After myocardial infarction in the late period of recovery (13-25 months p. infarctum) pulmonary gas exchange in 23 patients was measured besides as hemodynamic parameters during exercise. The parameters take a course similar to that of subjects without lung and heart diseases. Arterial blood gas tensions (Pa02, Paco2) remain unchanged compared to resting values. Alveolar ventilation did show no difference in any of the patients. Minute ventilation VE, the various dead spaces, alveolar-arterial gas differences (AaDo2, aADco2) and ventilation-perfusion ratios of the whole lung VA/Q suggest however that these parameters show different courses according to the physical capacity of the patients. As the physical capacity of each patient is due to different cardiac functions taken by cardiac output and mixed venous blood gas tensions alterations of pulmonary gas exchange seemed to be dependent on the respective left ventricular function of the heart. Of the twenty-three patients, twelve with cardiac failure under exercise showed the most pronounced alterations in pulmonary gas exchange. Therefore, the different physical work capacity of the patients are determined only by cardiac function. No limitation of the productivity due to impeded lung function could be proved.
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Photosynthetica
January 2025
Plant Physiology Sector, State University of Norte Fluminense, Center for Sciences and Agricultural Technologies (CCTA), Avenida Alberto Lamego, 2000, 28015-620, Campos dos Goytacazes, RJ, Brazil.
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View Article and Find Full Text PDFPhotosynthetica
January 2025
University of Reims Champagne-Ardenne, INRAE, RIBP, USC 1488, 51100 Reims, France.
High temperatures severely affect plant growth and development leading to major yield losses. These temperatures are expected to increase further due to global warming, with longer and more frequent heat waves. Rhamnolipids (RLs) are known to protect several plants against various pathogens.
View Article and Find Full Text PDFPhysiol Plant
January 2025
Institute of Environment, Department of Biological Sciences, Florida International University, Miami, FL, USA.
The leaf economics spectrum (LES) characterizes a tradeoff between building a leaf for durability versus for energy capture and gas exchange, with allocation to leaf dry mass per projected surface area (LMA) being a key trait underlying this tradeoff. However, regardless of the biomass supporting the leaf, high rates of gas exchange are typically accomplished by small, densely packed stomata on the leaf surface, which is enabled by smaller genome sizes. Here, we investigate how variation in genome size-cell size allometry interacts with variation in biomass allocation (i.
View Article and Find Full Text PDFJ Magn Reson
January 2025
Center for Pulmonary Imaging Research (CPIR), Division of Pulmonary Medicine Cincinnati Children's Hospital Medical Center Cincinnati OH USA; Department of Pediatrics, University of Cincinnati OH USA; Department of Biomedical Engineering, University of Cincinnati OH USA; Imaging Research Center (IRC), Department of Radiology Cincinnati Children's Hospital Medical Center Cincinnati OH USA. Electronic address:
Harmonizing and validating Xe gas exchange imaging across multiple sites is hampered by a lack of a quantitative standard that 1) displays the unique spectral properties of Xe observed from human subjects in vivo and 2) has short enough T times to enable practical imaging. This work describes and demonstrates the development of two dissolved-phase, thermally polarized phantoms that mimic the in-vivo, red blood cell and membrane resonances of Xe dissolved in human lungs. Following optimization, combinations of two common organic solvents, acetone and dimethyl sulfoxide, resulted in two in-vivo-like dissolved-phase Xe phantoms yielding chemical shifts of 212.
View Article and Find Full Text PDFInt J Exerc Sci
December 2024
Department of Kinesiology, California State Polytechnic University, Humboldt, Arcata, CA, USA.
High-incline walking is a relatively new trend with little comparative information. This study compared physiological and psychological differences between high-incline walking at 20% grade (HIW) and level-grade jogging (LGJ) at isocaloric intensities in young adults. Twenty-two participants (M = 11, F = 11) aged 19-31 years completed the study.
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