Review



polarized light optical microscopes  (Olympus)


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    Structured Review

    Olympus polarized light optical microscopes
    Polarized Light Optical Microscopes, supplied by Olympus, used in various techniques. Bioz Stars score: 98/100, based on 1166 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/Optical+Components/Optical+Microscope+Frames+OEM+Components/pmc12784327-63-18-23
    Average 98 stars, based on 1166 article reviews
    polarized light optical microscopes - by Bioz Stars, 2026-09
    98/100 stars

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    Related Articles

    In Situ:

    Article Title: Supporting Information for Operando Probing and Adjusting of the Complicated Electrode Process of Multivalent Metals at Extreme Temperature
    Article Snippet: .. In situ Raman spectra acquisition was performed using a LabRAM HR Evolution Raman spectrometer equipped with OLYMPUS optical microscope. ..

    Microscopy:

    Article Title: Supporting Information for Operando Probing and Adjusting of the Complicated Electrode Process of Multivalent Metals at Extreme Temperature
    Article Snippet: .. In situ Raman spectra acquisition was performed using a LabRAM HR Evolution Raman spectrometer equipped with OLYMPUS optical microscope. ..

    Article Title: Magnetically-drivable, pH-responsive Fe3O4/ZIF-8 coating on implant for biofilm prevention and treatment
    Article Snippet: Antimicrobial coatings with the capabilities to prevent and treat biofilm infections on implant are promising surface treatment strategies, but it is difficult to eradicate an already-formed biofilm by the coating.. Magnetically-drivable coatings can physically destruct the surface-attached biofilm to enhance antimicrobial killing.. However, current magnetic coatings cannot inhibit the initial bacteria growth and the demand of coating stability restricts their magnetic controllability.

    Article Title: Supporting Information for Cellular segregation in co-cultures driven by differential adhesion and contractility on distinct time scales
    Article Snippet: .. After removing the insert, cells on the dishes were washed once with M10F+ containing HEPES and the dishes were then filled with 2.5 mL M10F+ and mounted on the Cellhesion 200 / optical microscope (IX 81; Olympus) setup. ..

    Article Title: Low-grade wind driven directional flow in anchored droplets
    Article Snippet: The capillary flow behavior was carefully studied through adding PS microspheres (Sigma-Aldrich, diameter of ~10 μm) into IL (1-Octyl-3-methyl imidazole chloride) followed by blending with hand for 10 min and ultraphonic treatment (Beijing Cpower, 5320DTH) for another 10 min. .. The movement processes of PS microspheres were recorded by an Optical microscope (Olympus BX51) connected with a computer. ..

    Article Title: Apoptotic vesicles activate autophagy in recipient cells to induce angiogenesis and dental pulp regeneration
    Article Snippet: For adipogenic differentiation, hDPSCs were cultured in lipogenic medium containing 0.5 mM isobutylmethylxanthine, 1 mM dexamethasone, 10 mM insulin, and 0.2 mM indomethacin (all from Sigma-Aldrich) for 14 days and then stained with ORO (Sigma-Aldrich). .. Photographs were taken with an inverted optical microscope (Olympus, Japan). .. When the cells had proliferated to 80%–90% confluence, the medium was supplemented with 50 mM Z-VAD(ONE)-FMK (HY-16658, MCE, China).

    Article Title: Metabolite-mediated responses of phyllosphere microbiota to powdery mildew infection in resistant and susceptible black currant cultivars
    Article Snippet: .. According to the method [ ], the leaves were decolorized transparently, dyed with Coomassie brilliant blue for 150 s, and then the growth of spores was observed by Olympus optical microscope. ..

    Activity Assay:

    Article Title: Magnetically-drivable, pH-responsive Fe3O4/ZIF-8 coating on implant for biofilm prevention and treatment
    Article Snippet: Antimicrobial coatings with the capabilities to prevent and treat biofilm infections on implant are promising surface treatment strategies, but it is difficult to eradicate an already-formed biofilm by the coating.. Magnetically-drivable coatings can physically destruct the surface-attached biofilm to enhance antimicrobial killing.. However, current magnetic coatings cannot inhibit the initial bacteria growth and the demand of coating stability restricts their magnetic controllability.

