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basler cmos a2a1920 160umbas camera  (Basler)


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    Structured Review

    Basler basler cmos a2a1920 160umbas camera
    Basler Cmos A2a1920 160umbas Camera, supplied by Basler, used in various techniques. Bioz Stars score: 95/100, based on 28 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/basler+cmos+camera/a2A1920-160umBAS/pmc12951571-119-27-27
    Average 95 stars, based on 28 article reviews
    basler cmos a2a1920 160umbas camera - by Bioz Stars, 2026-09
    95/100 stars

    Images

    Related Articles

    Imaging:

    Article Title: Rapid Fabrication of Low-Cost Thermal Bubble-Driven Micro-Pumps.
    Article Snippet: .. In this study, stroboscopic imaging was implemented using a Basler CMOS camera (a2A1920-160 umBAS), which has a global shutter and a minimum exposure time of 1 μs, a reflected light microscopy system (Axiotron ZS-19), and a high intensity pulsed LED illumination source (Lightspeed Technologies HPLS-36DD18B). ..

    Article Title: In-Volume Glass Modification Using a Femtosecond Laser: Comparison Between Repetitive Single-Pulse, MHz Burst, and GHz Burst Regimes
    Article Snippet: The sample was placed on XY monolithic motorized stages (Alio Industries, AI-LM-20000-XY-I-LP) to ensure proper positioning under the scanner head. .. The station was also equipped with a side-view real-time imaging system, including a green diode emitting at 523 nm and a Basler CMOS camera (Basler acA1440-220um, resolution of 1440 × 1080, pixel size 3.45 μ m × 3.45 μ m, 227 fps, global shutter) coupled with a long-distance microscope (InfiniMax KX (Centennial, CO, USA) with MX4 objective). ..

    Article Title: In-Volume Glass Modification Using a Femtosecond Laser: Comparison Between Repetitive Single-Pulse, MHz Burst, and GHz Burst Regimes.
    Article Snippet: The sample was placed on XY monolithic motorized stages (Alio Industries, AI-LM-20000-XY-I-LP) to ensure proper positioning under the scanner head. .. The station was also equipped with a side-view real-time imaging system, including a green diode emitting at 523 nm and a Basler CMOS camera (Basler acA1440-220um, resolution of 1440 × 1080, pixel size 3.45 μm × 3.45 μm, 227 fps, global shutter) coupled with a long-distance microscope (InfiniMax KX (Centennial, CO, USA) with MX4 objective). ..

    Article Title: Characterization of organic fouling on thermal bubble-driven micro-pumps.
    Article Snippet: Thermal bubble-driven micro-pumps are an upcoming micro-actuator technology that can be directly integrated into micro/mesofluidic channels, have no moving parts, and leverage existing mass production fabrication approaches.. These micro-pumps consist of a high-power microresistor that boils fluid in microseconds to create a high-pressure vapor bubble which performs mechanical work.. As such, these micro-pumps hold great promise for micro/mesofluidic systems such as lab-on-a-chip technologies.

    Article Title: Bessel Beam Femtosecond Laser Interaction with Fused Silica Before and After Chemical Etching: Comparison of Single Pulse, MHz-Burst, and GHz-Burst
    Article Snippet: Additionally, the sample was set on XY-monolithic motorized stages (Alio Industries, AI-LM-20000-XY-I-LP) to position it with respect to the Bessel beam and to control the translation for the different series of experiments. .. Moreover, the station is equipped with a side-view imaging system featuring a green diode emitting at 523 nm and a long-distance microscope (InfiniMax KX with MX5 objective) coupled with a Basler CMOS camera (Basler acA1440-220uc, resolution of 1440 × 1080, pixel size 3.45 μ m × 3.45 μ m, 227 fps, global shutter). ..

