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Studying the relationship between Moso bamboo sap flow and environmental factors is essential for understanding the water transpiration patterns of this species. Traditional methods often rely on correlation analysis, but correlation does not imply causation. To elucidate the underlying mechanisms of how major environmental factors influence Moso bamboo sap flow, we analyzed the causality between them. First, the Fast Causal Inference algorithm was used to explore non-temporal causal relationships. Subsequently, the Latent Peter-Clark Momentary Conditional Independence algorithm was employed to further analyze the temporal causal effects. We found causal relationships among factors with low gray correlation coefficients. Besides, illumination, air, and soil temperature promote the density increase of sap flow, while carbon dioxide concentration, air humidity, and soil temperature inhibit bamboo sap flow density overall. Among these factors, illumination exhibits the longest lagged causal effect approximately around 80 minutes, whereas carbon dioxide concentration and soil humidity can quickly affect the sap flow density, with approximately 20 minutes. The study presents a novel methodological approach to analyze the complex interplay between environmental factors and sap flow, providing a more explanatory and logical framework. This study offers a novel methodological framework for disentangling the complex interactions between environmental variables and sap flow, providing deeper insights into the dynamic processes driving Moso bamboo water use. The findings contribute to advancing plant physiology and environmental science, while opening avenues for future research in related fields.
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http://dx.doi.org/10.3934/mbe.2025087 | DOI Listing |
Math Biosci Eng
July 2025
School of Information and Artificial Intelligence, Anhui Agricultural University, Hefei 230036, China.
Studying the relationship between Moso bamboo sap flow and environmental factors is essential for understanding the water transpiration patterns of this species. Traditional methods often rely on correlation analysis, but correlation does not imply causation. To elucidate the underlying mechanisms of how major environmental factors influence Moso bamboo sap flow, we analyzed the causality between them.
View Article and Find Full Text PDFNew Phytol
August 2025
Department of Forest Science, Faculty of Agriculture and Forestry, University of Helsinki, Helsinki, 00790, Finland.
The Granier-type thermal-dissipation method (TDM) is the most widely used sap-flow technique. However, its original calibration coefficients often underestimate high flow rates, limiting their generality. We derived TDM coefficients (scaling factors and exponents) for 31 species, including 18 diffuse-porous, two ring-porous, six palms, and five lianas, representing a broad range of wood properties.
View Article and Find Full Text PDFClin J Gastroenterol
August 2025
Department of HPB Surgery and Liver Transplantation, Institute of Liver and Biliary Sciences (ILBS), New Delhi, India.
Background: Acute pancreatitis (AP) is a potentially life-threatening inflammatory condition with a wide clinical spectrum. In severe acute pancreatitis (SAP), impaired pancreatic microcirculation contributes to necrosis and multiorgan dysfunction. Despite advances in supportive care, therapeutic strategies that directly target pancreatic perfusion remain limited.
View Article and Find Full Text PDFAnal Methods
August 2025
Department of Pharmacy, Peking University Third Hospital, 49 North Garden Road, Haidian District, Beijing, 100191, China.
In end-stage osteoarthritis, total joint arthroplasty (TJA) represents the definitive therapeutic intervention. Cefuroxime, a second-generation cephalosporin, exhibits a broad spectrum of activity against both Gram-negative and Gram-positive microorganisms, making it a cornerstone of surgical antimicrobial prophylaxis (SAP) to mitigate prosthetic joint infection (PJI) risk. However, the escalating demand for revision arthroplasties has paralleled rising implant-associated infections, necessitating target-site pharmacokinetic optimization to ensure effective antibiotic exposure at the bone-implant interface.
View Article and Find Full Text PDFPlant Biol (Stuttg)
August 2025
Research Group Modeling of Biogeochemical Systems, Faculty of Environment and Natural Resources, University of Freiburg, Freiburg, Germany.
Severe droughts affect vegetation through several processes, such as hydraulic failure, early leaf senescence, depletion of carbon reserves, and reduced growth. These, in turn, can delay drought recovery and influence ecosystem functioning beyond the drought duration. The goal of this study is to investigate the direct response and physiological recovery of a Mediterranean oak (Quercus ilex L.
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