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Biomedical subjects

W Klepetko

Publications and source records attributed to W Klepetko.

At least 73 records · Page 4Linked to original sources

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↗

High turnover bone disease following lung transplantation.

Recipients of lung transplants are at very high risk for significant bone loss. Nevertheless, data on bone disease after lung transplantation are still limited. We, therefore, retrospectively evaluated the data of 33 patients surviving at least 1 year after lung transplantation (LTx) who were seen in our outpatient clinic for osteologic evaluation. Results of clinical evaluations, radiographs, and dual-energy X-ray absorptiometry (DXA) were related to each other, to clinical variables, and to serum levels of osteocalcin, parathyroid hormone (PTH), and 25-hydroxyvitamin D: 14 of 33 patients (42%) had vertebral fractures, 9 of whom were diagnosed within 2 years after transplantation. Bone mineral density values (DXA) were markedly decreased and predictive of compression fractures. 25-Hydroxyvitamin D levels were low in 13 patients (39%) and PTH was elevated in 7 (21%). Despite corticosteroids and low 25-hydroxyvitamin D, serum osteocalcin was elevated in 12 patients (36%). This was only partially explained by hyperparathyroidism, low sex hormones, and impaired renal function, and may partly be caused by cyclosporin A. We thus conclude that severe symptomatic bone disease is common in lung transplant recipients and due to a complex situation including high turnover bone loss and hypovitaminosis D. DXA can be used to estimate fracture risk for individual patients.

Absorptiometry, Photon↗

Ventilatory mechanics and gas exchange during exercise before and after lung volume reduction surgery.

Many patients with emphysema are able to meet ventilatory demands during resting conditions, but they show severe limitations during exercise. To examine the effect of lung volume reduction (LVR) surgery on exercise performance and the mechanism of possible improvement, we measured ventilatory mechanics (pulmonary resistance [RL], work of breathing [WOB], dynamic intrinsic positive end-expiratory pressure [PEEPi,dyn], peak expiratory flow rate [PEFR]), breathing pattern, oxygen uptake (V O2), and carbon dioxide removal (V CO2) at rest and during cycle ergometry in eight patients before and 3 mo after LVR surgery. Ventilatory mechanics were evaluated assessing esophageal pressure and air flow. Three months after LVR surgery, the tolerated workload was doubled when compared with the preoperative value (p < 0.0005), associated with a reduction of RL (p < 0.05), PEEPi,dyn (p < 0.005), and WOB (p < 0. 005) at comparable workloads. Maximal ventilatory capacity and maximal tidal volume (VT) increased significantly (p < 0.01). Maximal V O2 increased from 474 +/- 23 to 601 +/- 16 ml/min (p < 0. 005) and maximal V CO2 from 401 +/- 13 to 558 +/- 21 ml/min (p < 0. 005), though no significant difference at comparable workloads could be observed. In conclusion, emphysema surgery leads to an improvement of ventilatory mechanics at rest and during exercise. Higher maximal VT and minute ventilation were observed, resulting in improvement of maximal V O2 and V CO2 and exercise capacity.

Aged↗

Aerobic endurance training program improves exercise performance in lung transplant recipients.

STUDY OBJECTIVE: To determine whether an aerobic endurance training program (AET) in comparison to normal daily activities improves exercise capacity in lung transplant recipients. PATIENTS AND STUDY DESIGN: Nine lung transplant recipients (12+/-6 months after transplant) were examined. All patients underwent incremental bicycle ergometry with the work rate increased in increments of 20 W every 3 min. Identical exercise tests were performed after 11+/-5 weeks of normal daily activities and then after a 6-week AET. The weekly aerobic training time increased from 60 min at the beginning to 120 min during the last week. Training intensity ranged from 30 to 60% of the maximum heart rate reserve. RESULTS: Normal daily activities had no effect on exercise performance. The AET induced a significant decrease in resting minute ventilation from 14+/-5 to 11+/-3 L/min. At an identical, submaximal level of exercise, a significant decrease in minute ventilation from 47+/-14 L/min to 39+/-13 L/min and heart rate from 144+/-12 to 133+/-17 beats/min, before and after the AET, was noted. The increase in peak oxygen uptake after AET was statistically significant (1.13+/-0.32 to 1.26+/-0.27 L/min). CONCLUSIONS: These data demonstrate that normal daily activities do not affect exercise performance in lung transplant recipients > or = 6 months after lung transplantation. An AET improves submaximal and peak exercise performance significantly.

Activities of Daily Living↗

Pulmonary and aortic blood flow measurements in normal subjects and patients after single lung transplantation at 0.5 T using velocity encoded cine MRI.