    Light Microscopy:

    Article Title: Rapid Fabrication of Low-Cost Thermal Bubble-Driven Micro-Pumps.
    Article Snippet: .. In this study, stroboscopic imaging was implemented using a Basler CMOS camera (a2A1920-160 umBAS), which has a global shutter and a minimum exposure time of 1 μs, a reflected light microscopy system (Axiotron ZS-19), and a high intensity pulsed LED illumination source (Lightspeed Technologies HPLS-36DD18B). ..

    other:

    Article Title: The ZEUS multi-petawatt laser system
    Article Snippet: Corrected laser focal spot directly captured with the Basler CMOS camera (a2A1920-51gmPRO) and lineouts in TA1 after beam focusing with a spherical mirror of focal length f1⁄4 18.95m.

    Microscopy:

    Article Title: In-Volume Glass Modification Using a Femtosecond Laser: Comparison Between Repetitive Single-Pulse, MHz Burst, and GHz Burst Regimes
    Article Snippet: The sample was placed on XY monolithic motorized stages (Alio Industries, AI-LM-20000-XY-I-LP) to ensure proper positioning under the scanner head. .. The station was also equipped with a side-view real-time imaging system, including a green diode emitting at 523 nm and a Basler CMOS camera (Basler acA1440-220um, resolution of 1440 × 1080, pixel size 3.45 μ m × 3.45 μ m, 227 fps, global shutter) coupled with a long-distance microscope (InfiniMax KX (Centennial, CO, USA) with MX4 objective). ..

    Article Title: An Image-Guided Intrascaffold Cell Assembly Technique for Accurate Printing of Heterogeneous Tissue Constructs.
    Article Snippet: For tissue engineering and regenerative medicine, creating thick and heterogeneous scaffoldbased tissue constructs requires deep and precise multi-cellular deposition.. Traditional cell seeding strategies lack ability in creating multi-cellular tissue constructs with high cell penetration and distribution, whilst emerging strategies aim to simultaneously combine cellladen tissue segments with scaffold fabrication.. Here, we describe a technique that allows for 3D intra-scaffold cell assembly where scaffolds are pre-fabricated and pre-treated, followed by accurate cell distribution within the scaffold using an image-guided technique.

    Article Title: In-Volume Glass Modification Using a Femtosecond Laser: Comparison Between Repetitive Single-Pulse, MHz Burst, and GHz Burst Regimes.
    Article Snippet: The sample was placed on XY monolithic motorized stages (Alio Industries, AI-LM-20000-XY-I-LP) to ensure proper positioning under the scanner head. .. The station was also equipped with a side-view real-time imaging system, including a green diode emitting at 523 nm and a Basler CMOS camera (Basler acA1440-220um, resolution of 1440 × 1080, pixel size 3.45 μm × 3.45 μm, 227 fps, global shutter) coupled with a long-distance microscope (InfiniMax KX (Centennial, CO, USA) with MX4 objective). ..

    Article Title: Bessel Beam Femtosecond Laser Interaction with Fused Silica Before and After Chemical Etching: Comparison of Single Pulse, MHz-Burst, and GHz-Burst
    Article Snippet: Additionally, the sample was set on XY-monolithic motorized stages (Alio Industries, AI-LM-20000-XY-I-LP) to position it with respect to the Bessel beam and to control the translation for the different series of experiments. .. Moreover, the station is equipped with a side-view imaging system featuring a green diode emitting at 523 nm and a long-distance microscope (InfiniMax KX with MX5 objective) coupled with a Basler CMOS camera (Basler acA1440-220uc, resolution of 1440 × 1080, pixel size 3.45 μ m × 3.45 μ m, 227 fps, global shutter). ..



