Showing 181 - 196 results of 196 for search '"lichens"', query time: 0.05s Refine Results
  1. 181

    Chemical profiling, in-vitro and in silico α-glucosidase inhibition, antioxidant and antibacterial activities of Hypotrachyna cirrhata (Fr.) Hale ex Sipman by Deepa Karki, Anuraj Phunyal, Tika Ram Lamichhane, Asmita Rayamajhi, Asmita Sapkota, Hari Nyaupane, Suraj Shrestha, Achyut Adhikari

    Published 2024-12-01
    “…Natural products are essential in drug development, with increasing interest in lichen-derived compounds for their therapeutic potential. …”
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    Unraveling nitrogen metabolism, cold and stress adaptation in polar Bosea sp. PAMC26642 through comparative genome analysis by Anamika Khanal, Anamika Khanal, So-Ra Han, So-Ra Han, So-Ra Han, Jun Hyuck Lee, Tae-Jin Oh, Tae-Jin Oh, Tae-Jin Oh, Tae-Jin Oh

    Published 2025-01-01
    “…This work aimed to better understand and identify genomic features that enable thiosulfate-oxidizing lichen-associated Bosea sp. PAMC26642 from the Arctic region of Svalbard, Norway, to withstand harsh environments. …”
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  5. 185
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    Visual Gradation of Biological Soil Crust Development: A Simple and Effective Recording Method by Xinyu Zhang, Ping He, Jie Xu

    Published 2025-01-01
    “…Future research should focus on expanding the grading method to include lichen crust, refining it across diverse ecosystems, and exploring the integration of advanced technologies such as hyperspectral imaging and machine learning to automate and improve the classification process. …”
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  7. 187

    Dermoscopy of Vitiligo and Other Hypopigmented Skin Lesions in Indian Patients: A Cross-Sectional Study by Ananya Sharma, Binod Khaitan, Vishal Gupta, M Ramam, Kanika Sahni

    Published 2025-01-01
    “…Methods: A cross-sectional study including 105 vitiligo and 137 other hypopigmented skin lesions, including ash-leaf macules (n=17), nevus depigmentosus (n=16), post-inflammatory hypopigmentation (n=16), pityriasis alba (n=15), pityriasis versicolor (n=14), idiopathic guttate hypomelanosis (IGH) (n=14), lichen sclerosus (n=12), leprosy (n=9) and others. …”
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  8. 188

    The Effect of Oral Potentially Malignant Disorders (OPMD) on Dental Implants Survival—A Systematic Review by Sebahat Kaya, Christian Walter, Aya Khamis, Lena Katharina Müller-Heupt, Stefanie Zimmer, Lorena Cascant Ortolano, Keyvan Sagheb, Bilal Al-Nawas, Eik Schiegnitz

    Published 2025-01-01
    “…<b>Results:</b> The review of studies related to oral lichen planus (OLP) revealed an implant survival rate of 99.3% (50% to 100%) with a mean follow-up of 40.1 months. …”
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    The ratio of COL2A1:COL1A1 in dartos tissue patients with hypospadias by Prahara Yuri, Hotman Christinus, Zico Yusuf Alfarizi, Medina Ndoye

    Published 2025-01-01
    “…Methods We collected 55 samples of dartos tissue, comprising 35 from patients with hypospadias procured from urethroplasty procedures and 20 from patients with phimosis collected during circumcision without any lichen cases at our institution. The gene expression levels of COL1A1 and COL2A1 in the dartos tissue were analyzed using reverse-transcriptase polymerase chain reaction (qPCR). …”
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    Design and fabrication of a device for cleaning greenhouse roofs by Ahmed Amin, Xiaochan Wang, Zhao Lianyuan, Yinyan Shi, Ren Xiaoyan, Mahmoud Okasha, Reda Hassanien Emam Hassanien

    Published 2025-01-01
    “…Dust, algae, mold, lichen, and moss accumulation on the greenhouse cover materials could hinder sun lights and decrease the internal light intensity in greenhouses. …”
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  13. 193

    Ice-nucleating particles active below −24&thinsp;°C in a Finnish boreal forest and their relationship to bioaerosols by F. Vogel, F. Vogel, M. P. Adams, L. Lacher, P. B. Foster, G. C. E. Porter, G. C. E. Porter, B. Bertozzi, B. Bertozzi, K. Höhler, J. Schneider, T. Schorr, N. S. Umo, J. Nadolny, Z. Brasseur, P. Heikkilä, E. S. Thomson, N. Büttner, M. I. Daily, R. Fösig, A. D. Harrison, J. Keskinen, U. Proske, U. Proske, U. Proske, J. Duplissy, J. Duplissy, M. Kulmala, T. Petäjä, O. Möhler, B. J. Murray

    Published 2024-10-01
    “…Using the 6 <span class="inline-formula">min</span> time resolution PINE data, we present several lines of evidence that INPs below <span class="inline-formula">−</span>24 <span class="inline-formula">°C</span> in this location are also from biological sources: (i) an INP parameterization developed for a pine forest site in Colorado, where many INPs were shown to be biological, produced a good fit to our measurements; a moderate correlation of INPs with aerosol concentration larger than 0.5 <span class="inline-formula">µm</span> and the fluorescent bioaerosol concentration; (ii) a negative correlation with relative humidity that may relate to enhanced release of bioaerosol at low humidity from local sources such as the prolific lichen population in boreal forests; and (iii) the absence of correlation with ultra-fine particles (3.5 to 50 <span class="inline-formula">nm</span>), indicating that new particle formation events are not sources of INPs. …”
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    Andreybulakhite, Ni(C<sub>2</sub>O<sub>4</sub>)&thinsp; ⋅ &thinsp;2H<sub>2</sub>O, the first natural nickel oxalate by O. S. Vereshchagin, S. N. Britvin, S. N. Britvin, D. V. Pankin, M. S. Zelenskaya, M. G. Krzhizhanovskaya, M. A. Kuz'mina, N. S. Vlasenko, O. V. Frank-Kamenetskaya

    Published 2025-02-01
    “…Andreybulakhite forms segregations of platy to prismatic crystals up to <span class="inline-formula"><math xmlns="http://www.w3.org/1998/Math/MathML" id="M13" display="inline" overflow="scroll" dspmath="mathml"><mrow><mn mathvariant="normal">2</mn><mo>×</mo><mn mathvariant="normal">1</mn><mo>×</mo><mn mathvariant="normal">1</mn></mrow></math><span><svg:svg xmlns:svg="http://www.w3.org/2000/svg" width="43pt" height="10pt" class="svg-formula" dspmath="mathimg" md5hash="d929e2aabaa886f370b6ba53bba5c048"><svg:image xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="ejm-37-63-2025-ie00001.svg" width="43pt" height="10pt" src="ejm-37-63-2025-ie00001.png"/></svg:svg></span></span> <span class="inline-formula">µ</span>m in size that are localized in the upper part of the fruiting bodies (apothecia) of <i>Lecanora</i> cf. <i>polytropa</i> lichen, whose colonies overgrow the oxidized surfaces of pyrrhotite–pentlandite–chalcopyrite ore. …”
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