Malnutrition and muscle wasting are frequent complications in patients with chronic obstructive pulmonary disease (COPD) experiencing acute exacerbations. In critically ill patients who require invasive mechanical ventilation, nutritional depletion and ventilator-induced diaphragmatic dysfunction can complicate recovery and prolong intensive care unit (ICU) stays. The purpose of this prospective observational cohort study is to evaluate nutritional status and diaphragmatic structure in elderly patients (aged 60 years and older) with COPD who require invasive mechanical ventilation for at least 48 hours. Participants will undergo bedside assessments, including: * Calculation of clinical risk scores within the first 24 hours of ICU admission: modified Nutrition Risk in the Critically Ill (mNUTRIC), Sequential Organ Failure Assessment (SOFA), and Acute Physiology and Chronic Health Evaluation II (APACHE II). * Anthropometric measurements: mid-upper arm circumference (MUAC) and calf circumference (CC) measured at baseline, day 7, and the day of weaning. * Diaphragmatic ultrasonography: point-of-care ultrasound to measure diaphragm thickness at end-expiration and end-inspiration at baseline, day 7, and during weaning trials. The main goal is to evaluate the relationship between nutritional risk (assessed by the mNUTRIC score) and diaphragmatic thickness, and to determine how these parameters correlate with clinical outcomes such as weaning success, total duration of mechanical ventilation, ICU length of stay, and ICU mortality.
Malnutrition is a prevalent comorbidity in chronic obstructive pulmonary disease (COPD) associated with lower exercise tolerance, decreased pulmonary function, and increased mortality. In the intensive care unit (ICU), acute exacerbations requiring invasive mechanical ventilation frequently lead to accelerated muscle wasting and ventilator-induced diaphragmatic dysfunction. Combining bedside clinical risk scoring, peripheral anthropometry, and diaphragmatic ultrasonography provides a comprehensive approach to evaluating nutritional and functional reserve. Eligible patients aged 60 years or older admitted with acute exacerbations of COPD requiring invasive mechanical ventilation for at least 48 hours will be prospectively enrolled. Clinical and Severity Scoring (Day 1): Within the first 24 hours of admission and ventilation initiation, baseline demographic data, arterial blood gases, and severity scores will be recorded. Scores include the modified Nutrition Risk in the Critically Ill (mNUTRIC; range 0-9, where ≥ 5 defines high nutritional risk), Sequential Organ Failure Assessment (SOFA; range 0-24), and Acute Physiology and Chronic Health Evaluation II (APACHE II; range 0-71). Anthropometric Measurements: Mid-upper arm circumference (MUAC) and calf circumference (CC) will be performed by a single investigator using a non-stretchable measuring tape recorded to the nearest 0.1 cm. Values will be obtained at baseline (within 24 hours), day 7 (or at extubation/discharge if earlier), and on the day of weaning. Diaphragmatic Ultrasonography: Bedside point-of-care ultrasound using a high-frequency linear probe (7-13 MHz) will evaluate the diaphragm in the zone of apposition at the 8th-9th intercostal space on the right hemithorax. Diaphragm thickness at end-expiration (Tdi,ee) and end-inspiration (Tdi,pi) will be measured in B-mode/M-mode (averaging three consecutive cycles) at baseline, day 7, and during spontaneous breathing trials/weaning attempts.
Study Type
OBSERVATIONAL
Enrollment
120
Baseline End-Expiratory Diaphragmatic Thickness
Diaphragm thickness measured in millimeters (mm) at end-expiration (Tdi,ee) using B-mode/M-mode bedside ultrasonography in the zone of apposition (8th-9th intercostal space between the anterior and mid-axillary lines). The average of three consecutive measurements will be reported and evaluated in relation to the baseline modified NUTRIC score (scores range from 0 to 9, where scores ≥ 5 indicate high nutritional risk).
Time frame: Baseline
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