A small (~10 cm) male pufferfish (Torquigener albomaculosus) builds a large (~2 m) sandy nest structure, resembling a mysterious crop circle, to attract females. The circle consists of radially arranged deep ditches in the outer ring region, and maze-like shallow ditches in the central region. The configuration is geometrical. Here, we examined the process of the outer ring construction, and extracted the 'rules' followed by the pufferfish. During construction, the pufferfish repeatedly excavates ditches from the outside in. Generally, excavation starts at lower positions, and occurs in straight lines. The entry position, the length, and the direction of each ditch were recorded. A simulation program based on these data successfully reproduced the circle pattern, suggesting that the complex circle structure can be created by the repetition of simple actions by the pufferfish.
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http://dx.doi.org/10.1038/s41598-018-30857-0 | DOI Listing |
Front Mol Biosci
January 2025
Department of Molecular Biosciences, School of Veterinary Medicine, University of California Davis, Davis, CA, United States.
JBI Evid Synth
January 2025
The University of West London Centre for Evidence-Based Healthcare: A JBI Centre of Excellence, College of Nursing, Midwifery and Healthcare, University of West London, London, United Kingdom.
Objective: The objective of this guidance paper is to describe data transformation involving qualitization, including when and how to undertake this process, and to clarify how it aligns with data extraction in order to expand on the current guidance for JBI convergent integrated mixed methods systematic reviews (MMSRs).
Introduction: The convergent integrated approach to MMSRs involves combining extracted data from both quantitative studies (including the quantitative components of mixed methods studies) and qualitative studies (including the qualitative components of mixed methods studies). This process requires data transformation, which can occur either by converting qualitative data into quantitative data (ie, quantitizing) or converting quantitative data into qualitative data (ie, qualitizing).
Biosens Bioelectron
January 2025
Department of Endocrinology, Institute of Endocrine and Metabolic Diseases, The First Affiliated Hospital of USTC, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei, 230001, China; Deep Space Exploration Laboratory, University of Science and Technology of China, Hefei, 230026, China; Key Laboratory of Precision and Intelligent Chemistry/School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, Anhui, 230026, China. Electronic address:
Accurate and rapid monitoring of the glucose concentration in blood is essential for the prevention and treatment of diabetes. However, existing glucose sensors still have room for improvement in terms of sensitivity, selectivity, and stability. Benefiting from the fully exposed metal sites and uniform coordination environment, single-atom catalysts (SACs) have exhibited unique electrochemical sensing performances and received extensive attention in blood glucose detection.
View Article and Find Full Text PDFCBE Life Sci Educ
March 2025
Department of Sociology, University of Utah, 380 S 1531 E, #301, Salt Lake City, UT 84112.
There are serious concerns about mental health on college campuses. Depression negatively impacts college student success. Women and transgender/gender-nonconforming students suffer from depression at higher rates than men.
View Article and Find Full Text PDFNano Lett
January 2025
Institute for Experimental and Applied Physics, University of Regensburg, 93040 Regensburg, Germany.
Understanding and controlling the electronic properties of two-dimensional materials are crucial for their potential applications in nano- and optoelectronics. Monolayer transition metal dichalcogenides have garnered significant interest due to their strong light-matter interaction and extreme sensitivity of the band structure to the presence of photogenerated electron-hole pairs. In this study, we investigate the transient electronic structure of monolayer WS on a graphene substrate after resonant excitation of the A-exciton using time- and angle-resolved photoemission spectroscopy.
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