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X B Xie

Publications and source records attributed to X B Xie.

3 recordsLinked to original sources

Modeling elastic wave forward propagation and reflection using the complex screen method.

Formulation for calculating forward propagation and reflection in a 3D elastic structure based on the complex-screen method is given in this paper. The calculation of reflections is formulated based on the local Born approximation. When using a small angle approximation, the backscattering operator reduces to a screen operator which is similar to the forward screen propagator. Combining the forward propagator and backscattering operator together, the new method can properly handle the multiple forward scattering and single backscattering in a 3D heterogeneous model. Using a dual-domain technique, the new method is highly efficient in CPU time and memory savings. For models where reverberation and resonance scattering can be neglected, this method provides a fast and accurate algorithm. Synthetic seismograms for two-dimensional elastic models are calculated with this method and compared with those generated by the finite-difference method. The results show that the method works well for small to medium scattering angles and medium velocity contrasts.

Journal Article↗

[Application of bedside monitoring with arterized capillary blood, transcutaneous and end tidal carbon dioxide during mechanical ventilation].

Arterial blood, arterialized capillary blood, transcutaneous, end tidal carbon dioxide pressure (PaCO2, PcCO2, PtcCO2, PetCO2) and physiological respiratory deadspace to tidal volume ratio (VD/VT) were observed in 12 patients with chronic obstructive pulmonary disease (group A), 17 postoperative patients of cardiac surgery (group B), and 16 healthy subjects (group C) under three mechanical ventilatory patterns. PcCO2, PtcCO2 and PetCO2 were found to correlate well with PaCO2 (r = 0.99, 0.97 and 0.88 respectively); P(a-et) CO2 correlated with age (year) in group B and C (r = 0.77 and 0.76), and all P(a-et) CO2 measurements of each of three groups highly correlated with VD/VT (r = 0.96 0.91 and 0.87 for group A,B,C respectively). The results suggested that the trend of PaCO2 variation can be deduced from PcCO2, PtcCO2 and PetCO2 with fair accuracy under various ventilatory patterns in subjects with stable circulatory function, and P(a-et) CO2 is a simple quantitative index for evaluating physiological deadspace.

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