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Biomedical subjects

A Gitt

Publications and source records attributed to A Gitt.

6 recordsLinked to original sources

[Mortality of patients who are older than 75 years after ST elevation myocardial infarction in clinical practice].

BACKGROUND: Patients who are older than 75 years are often excluded in clinical trials evaluating therapies for ST elevation myocardial infarction. Therefore there is a lack of prospective data for this steadily increasing number of elderly patients. PATIENTS AND METHODS: Between 07/2000 and 11/2002 a total of 16 823 patients with acute coronary syndromes in 154 hospitals were enrolled in the ACOS registry, with 8309 having a STEMI. Baseline characteristics, therapies during the hospital course and at discharge, hospital-mortality and 1-year mortality were prospectively collected. In this study we analysed the outcome of patients older than 75 years with STEMI of less than 24 duration. RESULTS: A total of 2045 patients > 75 years (median age 80.1 years, 53.9 % women) were included. Of the latter 51 % were treated conservatively, 19 % with fibrinolysis and 30 % with primary PCI. In-hospital mortality in the three groups was 23.4 %, 25.4 % und 10.2 %, while total mortality after one year was 52.4 %, 41.3 % und 19.3 %, respectively. In the multivariate analysis both primary PCI (odds ratio 0.36, 95 % CI 0.25 - 0.52) and fibrinolysis (odds ratio 0.65, 95 % CI 0.44 - 0.97) where associated with a lower mortality after discharge. CONCLUSION: Hospital- as well as 1-year mortality in patients with STEMI who are older than 75 years are high. Primary PCI is associated with a decrease of in-hospital and 1-year mortality, while fibrinolysis improves mortality after discharge. Therefore early reperfusion therapy, preferably with primary PCI should be considered in elderly patients, after taking in count biological age and major comorbidities.

Acute Disease↗

Prognostic value of non-sustained ventricular tachycardias after acute myocardial infarction in the thrombolytic era: importance of combination with frequent ventricular premature beats.

PURPOSE: of this study was to re-evaluate the association between ventricular arrhythmias and long-term mortality after acute myocardial infarction (AMI) in the thrombolytic era. METHODS: MITRA (maximal individual therapy in patients with AMI) is a multicenter registry of 54 hospitals in Germany investigating patients with AMI. RESULTS: 2420 patients received Holter ECG. Positive Holter ECG was defined: > or =10 ventricular premature beats (VPB)/h, or > or =4 couplets/d, or > or =1 non-sustained ventricular tachycardia (nsusVT)/d, or their combination. Mortality rates (median 17 months) were 6.5% without ventricular arrhythmias, with > or =10 VPB/h 15.2% and with the combination of > or =10 VPB/h plus either > or =4 couplets/d or > or =1 nsusVT/d 23.4%. In multivariate analysis, none of the ventricular arrhythmias alone correlated with mortality. There was a significant association between mortality and the combination of > or =10 VPB/h plus > or =4 couplets/d (OR 2.3) or > or =10 VPB/h plus > or =1 nsusVT/d (OR 2.8). CONCLUSION: Non-sustained VTs are only associated with poor prognosis if combined with frequent VPBs.

Adrenergic beta-Antagonists↗

Incidence, determinants, and clinical course of reinfarction in-hospital after index acute myocardial infarction (results from the pooled data of the maximal individual therapy in acute myocardial infarction [MITRA], and the myocardial infarction registry [MIR]).

There are few data about the incidence, determinants, and clinical course of in-hospital repeat acute myocardial infarction (RE-AMI) after an index AMI. From June 1994 to June 1998, 22,613 patients with AMI as an index event were registered by the Maximal Individual Therapy in Acute Myocardial Infarction (MITRA) and Myocardial Infarction Registries (MIR). Of these, 1,071 (4.7%) had a RE-AMI. For the index event, 9,143 patients (40.5%) were treated with thrombolysis, 1,707 (7.5%) with primary angioplasty, and 443 (2.0%) with a combination of both. Multivariate analysis showed that previous AMI (odds ratio [OR] 1.59; 95% confidence intervals [CI] 1.35 to 1.86), age >70 years (OR 1.57; 95% CI 1.36 to 1.81), diagnostic first electrocardiogram (OR 1.37; 95% CI 1.19 to 1.59), and female gender (OR 1.14; 95% CI 1.05 to 1.32) were independently associated with a higher incidence of RE-AMI. The incidence of RE-AMI was higher when patients received thrombolysis (OR 1.36; 95% CI 1.15 to 1.61), and it was lower when they underwent primary angioplasty (OR 0.74; 95% CI 0.53 to 1.03) or received beta blockers (OR 0.84; 95% CI 0.72 to 0.97). Patients with RE-AMI had higher hospital mortality compared with those without RE-AMI (OR 4.35; 95% CI 3.83 to 4.95). Multivariate logistic regression analysis showed an independent association of RE-AMI with in-hospital death (OR 6.60; 95% CI 5.61 to 7.70), repeat revascularization (OR 2.91; 95% CI 2.42 to 3.50), low workload capacity on the bicycle ergometry test (OR 2.17; 95% CI 1.71 to 2.76), and ejection fraction <40% (OR 1.72; 95% CI 1.38 to 2.14) at discharge. Thus, RE-AMI occurs in 4.7% of patients after an AMI. Previous AMI, age >70 years, diagnostic first electrocardiogram, and female gender are independent determinants for RE-AMI. Thrombolysis is associated with a higher and beta blockers with a lower incidence of RE-AMI. Once a RE-AMI occurs, it is a strong predictor of in-hospital mortality and morbidity.

