphysema.

OBJECTIVE: Between September 1994 and August 1996 Lung Volume Reduction Surgery (LVRS) was performed through median sternotomy, videoendoscopically or by thoracotomy in 54 consecutive patients (age 34-69 years, mean 48 years). METHODS: The areas with the most destroyed lung parenchyma were resected by means of linear stapling devices. A total of 5 patients died postoperatively due to aspiration pneumonia, multiorgan failure and acute hepatic failure respectively. A marked functional improvement and increase in quality of life was observed in the remaining patients. RESULTS: Residual volume decreased from 317.0 +/- 12.4% of predicted (%p) preoperatively to 226.2 +/- 8.8%p within the first month (P = 0.0001). FeV1 significantly increased from 23.7 +/- 1.3%p preoperatively to 36.3 +/- 4.1%p during the first 6 months postoperatively (P = 0.0016). Radiological signs of hyperinflation and distention of the thorax preoperatively improved to a more dome shaped diaphragm and narrowed intercostal spaces. These morphologic changes resulted in better ventilatory muscle function. The intrinsic PEEP significantly decreased from 5.92 +/- 0.64 cm H2O preoperatively to 1.70 +/- 0.25 cm H2O postoperatively (P = 0.0001). The work of breathing decreased from 1.58 +/- 0.09 J/l preoperatively to 0.99 +/- 0.07 J/l postoperatively (P = 0.0001). CONCLUSIONS: In conclusion, LVRS is an excellent therapeutic option for patients with homogeneous emphysema with additional signs of severe hyperinflation.

Female↗

Incidence and outcome of major non-pulmonary surgical procedures in lung transplant recipients.

OBJECTIVE: Pulmonary transplant recipients are at high risk from various conditions requiring surgical intervention. As little is known about their exact incidence and course, we examined such procedures in detail. METHODS AND PATIENTS: We have retrospectively analyzed major nonpulmonary surgical procedures performed in 124 consecutive patients who received an isolated lung transplant at the University of Vienna between 1989 and December 1995. Twenty-two patients underwent a total of 28 major interventions (22/124 = 17.7%), resulting in an incidence of one procedure every 5.8 patient years of follow-up. The mean interval between transplantation and intervention was 17.9 months (range 3 days to 62 months) with six interventions being carried out during the first month after transplantation. Fourteen emergency operations were performed, the remaining 14 procedures were carried out electively. Overall, 15 abdominal procedures, four thoracic, four orthopedic, two gynecological, one neurosurgical, one urological and one plastic surgery were performed. RESULTS: There was no intraoperative death. Perioperatively, five surgery related deaths were observed (5/28, related mortality 17.9%) with multiple organ failure as the cause of death in all cases. All of these deaths followed emergency operations (5/14 = 35.7%) and all were observed in patients with septic abdominal complications. In contrast, even very extensive procedures were performed electively without related mortality (0/14, P = 0.02). During the first month after transplantation, major surgery was associated with a 50% (3/6) mortality, for late interventions mortality was 9.1% (2/22; P = 0.047). CONCLUSIONS: Pulmonary transplant recipients showed a high incidence of conditions requiring surgical intervention. As expected, septic complications, especially during the immediate post transplant period, carried a very poor prognosis. However, it was reassuring to observe that even extensive surgical procedures could be performed safely without associated mortality in the elective setting.

Adolescent↗

Changes in ventilatory mechanics and diaphragmatic function after lung volume reduction surgery in patients with COPD.

BACKGROUND: Lung volume reduction (LVR) has recently been used to treat severe emphysema. About 25% of the volume of each lung is removed with this method. Little is known about the mechanism of functional improvement so a study was undertaken to investigate the changes in ventilatory mechanics and diaphragmatic function in eight patients after LVR. METHODS: Measurements of work of breathing (WOB), intrinsic positive end expiratory pressure (PEEPi), dynamic compliance (Cdyn), and arterial carbon dioxide tension (PaCO2) were performed on the day before surgery and daily for seven days after surgery, as well as one, three, and six months after surgery. All measurements were performed on spontaneously breathing patients, simultaneously assessing oesophageal pressure via an oesophageal balloon catheter and air flow via a tightly adjusted mask. Diaphragmatic function was evaluated by measuring oesophageal and transdiaphragmatic pressure (Pdi) preoperatively and at one, three, and six months postoperatively. RESULTS: Mean forced expiratory volume in one second (FEV1) was 23 (3.6)% predicted, and all patients were oxygen dependent before the-operation. One day after LVR the mean decrease in WOB was 0.93 (95% confidence interval (CI) 0.46 to 1.40) joule/l, the mean decrease in PEEPi was 0.61 (95% CI 0.35 to 0.87) kPa, and the mean increase in Cdyn was 182.5 (95% CI 80.0 to 284.2) ml/kPa. Similar changes were found seven days and six months after surgery. PaCO2 was higher on the day after the operation but was significantly reduced six months later. Pdi was increased three and six months after surgery. CONCLUSIONS: Ventilatory mechanics improved immediately after LVR, probably by decompression of lung tissue and relief of thoracic distension. An improvement in diaphragmatic function three and six months postoperatively also contributes to improved respiratory function after LVR.

