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Titlebook: Respiratory Biomechanics; Engineering Analysis Mary A. Farrell Epstein,James R. Ligas Conference proceedings 1990 Springer-Verlag New York,

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Distensibility of the Pulmonary Capillaries. In this model, blood flows in between two membranes and around the posts holding the membranes apart at a sheet thickness h. Because of the distensibility of the pulmonary capillaries, the thickness increases when the transmural pressure (P.), the capillary blood pressure minus the alveolar gas pr
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Pulsatile pulmonary capillary pressure measured with the arterial occlusion techniquet measurement of pressure pulsatility in the lung microvessels has yet to be performed, indirect methods have been used to assess the cyclic variations of the pulmonary capillary pressure during pulsatile perfusion [9, 7]. Recently, it has been suggested [3, 13, 6] that these periodic oscillations c
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hanics held in La Jolla, California from August 3D-September 4, 1990. The respiratory system offers many opportunities to apply the different branches of traditional mechanics. Tissue defonnations and stresses during lung expansion can be analyzed using the principles of solid mechanics. Fluid mecha
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Pulsatile pulmonary capillary pressure measured with the arterial occlusion techniqueould be traced by measuring the vascular occlusion pressures [4, 2, 11, 1] repeatedly during the pulsatile pressure cycle. We describe an application of this technique in isolated left lower lobes (LLL) of canine lungs perfused by means of a pulsatile blood pump.
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Recruitment of Pulmonary Capillariesy is plagued by problems with tissue movement during the cardiorespiratory cycles. Nevertheless, important information has come historically from in vivo microscopy of the lung. The directness of this approach continues to make the technique attractive today.
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Respiratory Fluid Mechanics and Transportthe interaction of respiratory mechanics with gas exchange. A third factor was the ready availability of computational resources through introduction of the microcomputer, and the continued enhancement of execution speed, memory and storage in medium and large-scale computer systems. These permitted
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Current Issues in Understanding Acoustic Impedance of the Respiratory Systems of at least two parameters that are of clinical importance, airway resistance (Raw) and thoracic gas volume which is directly related to alveolar gas compression compliance (Cg). At about the same time that DuBois’ work was published, Otis et al. [18] reported that . in patients with diseases of t
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