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Chronic lung diseases such as asthma, chronic obstructive pulmonary disease (COPD), and idiopathic pulmonary fibrosis (IPF) are all characterized by structural changes of the airways and/or lungs that limit airflow and/or gas exchange.
Asthma is a chronic inflammatory disease characterized by structural changes of the airways that may be associated with persistent symptoms and reduced lung function.
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Chronical inflammation leads to structural changes of the airway architecture.
Reasons include obstructing internal structures (e.g., granulations or tumor), external compression (e.g., lymph nodes or atypical vascular structures), or functional-dynamic changes of the airway wall resulting in tracheomalacia [1, 2].
Under conditions with high resistance in pressure-regulated ventilation with the Oxylog 3000™, an oscillatory flow during inspiration produced rapid changes of the airway pressure.
Our findings suggest that BWT of the airway appears in patients with SII and that these reversible changes of the airway wall may cause deterioration of respiratory function and refractory airway obstruction.
Military wintertime training is associated with significant cold exposure and heavy physical exercise which could result in aggravated airway cooling and functional changes of the airway epithelia favouring influenza virulence and other respiratory tract infections [ 15].
Thus, the goal of the present study was to investigate the effect of aerosolised honey on histopathological changes of the airway in a rabbit model of ovalbumin (OVA -induced chrOVA -inducedsease, whichroniccs the human condition of asthma.
However, there have been no comprehensive studies examining the effect of nebulised honey (i.e., aerosolised) on pathophysiological changes of the airway tissues in association with asthma-related features such as on goblet cell hyperplasia, mucus over-production, and inflammatory cell responses.
If the surgeons understand the volume and width change of the airway between preoperative and postoperative, respiratory complications such as sleep apnea and snoring can be prevented [23].
Bronchial wall thickening in smoke-inhalation injury is a reversible change of the airway wall that may cause deterioration of respiratory function and refractory airway obstruction.
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