Aged↗

The effect of lung transplantation on the neural drive to the diaphragm in patients with severe COPD.

Little is known about the effects of lung transplantation (LT) on the neural drive to the diaphragm and on the endurance of respiratory muscles in patients with severe chronic obstructive pulmonary disease (COPD). The aim of this study was to evaluate these effects of single-lung (SLT) and double-lung transplantation (DLT). The neural drive to the diaphragm was assessed during fatiguing inspiratory threshold loading manoeuvres in six SLT recipients, six DLT recipients and seven patients with severe COPD, by using diaphragmatic surface electromyograms. During threshold loading, the patients had to generate 80% of their maximal transdiaphragmatic pressure with each breath. The endurance of inspiratory muscles was defined as the time from the beginning of a resistive breathing trial until exhaustion (t lim). In DLT recipients and even in SLT recipients (on both sides), neural activation of the diaphragm was significantly lower than in COPD patients (p < 0.05). However, no statistically significant difference in t lim was seen between LT recipients and COPD patients. The data suggest that single-lung and double-lung transplantations cause a significant decrease of the neural drive to the diaphragm, while the endurance of inspiratory muscles is well-preserved in patients with advanced chronic obstructive pulmonary disease. This may contribute to reduced sensation of inspiratory effort during ventilatory stress, thus improving the quality of life.

Diaphragm↗

Diaphragmatic dysfunction after heart or lung transplantation.

BACKGROUND: The aim of this study was to evaluate the incidence and outcome of diaphragmatic dysfunction in patients after heart or lung transplantation and to assess the value of bedside sonography for the detection of diaphragmatic dysfunction. METHODS: We prospectively evaluated 33 heart transplant recipients and 27 lung transplant recipients by use of sonography of the diaphragm and fluoroscopy. RESULTS: Diaphragmatic dysfunction, diagnosed with ultrasonography and confirmed with fluoroscopy, was present in four heart transplant recipients (12.1%) and two lung transplant recipients (7.4%) and such dysfunction led to a statistically significant higher incidence of pneumonia during hospitalization and a nonstatistically significant increased length of intubation compared with patients with normal diaphragmatic function. CONCLUSION: Diaphragmatic dysfunction, which can be reliably diagnosed with bedside sonography, is common after heart and lung transplantation and seems to have a negative influence on patient recovery.

Adult↗

[Thoracoscopic methods in treatment of pulmonary emphysema].

Technical advances in the field of endoscopical surgery have widened the spectrum of thoracoscopic operations in the therapy of lung emphysema. Especially in patients who are severely disabled as a result of their reduced lung function, a less surgical trauma should result in better postoperative performance. Bullectomy, which was an integral part of the spectrum in thoracic surgery for a long time, should be performed in a minimally invasive way today. In the American literature, disappointing results have been published concerning laser resection of emphysematous lung tissue. As a result, this method should be abandoned. In contrast, lung volume reduction surgery in patients with diffuse emphysema has caused significant improvement in lung function. The initial approach to this method was a median sternotomy. However, recent experiences in several centers have demonstrated the feasibility and efficiency of a thoracoscopic procedure.

Endoscopes↗

The influence of lung volume reduction surgery on ventilatory mechanics in patients suffering from severe chronic obstructive pulmonary disease.

Recently, lung volume reduction [LVR] removal of about 20% of lung volume), has been performed to treat severe emphysema. Little is known, however, about the mechanism and time course of functional improvement, and the reasons that such patients can be tracheally extubated very early. Therefore, we studied changes in ventilatory mechanics in 12 patients after LVR. Measurements of work of breathing (WOB), intrinsic positive end-expiratory pressure (PEEPi), dynamic compliance (Cdyn), and mean airway resistance (Rawm) were performed the day before surgery, early postoperatively, and 1 and 3 mo after surgery. All measurements were performed on tracheally extubated patients, simultaneously assessing esophageal pressure via esophageal balloon catheter and air flow via tightly adjusted mask. Standard spirometry was assessed pre-operatively and 1 and 3 mo postoperatively. The patients presented with forced expiratory volume in 1 s (FEV1), of 670 +/- 50 mL and pathological values of WOB and PEEPi. All patients were successfully tracheally extubated within 5 h postoperatively. Immediately thereafter, a marked and sustained decrease in WOB, PEEPi, and Rawm was noted, as well as an increase in Cdyn. Ventilatory mechanics improved immediately after LVR, probably due to decompression of lung tissue, thereby enabling successful tracheal extubation.

