Evaluation of Role of Fiberoptic Bronchoscopy in Patients With Lower Respiratory Tract Infection in Respiratory Intensive Care Unit of Assiut University Hospital
试验速览
- 阶段
- 不适用
- 入组人数
- 100
- 主要终点
- Antimicrobial resistance pattern
研究概览
简要总结
Evaluate the diagnostic and therapeutic role of fiberoptic bronchoscopy in management of patients with lower respiratory tract infection in Respiratory Intensive Care Unit of Assiut University Hospital
详细描述
Since its introduction in daily medical practice in the late 20th century, fiberoptic bronchoscopy (FOB) has had an increasing role in the everyday life of the pulmonologist. Not only for diagnosis, but also for therapeutic interventions, it has achieved widespread use and is now performed in a diversity of clinical scenarios. For several reasons, from easy performance in trained hands to versatility, diagnostic reliability, and safety, flexible bronchoscopy is now widely accepted and increasingly used in the management of critically ill patients.
A wide range of indications exists for FOB in the intensive care unit (ICU). Most correspond to basic bronchoscopy with exploration, lavage, brushing, and forceps sampling as the primary used techniques. It is recommended that intensive care units account for the facility to perform urgent and timely FOB for a range of therapeutic and diagnostic purposes. Critical care settings demand that respiratory system problems be resolved and clinical decisions be made in a timely manner.
Although one can generally group the indications for bronchoscopy into diagnostic and therapeutic, there are circumstances in which the examination serves both purposes. The main indications for flexible bronchoscopy in the intensive care unit are the visualization of the airways, sampling for diagnostic purposes and management of the artificial airways.
Respiratory infections account for significant morbidity, mortality, and healthcare-related expenditure in patients admitted to the Intensive Care Unit (ICU). Respiratory infections account for 3.5 million deaths worldwide and 79 million loss of disability-adjusted life-years.
The bacteriological profile of pulmonary infections varies within the same country, with time due to differences in the frequency of use of antibiotics, environmental factors, and ventilation in the critically ill patients. Likewise, an expanded variety of emerging pathogens provide challenges for the microbiology laboratory. It has been reported clinical microbiologists in diagnostic laboratories have a critical role to play in the diagnosis and management of lower respiratory tract infection (LRTI) as overtreatment of acute uncomplicated pulmonary infections led to unparalleled levels of multi drug resistance among pathogens. Since the etiological agents of pulmonary infections (LRTI) cannot be determined clinically, microbial investigation is required for both treatment and management of individual case and for epidemiological purposes. Bronchoalveolar lavage (BAL) is an ideal sample that allows the recovery of pathogens cellular and non-cellular components from the epithelial surface of lower respiratory tract. Bronchoalveolar lavage has improved sensitivity and specificity of diagnostic techniques in diagnosis of pulmonary infection. It is increasingly utilized as diagnostic tool though in the past it remained as investigative and research tool as the sputum culture yields diagnosis in fewer than 50% of patients with pulmonary infections. Early diagnosis and proper choice of antimicrobials is crucial for management of these patients. The advent of bronchoscopy and quantitative analysis of BAL have improved sensitivity and specificity in diagnosis of pulmonary infections.
研究设计
- 研究类型
- Observational
- 观察模型
- Cohort
- 时间视角
- Prospective
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Adult patients > 18 years old in R.I.C.U who are on mechanical ventilator or high flow nasal cannula oxygen with lower respiratory tract infection or who show atelectasis on CXR in which the standard therapy failed will be included in this study
排除标准
- •Severely hypoxemic patients under high-FiO2 support and/or high PEEP, if the patient is unable to keep oxygen saturation >90% with an FiO2 of 0.9-1.0 or a PaO2/FiO2 ratio of <100, Severe acidosis, Ph<7,2
- •Presence of pneumothorax
- •Active bronchospasm.
- •Patients with acute coronary problems, such as acute arrhythmia, acute myocardial infarction or ongoing hemodynamic instability, under vasoactive therapy.
- •patients with known intracranial hypertension
- •patients have coagulation abnormalities, such as thrombocytopenia or elevated prothrombin time
结局指标
主要结局
Antimicrobial resistance pattern
时间窗: 1 year
isolated organism and drug sensitivity test by Automated Vitek2 Compact(BioMérieux, France).
次要结局
- pathogen identification(1 year)
- recovering an array of microorganisms(1 year)
研究者
Yara Yasser Omar
Chest Specialist in Assiut University Hospital
Assiut University
