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Biomedical subjects

G Iotti

Publications and source records attributed to G Iotti.

At least 19 recordsLinked to original sources

Elevated static compliance of the total respiratory system: early predictor of weaning unsuccess in severed COPD patients mechanically ventilated.

OBJECTIVE: To assess in a group of COPD patients mechanically ventilated for an episode of acute respiratory failure the respiratory mechanics with a simple and non invasive method at the bedside in order to evaluate if these parameters may be predictive of weaning failure or success. DESIGN: A prospective study. SETTING: Intensive care and intermediate intensive care units. PATIENTS: 23 COPD patients ventilated for acute respiratory failure and studied within 24 hours from intubation. METHODS: Using end-expiratory and end-inspiratory airway occlusion technique, we measured PEEPi, static compliance of the respiratory system (Crs, st) maximum respiratory resistance (Rrsmax) and minimum respiratory resistance (Rrsmin). MEASUREMENTS AND RESULTS: The weaned group (A) and the not weaned group (B) were not different regarding to static PEEPi (group A 8.5 +/- 4.0 vs group B 8.9 +/- 2.6 cmH2O), TO Rrsmax (22.4 +/- 5.3 versus 22.2 +/- 9.0 cmH2O/1/s) and to Rrsmin (17.6 +/- 5.5 versus 17.9 +/- 8.0 cmH2O/1/s), while a significant difference (p < 0.001) has been found in Cst, rs (62.7 +/- 17.% versus 111.6 +/- 18.0 ml/cm H2O). The threshold value of 88.5 ml/cmH2O was identified by discriminant analysis and provided the best separation between the two groups, with a sensitivity of 0.85 and a specificity of 0.87. CONCLUSION: Cst, rs measured non invasively in the first 24 h from intubation, provided a good separation between the patients who were successfully weaned and those who failed.

Acute Disease

Simple method to measure total expiratory time constant based on the passive expiratory flow-volume curve.

OBJECTIVE: In intubated, mechanically ventilated patients, inspiration is forced by externally applied positive pressure. In contrast, exhalation is passive and depends on the time constant of the total respiratory system. The expiratory time constant is thus an important determinant of mechanical ventilation. The aim of this study was to evaluate a simple method for measuring the expiratory time constant in ventilated subjects. DESIGN: Prospective study using a lung simulator and ten dogs. SETTING: University hospital. SUBJECTS: Commercially available lung simulator and ten greyhound dogs. INTERVENTIONS: Different expiratory time constants were set on the lung simulator. In the dogs, the endotracheal tube was clamped to increase airways resistance by 22.5 cm H2O/(L/sec) and the lungs were injured with hydrochloric acid to decrease total respiratory compliance by 16 mL/cm H2O. This procedure resulted in a wide range of expiratory time constants. MEASUREMENTS AND MAIN RESULTS: Pneumotachography was used to measure flow and volume. The ratio of exhaled volume and peak flow was calculated from these signals, corrected for the limited exhalation time yielding the "calculated expiratory time constant" and compared with the actual expiratory time constant. The typical error was +/- 0.19 sec for the lung simulator and +/- 0.15 sec for the dogs. CONCLUSIONS: The volume and peak flow corrected for limited exhalation time is a good estimate of the total expiratory time constant in passive subjects and may be useful for the titration of mechanical ventilation.

Airway Resistance

[Nitric oxide inhalation test in patients with ARDS: preliminary assessment of the effect on arterial oxygenation].

OBJECTIVE: Inhaled NO can improve arterial oxygenation in ARDS. We evaluated the incidence and the magnitude of this effect during a short test of NO inhalation. This was performed in 24 consecutive mechanically ventilated patients with ARDS in order to assess the interest of NO for the therapy of hypoxemia in each case. DESIGN: Retro-spective study. SETTING: ICU in a University Hospital. PATIENTS: 24 hypoxemic patients with ARDS (lung injury score, LIS, 2.9 +/- 0.52), treated with conventional mechanical ventilation. INTERVENTIONS: Tests were performed using a mean inhalatory NO dose of 14 +/- 6 ppm. A pair of PaO2 data was obtained for each patient from two blood gas analysis, performed one just before and one 15 min after the start of NO inhalation. RESULTS: The mean baseline PaO2 was 76 +/- 21 mmHg and significantly increased with NO inhalation to 97 +/- 34 mmHg (p = 0.0001). Considering the individual response to NO, patients were arbitrarily classified as responders when the increase of PaO2 from baseline was > or = 10%. Sixteen patients were identified as responders, showing a mean increase of PaO2 from baseline by 40 +/- 26%, while the remaining 8 patients resulted non responders (mean change 1 +/- 5.7%). In no case a clinically significant decrease of PaO2 was observed during NO inhalation. The response to NO did not correlate with the LIS (r = 0.019) and with baseline PaO2 (r = 0.31). CONCLUSIONS: Inhaled NO doses of 14 +/- 6 ppm increased on the average the PaO2 in a group of ARDS patients, the individual response being however variable. A deterioration of arterial oxygenation was never observed. Even if the criteria for predicting the response to NO still remain to be defined, a short test seems to reliably provide a first estimate of the magnitude of the response.

