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Titlebook: Bioengineering Approaches to Pulmonary Physiology and Medicine; Michael C. K. Khoo Book 1996 Springer Science+Business Media New York 1996

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期刊全稱Bioengineering Approaches to Pulmonary Physiology and Medicine
影響因子2023Michael C. K. Khoo
視頻videohttp://file.papertrans.cn/187/186918/186918.mp4
圖書(shū)封面Titlebook: Bioengineering Approaches to Pulmonary Physiology and Medicine;  Michael C. K. Khoo Book 1996 Springer Science+Business Media New York 1996
影響因子As the current millennium steams towards a close, one cannot help but look with amazement at the incredible amount of progress that has been achieved in medicine in just the last few decades. A key contributing factor to this success has been the importation and blending of ideas and techniques from disciplines outside the traditional borders of medical science. In recent years, the most well-known example is the cross-pollination between molecular biology and medicine. Advances driven by this potent combination have spawned the vision of a future where cures based on gene therapy become commonplace. Yet, as we continue our search for "magic bullets" in the quest to eradicate disease, it important to recognize the value of other less-heralded interdisciplinary efforts that have laid a large part of the foundation of present-day medicine. In pulmonary medicine, the contribution from the bioengineers (a diverse collection of individuals cross-bred to various degrees in mathematical modeling and experimental physiology) has been larger and more sustained than in many other medical specialties. It is easy to point to the vast array of ventilators, blood-gas analyzers, oximeters, pulmon
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https://doi.org/10.1007/978-3-658-16568-0d synaptic interactions have been developed in computational ne uroscience over the past several decades[.]–[.], and the availability of software has now made computer simulation of these realistic types of models practical [.]–[.]. In this chapter, I outline this approach and provide examples of ou
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https://doi.org/10.1007/978-3-8349-8161-5espiratory pattern variability. This report will discuss this more fundamental question and compare several methods for quantifying overall breath to breath variability in breathing pattern using a specific example.
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