PURPOSE: It is the purpose of this study to compare pulmonary and aortic blood flow measurements obtained in patients after single lung transplantation (SLTX) with those in volunteers. METHODS/MATERIAL: In nine patients after SLTX (three male, six female) and nine volunteers (seven male, two female), double oblique phase contrast cine-MRI sequences perpendicular to the direction of blood flow were obtained in the ascending aorta, main, right, and left pulmonary artery on a 0.5-T unit (Philips Gyroscan; Best, the Netherlands) (repetition time, 600 to 800 ms; echo time, 8 ms; alpha=30; field of view=280 mm matrix, 128x256, ECG gating, temporal resolution 16 time frames/RR interval). An initial in vitro study using the same sequence on a nonpulsatile flow phantom showed excellent correlation (r=0.99) between MRI measurements of flow velocity and flow volume and true velocity and flow volume. Measurements of blood flow volume (mL/min), peak mean systolic velocity, resistive index, and distensibility index were obtained in each vessel. RESULTS: We found excellent correlations between left and right cardiac output as measured by velocity encoded cine-MRI (VEC-MRI) in the ascending aorta and main pulmonary artery both in normal volunteers (r=0.95) and in patients (r=0.91). Differential pulmonary blood flow measurements in volunteers showed that 55% of the right cardiac output was directed to the right and 45% to the left lung. Differential pulmonary blood flow in patients showed that most of the blood flow (81%) reaches the transplanted lung and only 19% reaches the patient's own lung (SLTX: 4.5+/-1.8 L/min, patient's own lung: 1.2+/-0.8 L/min). There were significant differences (p<0.05) in peak mean systolic velocity and resistive index obtained in the pulmonary arteries, both between normal volunteers and patients and between measurements obtained in the patient's own lung and the transplanted lung. CONCLUSION: VEC-MRI blood flow measurements are a promising noninvasive tool to monitor the hemodynamic changes of pulmonary blood flow after SLTX.

Adult↗

Prevention of air leaks after pulmonary wedge resection.

Prolonged air leak after a lung volume reduction operation for pulmonary emphysema is a major cause of morbidity and prolonged hospital stay. Staple line reinforcement is recognized as an effective adjunctive technique for decreasing the occurrence of air leaks after pulmonary wedge resection. Numerous materials have been used for staple-line reinforcement. We use expanded polytetrafluoroethylene sleeves that fit over the arms of surgical staplers to facilitate staple-line reinforcement in both thoracoscopic and open lung volume reduction procedures. The expanded polytetrafluoroethylene sleeves do not require rinsing or special handling; they are easy to use and effective in preventing air leaks. We had no prolonged air leaks or infections in any of the cases in which we used the sleeves.

Humans↗

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↗

Nutritional status, ICU duration and ICU mortality in lung transplant recipients.

OBJECTIVE: To determine the relation of malnutrition and underlying diagnosis to the length of stay in the Intensive Care Unit (ICU) and to mortality after lung transplantation (LTX). DESIGN: Retrospective ICU chart review. SETTING: Cardiothoracic ICU in a University hospital. PATIENTS: Fifty-one consecutive patients who suffered from end-stage lung disease from April 1992 to January 1994. INTERVENTIONS: None. MEASUREMENTS AND RESULTS: The median time spent in the ICU was 5 days (range, 2-123 days). Patients with an underlying diagnosis of obstructive lung disease had significantly shorter ICU stays (median 4 days; range, 2-28 days) than those with restrictive lung disease (median 7 days; range, 2-123 days) (p = 0.005) or pulmonary hypertension (median 10 days' range, 2-38 days) (p = 0.041). Significant differences in ICU duration were observed between patients after double lung transplantation (median 10 days; range, 2-123 days) and those after single lung transplantation (median 4 days; range, 2-36 days) (p = 0.004). No statistically significant difference in ICU duration was found between patients with different nutritional statuses. In those patients who could not be discharged from the ICU before the 5th day, a body mass index (BMI) below the 25th percentile was a statistically significant risk factor for ICU mortality (p = 0.05). CONCLUSIONS: We conclude that the type of transplant procedure and the underlying diagnosis are important predictive indicators of ICU duration. A poor nutritional status (BMI below the 25th percentile) is a risk factor for ICU mortality in cases of patients who stay for 5 days or longer in the ICU.

Adolescent↗

[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↗

[Spiral-CT [corrected] in chronic lung thromboembolism.

Chronic thromboembolic pulmonary hypertension (CTEPH) is a rare result of recurrent pulmonary embolism and is treated by pulmonary thromboendarterectomy. Knowledge of the exact location of the thrombi is necessary in planning this operation. To date, pulmonary, angiography is the diagnostic imaging gold standard. Since the introduction of spiral CT excellent vascular opacification of the pulmonary arteries has become feasible, and thrombi in the pulmonary arteries can be visualized directly. Spiral CT is superior to angiography in demonstrating thrombi in the central pulmonary arteries, whereas angiography proves superior to CT in the evaluation of abnormalities within segmental arteries. The sensitivity of spiral CT in confirming the diagnosis of CTEPH is reported to be more than 90%. According to the literature and based on our own results, the decision concerning operability is possible on the basis of spiral CT images in more than 80% of patients with CTEPH. Spiral CT as a non-invasive tool may be used for CTEPH screening, for postoperative follow-up after pulmonary thrombendarterectomy and, combined with pulmonary angiography, to optimize operation planning.

Angiography↗