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    Experimental setup for imaging the hepatic microvasculature in vivo . a ) Rat preparation viewed from above. Images were acquired from a region (blue rectangle) of the left lateral lobe of the liver. b ) A bright-field image of the liver surface vasculature: terminal central venule (tCV), terminal portal venule (tPV), and sinusoids. c ) Laser speckle imaging setup. The liver surface was illuminated with a 785 nm laser diode; the scattered light was captured by a <t>CMOS</t> <t>camera</t> (see Methods). d ) Raw images were first stabilized by matching the position of the motion marker. The temporal laser speckle contrast and the temporal blood flow index (tBFI) were calculated from the stabilized images. tBFI was averaged over time to obtain tBFI maps. e ) A tBFI map showing hepatic microvessels. See Fig. S1 for a tBFI map obtained from a larger region of the liver. f,g ) Close-up of the terminal central venules (f) and sinusoids (g). See Fig. S2 showing sinusoids in another rat.
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    Basler camera a camera b camera model mer2 1220 32u3m basler aca2500 14gm sensor type cmos monochrome sensor chip sony imx226 aptina mt9p031 pixel resolution
    Experimental setup for imaging the hepatic microvasculature in vivo . a ) Rat preparation viewed from above. Images were acquired from a region (blue rectangle) of the left lateral lobe of the liver. b ) A bright-field image of the liver surface vasculature: terminal central venule (tCV), terminal portal venule (tPV), and sinusoids. c ) Laser speckle imaging setup. The liver surface was illuminated with a 785 nm laser diode; the scattered light was captured by a <t>CMOS</t> <t>camera</t> (see Methods). d ) Raw images were first stabilized by matching the position of the motion marker. The temporal laser speckle contrast and the temporal blood flow index (tBFI) were calculated from the stabilized images. tBFI was averaged over time to obtain tBFI maps. e ) A tBFI map showing hepatic microvessels. See Fig. S1 for a tBFI map obtained from a larger region of the liver. f,g ) Close-up of the terminal central venules (f) and sinusoids (g). See Fig. S2 showing sinusoids in another rat.
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    Image Search Results


    Experimental setup for imaging the hepatic microvasculature in vivo . a ) Rat preparation viewed from above. Images were acquired from a region (blue rectangle) of the left lateral lobe of the liver. b ) A bright-field image of the liver surface vasculature: terminal central venule (tCV), terminal portal venule (tPV), and sinusoids. c ) Laser speckle imaging setup. The liver surface was illuminated with a 785 nm laser diode; the scattered light was captured by a CMOS camera (see Methods). d ) Raw images were first stabilized by matching the position of the motion marker. The temporal laser speckle contrast and the temporal blood flow index (tBFI) were calculated from the stabilized images. tBFI was averaged over time to obtain tBFI maps. e ) A tBFI map showing hepatic microvessels. See Fig. S1 for a tBFI map obtained from a larger region of the liver. f,g ) Close-up of the terminal central venules (f) and sinusoids (g). See Fig. S2 showing sinusoids in another rat.

    Journal: Biomedical Optics Express

    Article Title: Laser speckle contrast imaging of hepatic microcirculation

    doi: 10.1364/BOE.554663

    Figure Lengend Snippet: Experimental setup for imaging the hepatic microvasculature in vivo . a ) Rat preparation viewed from above. Images were acquired from a region (blue rectangle) of the left lateral lobe of the liver. b ) A bright-field image of the liver surface vasculature: terminal central venule (tCV), terminal portal venule (tPV), and sinusoids. c ) Laser speckle imaging setup. The liver surface was illuminated with a 785 nm laser diode; the scattered light was captured by a CMOS camera (see Methods). d ) Raw images were first stabilized by matching the position of the motion marker. The temporal laser speckle contrast and the temporal blood flow index (tBFI) were calculated from the stabilized images. tBFI was averaged over time to obtain tBFI maps. e ) A tBFI map showing hepatic microvessels. See Fig. S1 for a tBFI map obtained from a larger region of the liver. f,g ) Close-up of the terminal central venules (f) and sinusoids (g). See Fig. S2 showing sinusoids in another rat.

    Article Snippet: The scattered light passed through a linear polarizing filter and was captured by a CMOS camera (Basler acA2048-90umNIR, 5.5 μ m pixel size, 8-bit mode).

    Techniques: Imaging, In Vivo, Marker