Adrenergic beta-Antagonists↗

Lung function and exercise gas exchange in chronic heart failure.

BACKGROUND: The ventilatory response to exercise in patients with chronic heart failure (HF) is greater than normal for a given metabolic rate. The objective of the present study was to determine the mechanism(s) for the high ventilatory output in patients with chronic HF. METHODS AND RESULTS: Centers in Germany, Italy, Japan, and the United States participated in this study. Each center contributed studies on patients and normal subjects of similar age and sex. One hundred thirty patients with chronic HF and 52 healthy subjects participated. Spirometric and breath-by-breath gas exchange measurements were made during rest and increasing cycle exercise. Arterial blood was sampled for measurement of pH, PaCO2, PaO2, and lactate during exercise in 85 patients. Resting forced expiratory volume in 1 second (FEV1) and vital capacity (VC) were proportionately reduced at all levels of impairment. Patients with more severe HF had greater tachypnea and a smaller tidal volume (VT) at a given exercise expired volume per unit time (VE). This was associated with an expiratory flow pattern characteristic of lung restriction. VE and VCO2 as a function of VO2 were increased during exercise in HF patients. The increases were greater the lower the peak VO2 per kilogram of body weight. The ratio of VD (physiological dead space) to VT and the difference between arterial and end tidal PCO2 at peak VO2 also increased inversely with peak VO2/kg. In contrast, the difference between alveolar and arterial PO2 and PaCO2 were both normal, on average, at peak VO2 regardless of the level of impairment. The more severe the exercise limitation, the higher the lactate and the lower the HCO3- at a given VO2, although pH was tightly regulated. CONCLUSIONS: The increase in VE in chronic HF patients is caused by an increase in VD/VT due to high ventilation/perfusion mismatching, an increase in VCO2 relative to VO2 resulting from HCO3- buffering of lactic acid, and a decrease in PaCO2 due to tight regulation of arterial pH. With regard to the excessive VE in HF patients, the increases in VD/VT and VCO2 relative to VO2 are more important as the patient becomes more exercise limited. Regional hypoperfusion but not hypoventilation typifies lung gas exchange in HF. This and other mechanisms might account for the restrictive changes leading to exercise tachypnea in HF patients.

Carbon Dioxide↗

Lung function changes and exercise-induced ventilatory responses to external resistive loads in normal subjects.

AIM: The aim of this study was (1) to assess the value of common lung function variables in the follow-up of patients with obstructive lesions of the larynx and trachea and (2) to study the respiratory response to progressive upper airway stenosis at rest and during exercise. METHODS: Lung function tests, including vital capacity (VC), residual volume (RV), total body plethysmographic resistance (RT), specific body plethysmographic resistance (Rs), total body plethysmographic resistance at low inspiratory/expiratory flows (Rlo), forced expiratory volume in 1 s (FEV1), peak expiratory flow rate (PEF), peak inspiratory flow rate (PIF), maximum expiratory flow at 50% VC(MEF50) and maximum inspiratory flow at 50% VC(MIF50) were performed in 14 normal subjects with added external resistive loads (inner diameter of circular orifice: 15, 10, 8, 6 mm; equivalent to surface areas of 177, 79, 50 and 28 mm2, respectively), applied in random order. The relative sensitivity of each variable to detect a stepwise decrease in orifice size by evoking 'relevant' obstructive responses was calculated. In addition, ventilatory and gaz exchange responses to loaded breathing (10-, 8- and 6-mm orifices, randomly inserted) during steady-state bicycle exercise (80 and 160 W) were assessed in a subgroup of 10 subjects. RESULTS: The gradual increase of external load did not influence static lung volumes (VC, RV). MEF50/MIF50 (1.63 +/- 1.03 at baseline) remained essentially unchanged, consistent with the rigid nature of the obstructive device. PEF was superior in reproducing the transition from unloaded over mild (15 mm) and moderate (10 mm) to high grade (8 mm) central obstruction. Except for mild loads, PIF was equal in sensitivity to PEF. At high grade (8 mm) and severe loads (6 mm), no difference in sensitivity could be established between RT, Rs, FEV1, PIF and PEF. However, they were all superior to Rlo. Compared to unloaded breathing, ventilation across the 10- and 8-mm orifices at both rest and exercise produced a continuous significant increase in oxygen uptake (VO2). Respiratory rate (RR) fell, and a simultaneous enlargement of tidal volume (VT) was observed to maintain or even enhance minute ventilation (VE). However, ventilation across the 6 mm orifice was associated with a substantial decline in VO2, VCO2 and VE relative to the preceding load (8 mm) CONCLUSIONS: It is suggested that the experimental use of inspiratory and expiratory extrinsic loads can mimic rigid obstructive lesions of the larynx and trachea. Among all conventional lung function values, PEF and, to a certain degree, PIF, seem to be the best suitable follow-up parameters to assess airway mechanics before and after surgical/endoscopic procedures. Upper airway stenosis involving surface areas of no more than 50 mm2 can be overcome using adequate respiratory compensation. But any additional narrowing below this limit will result in hypoventilation, inappropriate oxygen uptake and retention of CO2. Thus, experimental evidence indicates that laryngotracheal obstruction within a critical range below 50 mm2 surface area (diameter of circular orifice < 8 mm) compromises respiratory efforts enough to be of clinical importance.

Adult↗