Adult↗

Early postoperative stress: video-assisted wedge resection/lobectomy vs conventional axillary thoracotomy.

Postoperative pain is a major cause of ineffective breathing after lung surgery, predisposing patients to hypoxemia. Because potent analgesics like opioids depress ventilation and other analgesic techniques are time-consuming, efficient postoperative pain therapy is difficult. Therefore, a less painful surgical approach could be beneficial. Forty-seven patients with diagnosis of a pulmonary nodule were prospectively studied. Patients were assigned to a video-assisted thoracic surgery (VATS) group (n=22) or a group undergoing axillary thoracotomy (n=25). Visual analogue scale (VAS) scores, plasma glucose levels, plasma epinephrine and plasma norepinephrine levels, as well as arterial oxygen (PaO2) and carbon dioxide (PaCO2) tension were determined the day before surgery, and 3, 15, 24, 48, and 72 h after surgery. Postoperative piritramide (a synthetic morphine compound) demand was recorded. VAS values were significantly lower (p<0.05) during the whole observation period in the VATS group. Significantly higher epinephrine levels were observed 3 and 15 h after surgery (267.4 +/- 28 vs 111.8 +/- 13 ng/L; p<0.01; and 176.6 +/- 46.5 vs 96 +/- 14.5 ng/L; p<0.05) in the thoracotomy group, whereas there was no significant difference in norepinephrine (correction of norephinephrine) levels. Piritramide demand was significantly (p<0.05) reduced in the VATS group throughout the whole observation period. There was no difference in PaCO2 values but PaO2 Values were higher in the VATS group over 72 h, with maximum differences occurring at 15 h after operation: 60.9 +/- 1.9 vs 49.2 +/- 2.4 mm Hg (p<0.01). In conclusion, the videoendoscopic approach is associated with less postoperative pain and better oxygenation than traditional surgical approaches.

Analgesics, Opioid↗

Lung retransplantation: institutional report on a series of twenty patients.

BACKGROUND AND METHODS: Between 1986 and 1995, 124 isolated lung and 29 combined heart-lung transplantations were performed at our institution. Twenty of these procedures were retransplantations. Four different types of reoperations were performed: ipsilateral single lung retransplantation (n = 3), single lung retransplantation after bilateral or heart-lung transplantation (n = 7), bilateral retransplantation after bilateral lung transplantation (n = 5), and bilateral retransplantation after single lung transplantation (n = 5). Nine patients underwent retransplantation while still in the intensive care unit after the primary transplantation. Indications for retransplantation in these patients were primary graft failure in seven and bronchial complications in two patients. In 11 patients a late retransplantation (3 to 30 months after the first transplantation) was performed. The indication was obliterative bronchiolitis in nine and late bronchial complications in two patients. Overall, 13 patients were ventilator-dependent before retransplantations. RESULTS: Overall survival was 52.8% and 36.2% at 1 and 12 months, respectively. For early retransplantation the survival rate at 1 month was only 22.2% with 2 patients alive 5 and 22 months after the retransplantation. For late retransplantation survival at 1 and 12 months was 70.7% and 50.5%, respectively (p = 0.07), and the longest surviving patient was at 47 months after retransplantation at the time this article was written. Patients who were ventilator-dependent before retransplantation had a significantly worse outcome (survival at 1 and 12 months: 33.8% and 25.4% versus 85.7% and 57.1% for all others, p = 0.055). Of those surviving to date, all were in New York Heart Association class I or II. CONCLUSIONS: We conclude that late and elective lung retransplantation achieves acceptable results when offered to patients with chronic pulmonary dysfunction but with otherwise stable conditions. In view of the poor results, early acute retransplantation should be performed much more restrictively.

Adolescent↗

Tailoring of the lung to overcome size disparities in lung transplantation.

BACKGROUND: Between October 1989 and December 1994 in 13 (four single and nine bilateral lung transplantations) of 124 lung transplantations, pulmonary allografts were considered to be too large to fit into the recipient thoracic cavity. METHODS: In all these patients (emphysema n = 6, fibrosis n = 4, pulmonary hypertension n = 3), the transplanted lungs were trimmed by extra anatomic wedge resections with the use of mechanical stapling devices to reach an acceptable size. RESULTS: No postoperative complication attributable to the tailoring procedure was observed. CONCLUSIONS: Tailoring of the lung is a safe and efficient method to overcome moderate size disparities between donor and recipient lungs.

Humans↗