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Superz galvo

Manufactured by Leica

The SuperZ Galvo is a high-precision scanning mirror system designed for applications that require fast and accurate laser beam positioning. It features a low-inertia galvanometer scanner with a wide angular range and high positioning speed. The SuperZ Galvo is a core component in various laboratory equipment and scientific instrumentation.

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2 protocols using superz galvo

1

Spinning Disk and Lightning Confocal Imaging

Check if the same lab product or an alternative is used in the 5 most similar protocols
Spinning disk confocal imaging was performed with a Quorum spinning disk confocal head on a Zeiss Axiovert 200M microscope, equipped with a 63× NA 1.4 oil objective and 25× NA 0.8 multi-immersion objective, a 1.5× tube lens, and a back-thinned EM-CCD camera (C9100–13, Hamamatsu). Acquisition settings were controlled using Volocity software and were acquired at equal laser and exposure settings within experiments across compared conditions. Lightning microscopy was performed on a Leica SP8 Lightning Confocal DMI6000 microscope utilizing a 100× 1.4 NA (O, STED) objective and two HyD detectors. Acquisitions were driven by a Leica motorized XY stage and Leica SuperZ Galvo with Adaptive Focus Control. Acquisition settings were controlled using the Leica LAS, Lightning Module software, with matched settings within experiments.
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2

Spinning Disk and Lightning Confocal Imaging

Check if the same lab product or an alternative is used in the 5 most similar protocols
Spinning disk confocal imaging was performed with a Quorum spinning disk confocal head on a Zeiss Axiovert 200M microscope, equipped with a 63× NA 1.4 oil objective and 25× NA 0.8 multi-immersion objective, a 1.5× tube lens, and a back-thinned EM-CCD camera (C9100–13, Hamamatsu). Acquisition settings were controlled using Volocity software and were acquired at equal laser and exposure settings within experiments across compared conditions. Lightning microscopy was performed on a Leica SP8 Lightning Confocal DMI6000 microscope utilizing a 100× 1.4 NA (O, STED) objective and two HyD detectors. Acquisitions were driven by a Leica motorized XY stage and Leica SuperZ Galvo with Adaptive Focus Control. Acquisition settings were controlled using the Leica LAS, Lightning Module software, with matched settings within experiments.
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