Administration, Inhalation

Whole lung lavage.

Bronchoalveolar lavage is universally employed as a diagnostic procedure and also, both in the massive (whole lung) and limited forms, has important therapeutic applications. Since the second half of the century whole lung lavage (WLL) has been applied in patients with pulmonary alveolar proteinosis and has proved successful. The procedure has improved over the years in terms of safety and efficacy, whilst indications and methods for WLL are not yet completely defined and standardized. In this paper, we summarize the history of the development of WLL, and describe the procedure used eight times in five patients in our department.

Adult

Body iron status in critically ill patients: significance of serum ferritin.

Serial measurements of blood haemoglobin, serum iron, serum transferrin, total iron-binding capacity, transferrin per cent saturation and serum ferritin were determined in 51 post-operative critically ill patients to investigate body iron status in severely stressed patients. The results showed decreased blood haemoglobin, serum iron, serum transferrin and transferrin saturation compared to an increase in serum ferritin levels. These results indicate that there is inadequate availability of iron to tissues (secondary to rearrangement of body iron to the advantage of the iron storage compartment), which is often present in severely critically ill patients. A positive correlation was found between the initial (ferritin) levels and SAPS (r = 0.41, p less than 0.01). In addition, the increase of ferritin concentration parallels a worsening of the clinical status in severely ill patients. This is due to enhanced release by the macrophage system. From this, we consider serum ferritin as an acute-phase protein and a useful marker of the severity of the clinical status. It appears to be useful in predicting the patient's outcome, but is not reliable in evaluating iron stores in stressed patients.

Adolescent

Bedside evaluation of right ventricular performance using a rapid computerized thermodilution method.

In 34 patients, we assessed the reproducibility and accuracy of a new, computerized, thermodilution method that determines right ventricular ejection fraction (RVEF). We compared the results from this new algorithm with simultaneous results from the conventional plateau thermodilution method and from both first-pass and gated nuclear techniques. Using this new method improved the reproducibility of thermal determinations of RVEF. Although the thermal values were lower, the correlations between thermal and nuclear measurements were close [r = .92 (first-pass technique), r = .81 (gated technique)]. This new method seems particularly appropriate for serial monitoring of RV performance.

Adult

A continuous flow intermittent mandatory ventilation with continuous positive airway pressure circuit with high-compliance reservoir bag.

Unstable inspiratory pressure may reduce the benefits of intermittent mandatory ventilation and impose a greater work of breathing than some patients can tolerate. The authors evaluated a continuous flow intermittent mandatory ventilation with continuous positive airway pressure apparatus provided with a 10-L high compliance reservoir bag, separated from the ventilator circuit by a one-way valve. A pulmonary simulator was tested to generate a wide range of inspiratory peak flow rates. Pressures and flow rates were examined in different sections of the system, using PEEP levels up to 15 mm Hg and different fresh gas flow rates. The circuit offers many advantages, particularly considering the low inspiratory pressure drop and the low fresh gas flow rates needed for optimal function.

Equipment Design

Functional evaluation of a CPAP circuit with a high compliance reservoir bag.

Continuous positive airway pressure is widely used in the treatment of ARF and an evaluation of the systems is important. The authors used an artificial model to test a continuous flow system with a high compliance reservoir bag. The results confirm that the system is effective in maintaining positive pressure stability within a wide range of inspiratory peak flow rates, even when a low fresh gas flow rate is employed. Nevertheless, rebreathing of expired gases is possible and may be noticeable at high expiratory flow rates, caused by the high compliance of the reservoir bag.

Acute Disease