Among the different species of flower beetles, there is one of particular notoriety: the Goliath beetle. This large insect can grow up to 11 cm long and is well-known for its distinctive black and white shield. In this paper, we focus on a particular species: (Moser, 1909). We investigated the variations in properties of both the black and white parts of the upper face of ; more precisely, the variation in surface properties with respect to the wettability of these two parts. This work reveals that the white parts of the shield have a higher hydrophobic character when compared to the black regions. While the black parts are slightly hydrophobic ( = 91 ± 5°) and relatively smooth, the white parts are highly hydrophobic ( = 130 ± 3°) with strong water adhesion (parahydrophobic); similar to the behavior observed for rose petals. Roughness and morphology analyses revealed significant differences between the two parts, and, hence, may explain the change in wettability. The white surfaces are covered with horizontally aligned nanohairs. Interestingly, vertically aligned microhairs are also present on the white surface. Furthermore, the surfaces of the microhairs are not smooth, they contain nanogrooves that are qualitatively similar to those observed in cactus spines. The nanogrooves may have an extremely important function regarding water harvesting, as they preferentially direct the migration of water droplets; this process could be mimicked in the future to capture and guide a large volume of water.
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http://dx.doi.org/10.3390/biomimetics3020006 | DOI Listing |
J Coll Physicians Surg Pak
January 2025
Department of Microbiology, Armed Forces Institute of Pathology / National University of Medical Sciences, Rawalpindi, Pakistan.
Objective: To evaluate Chicago Sky Blue (CSB) stain, Calcofluor white (CW) stain, and Potassium Hydroxide (KOH) mount for rapid diagnosis of dermatomycosis, using fungal culture as the gold standard.
Study Design: Cross-sectional analytical study. Place and Duration of the Study: This study was conducted in the Department of Microbiology, Armed Forces Institute of Pathology / National University of Medical Sciences, Rawalpindi, Pakistan, from July 2023 to February 2024.
BMJ Open
January 2025
Population Health Sciences Institute, Newcastle University, Newcastle upon Tyne, UK.
Objectives: Explore, understand and analyse how women with pre-existing diabetes can be better supported during the inter-pregnancy interval-the time after a baby loss and before a subsequent pregnancy.
Design: Qualitative, semi-structured online interviews took place between November 2020 and July 2021. Data were analysed using Reflexive Thematic Analysis.
BMC Med Educ
January 2025
Emergency Obstetric Care and Quality of Care Unit, Liverpool School of Tropical Medicine (LSTM), Liverpool, UK.
Background: Significant differences in outcomes for mothers and babies following obstetric surgical interventions between low- and middle-income countries and high-income settings have demonstrated a need for improvements in quality of care and training of obstetric surgical and anaesthetic providers. To address this, a five-day face-to-face training intervention was developed. When roll-out was disrupted by the COVID-19 pandemic, the course was redesigned for delivery by blended learning.
View Article and Find Full Text PDFNephrol Dial Transplant
November 2024
Department of Medicine and Nephrology, Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán, Mexico City, Mexico.
Background And Hypothesis: Daprodustat, an oral hypoxia-inducible factor prolyl hydroxylase inhibitor, is approved for treatment of anemia in dialysis patients with CKD in some parts of the world. This subgroup analysis examined the efficacy and safety of daprodustat versus darbepoetin alfa in patients with anemia of CKD undergoing peritoneal dialysis (PD).
Methods: ASCEND-D (NCT02879305) was an open-label, Phase 3 trial; patients with CKD were randomized to daprodustat daily and epoetin alfa (HD patients) or darbepoetin alfa (PD patients).
Sci Rep
January 2025
Department of Computer Science, Ubicomp Lab, Marquette University, Milwaukee, WI, USA.
White blood cells (WBCs), also known as leukocytes, are one of the most significant parts of the immune system. They generate antibodies, protect the body from illnesses, and heal wounds. Accurate estimation of WBCs is key for diagnosing cancer, infections, leukemia, lymphoma, and other diseases.
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