Multiscale CT-Based Computational Modeling of Alveolar Gas Exchange during Artificial Lung Ventilation, Cluster (Biot) and Periodic (Cheyne-Stokes) Breathings and Bronchial Asthma Attack
نویسندگان
چکیده
An airflow in the first four generations of the tracheobronchial tree was simulated by the 1D model of incompressible fluid flow through the network of the elastic tubes coupled with 0D models of lumped alveolar components, which aggregates parts of the alveolar volume and smaller airways, extended with convective transport model throughout the lung and alveolar components which were combined with the model of oxygen and carbon dioxide transport between the alveolar volume and the averaged blood compartment during pathological respiratory conditions. The novel features of this work are 1D reconstruction of the tracheobronchial tree structure on the basis of 3D segmentation of the computed tomography (CT) data; 1D−0D coupling of the models of 1D bronchial tube and 0D alveolar components; and the alveolar gas exchange model. The results of our simulations include mechanical ventilation, breathing patterns of severely ill patients with the cluster (Biot) and periodic (Cheyne-Stokes) respirations and bronchial asthma attack. The suitability of the proposed mathematical model was validated. Carbon dioxide elimination efficiency was analyzed in all these cases. In the future, these results might be integrated into research and practical studies aimed to design cyberbiological systems for remote real-time monitoring, classification, prediction of breathing patterns and alveolar gas exchange for patients with breathing problems.
منابع مشابه
Basic oscillating mechanism of Cheyne-Stokes breathing.
Cheyne-Stokes breathing has been induced in 30 dogs by inserting a circulatory delay system between the heart and the brain to prolong the transit time of blood from the lungs to the brain. The duration of each cycle of Cheyne-Stokes breathing increased proportionately with the volume of the delay system and decreased as the perfusion pressure to the brain was increased. Periodic variations in ...
متن کاملPulmonary Artery Agenesis with Bronchial Asthma
Unilateral Pulmonary Artery Agenesis (UPAA) is a rare congenital anomaly during the 4 th week of gestational age. It is defined as an absence of pulmonary parenchyma and its supporting artery. A 9-year-old girl was admitted to our hospital because of chronic cough. Chest examination showed a decrement in lung sound of right hemi-thorax with expiratory wheeze. Chest radiography (CXR) revealed a...
متن کاملSimplified models for gas exchange in the human lungs.
This paper presents a hierarchy of models with increasing complexity for gas exchange in the human lungs. The models span from a single compartment, inflexible lung to a single compartment, flexible lung with pulmonary gas exchange. It is shown how the models are related to well-known models in the literature. A long-term purpose of this work is to study nonlinear phenomena seen in the cardio-r...
متن کاملMathematical Models of Cheyne-Stokes Breathing in understanding Cardiovascular and Respiratory Disorders
The interaction between the cardiovascular system and the respiratory system is complicated and may be used for the rehabilitation of the carotid artery disease. Periodic breathing is an unusual form of breathing with oscillations in minute ventilations and with repetitive apneas or near apneas. Cheyne-Stokes like breathing during sleep may be associated with obstructive sleep apnea (OSA) in so...
متن کاملDo unapposed stent struts endothelialise? In vivo demonstration with optical coherence tomography.
1 Piepoli MF, Ponikowski PP, Volterrani M, et al. Aetiology and pathophysiological implications of oscillatory ventilation at rest and during exercise in chronic heart failure. Do Cheyne and Stokes have an important message for modern-day patients with heart failure? Eur Heart J 1999;20:946–53. 2 Vangesselen S, Weymans M, Mertens L, et al. A Java software for calculating mean breath-by-breath v...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Computation
دوره 5 شماره
صفحات -
تاریخ انتشار 2017