    Incubation:

    Article Title: Magnetically-drivable, pH-responsive Fe3O4/ZIF-8 coating on implant for biofilm prevention and treatment
    Article Snippet: Antimicrobial coatings with the capabilities to prevent and treat biofilm infections on implant are promising surface treatment strategies, but it is difficult to eradicate an already-formed biofilm by the coating.. Magnetically-drivable coatings can physically destruct the surface-attached biofilm to enhance antimicrobial killing.. However, current magnetic coatings cannot inhibit the initial bacteria growth and the demand of coating stability restricts their magnetic controllability.



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    Image Search Results


    (a) Former experimental testbed, demonstrating the use of an optical bench with lens tubes and post holders. The optical bench is a stainless-steel optical baseline used for general photonics experiments and serves as a mounting platform for optical components. While highly stable, it is typically heavy, expensive, and not optimized for confined or vertically aligned NIR transmission through a biological tissue sample. It measures more than 300 mm × 600 mm, which is oversized for in-body OWC experiments and far exceeds the spatial requirements for small tissue samples. Additionally, it is also not easily transportable. Meanwhile, the post holders require careful manual alignment and lack ambient light shielding. The lens tubes, on the other hand, while they do provide a reliable holder for mounted LEDs integrated with post holders, require an additional cost. This makes them less accessible for institutions with limited funding. (b) The illustration of the experimental work conducted in our laboratory followed the safety protocol; a photograph was obtained from . Prof. Marcos Katz and his researcher are shown aligning an optical phantom while wearing certified laser safety glasses (LG9, Thorlabs, USA), which protect against NIR emissions. (c) Practical challenges in the previous optical setup showed manual alignment between the TX and RX. The side view (left): dashed lines illustrate the required strict alignment between the TX’s central beam and the RX’s active area through the optical phantom. Top view (right), emphasizing precise physical centering of the TX relative to the RX.

    Journal: HardwareX

    Article Title: Open-source, low-cost 3D-printable testbed for in-body optical wireless communications research

    doi: 10.1016/j.ohx.2026.e00744

    Figure Lengend Snippet: (a) Former experimental testbed, demonstrating the use of an optical bench with lens tubes and post holders. The optical bench is a stainless-steel optical baseline used for general photonics experiments and serves as a mounting platform for optical components. While highly stable, it is typically heavy, expensive, and not optimized for confined or vertically aligned NIR transmission through a biological tissue sample. It measures more than 300 mm × 600 mm, which is oversized for in-body OWC experiments and far exceeds the spatial requirements for small tissue samples. Additionally, it is also not easily transportable. Meanwhile, the post holders require careful manual alignment and lack ambient light shielding. The lens tubes, on the other hand, while they do provide a reliable holder for mounted LEDs integrated with post holders, require an additional cost. This makes them less accessible for institutions with limited funding. (b) The illustration of the experimental work conducted in our laboratory followed the safety protocol; a photograph was obtained from . Prof. Marcos Katz and his researcher are shown aligning an optical phantom while wearing certified laser safety glasses (LG9, Thorlabs, USA), which protect against NIR emissions. (c) Practical challenges in the previous optical setup showed manual alignment between the TX and RX. The side view (left): dashed lines illustrate the required strict alignment between the TX’s central beam and the RX’s active area through the optical phantom. Top view (right), emphasizing precise physical centering of the TX relative to the RX.

    Article Snippet: Closest commercial analog , The closest commercial platforms to the proposed testbed include standard optical laboratory components, i.e., optical breadboards/benches (e.g., MB3060/M, Thorlabs, USA) + post holders (e.g., MSL2 or MSL3, Thorlabs, USA) + lens tubes (e.g., SM1TC, Thorlabs, USA)..

    Techniques: Transmission Assay

    A photograph showing all components is printed: (a) Top ; (b) Chassis ; (c) Leg_3mm ; (d) Leg_20mm .

    Journal: HardwareX

    Article Title: Open-source, low-cost 3D-printable testbed for in-body optical wireless communications research

    doi: 10.1016/j.ohx.2026.e00744

    Figure Lengend Snippet: A photograph showing all components is printed: (a) Top ; (b) Chassis ; (c) Leg_3mm ; (d) Leg_20mm .

    Article Snippet: Closest commercial analog , The closest commercial platforms to the proposed testbed include standard optical laboratory components, i.e., optical breadboards/benches (e.g., MB3060/M, Thorlabs, USA) + post holders (e.g., MSL2 or MSL3, Thorlabs, USA) + lens tubes (e.g., SM1TC, Thorlabs, USA)..

    Techniques: