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Roper Scientific Inc versarray 1300 b
Stability of lipid peroxidation-related SCL. ( a ) Time course of the change in endogenous chemiluminescence in wounded Arabidopsis leaves: in red, total emission; in blue, emission at wavelengths <600 nm. ( b ) Comparison of the time dependence of SCL from wounded WT and scl14 leaves. ( c ) Time course of the changes in luminescence emission from oxidized lipids in the blue-green (<600 nm) and red/far-red (>640 nm) light domains. Linolenic acid was oxidized by soybean LOX as in e–g. The blue-green and (far-)red signals were measured simultaneously by placing a LG640 filter or a LS600 filter above the lipid solutions in the black box of the <t>CCD</t> <t>camera</t> installation.
Versarray 1300 B, supplied by Roper Scientific Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/versarray 1300 b/product/Roper Scientific Inc
Average 90 stars, based on 1 article reviews
versarray 1300 b - by Bioz Stars, 2026-03
90/100 stars

Images

1) Product Images from "Imaging of Lipid Peroxidation-Associated Chemiluminescence in Plants: Spectral Features, Regulation and Origin of the Signal in Leaves and Roots"

Article Title: Imaging of Lipid Peroxidation-Associated Chemiluminescence in Plants: Spectral Features, Regulation and Origin of the Signal in Leaves and Roots

Journal: Antioxidants

doi: 10.3390/antiox11071333

Stability of lipid peroxidation-related SCL. ( a ) Time course of the change in endogenous chemiluminescence in wounded Arabidopsis leaves: in red, total emission; in blue, emission at wavelengths <600 nm. ( b ) Comparison of the time dependence of SCL from wounded WT and scl14 leaves. ( c ) Time course of the changes in luminescence emission from oxidized lipids in the blue-green (<600 nm) and red/far-red (>640 nm) light domains. Linolenic acid was oxidized by soybean LOX as in e–g. The blue-green and (far-)red signals were measured simultaneously by placing a LG640 filter or a LS600 filter above the lipid solutions in the black box of the CCD camera installation.
Figure Legend Snippet: Stability of lipid peroxidation-related SCL. ( a ) Time course of the change in endogenous chemiluminescence in wounded Arabidopsis leaves: in red, total emission; in blue, emission at wavelengths <600 nm. ( b ) Comparison of the time dependence of SCL from wounded WT and scl14 leaves. ( c ) Time course of the changes in luminescence emission from oxidized lipids in the blue-green (<600 nm) and red/far-red (>640 nm) light domains. Linolenic acid was oxidized by soybean LOX as in e–g. The blue-green and (far-)red signals were measured simultaneously by placing a LG640 filter or a LS600 filter above the lipid solutions in the black box of the CCD camera installation.

Techniques Used: Comparison



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Stability of lipid peroxidation-related SCL. ( a ) Time course of the change in endogenous chemiluminescence in wounded Arabidopsis leaves: in red, total emission; in blue, emission at wavelengths <600 nm. ( b ) Comparison of the time dependence of SCL from wounded WT and scl14 leaves. ( c ) Time course of the changes in luminescence emission from oxidized lipids in the blue-green (<600 nm) and red/far-red (>640 nm) light domains. Linolenic acid was oxidized by soybean LOX as in e–g. The blue-green and (far-)red signals were measured simultaneously by placing a LG640 filter or a LS600 filter above the lipid solutions in the black box of the <t>CCD</t> <t>camera</t> installation.
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Stability of lipid peroxidation-related SCL. ( a ) Time course of the change in endogenous chemiluminescence in wounded Arabidopsis leaves: in red, total emission; in blue, emission at wavelengths <600 nm. ( b ) Comparison of the time dependence of SCL from wounded WT and scl14 leaves. ( c ) Time course of the changes in luminescence emission from oxidized lipids in the blue-green (<600 nm) and red/far-red (>640 nm) light domains. Linolenic acid was oxidized by soybean LOX as in e–g. The blue-green and (far-)red signals were measured simultaneously by placing a LG640 filter or a LS600 filter above the lipid solutions in the black box of the <t>CCD</t> <t>camera</t> installation.
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Image Search Results


Stability of lipid peroxidation-related SCL. ( a ) Time course of the change in endogenous chemiluminescence in wounded Arabidopsis leaves: in red, total emission; in blue, emission at wavelengths <600 nm. ( b ) Comparison of the time dependence of SCL from wounded WT and scl14 leaves. ( c ) Time course of the changes in luminescence emission from oxidized lipids in the blue-green (<600 nm) and red/far-red (>640 nm) light domains. Linolenic acid was oxidized by soybean LOX as in e–g. The blue-green and (far-)red signals were measured simultaneously by placing a LG640 filter or a LS600 filter above the lipid solutions in the black box of the CCD camera installation.

Journal: Antioxidants

Article Title: Imaging of Lipid Peroxidation-Associated Chemiluminescence in Plants: Spectral Features, Regulation and Origin of the Signal in Leaves and Roots

doi: 10.3390/antiox11071333

Figure Lengend Snippet: Stability of lipid peroxidation-related SCL. ( a ) Time course of the change in endogenous chemiluminescence in wounded Arabidopsis leaves: in red, total emission; in blue, emission at wavelengths <600 nm. ( b ) Comparison of the time dependence of SCL from wounded WT and scl14 leaves. ( c ) Time course of the changes in luminescence emission from oxidized lipids in the blue-green (<600 nm) and red/far-red (>640 nm) light domains. Linolenic acid was oxidized by soybean LOX as in e–g. The blue-green and (far-)red signals were measured simultaneously by placing a LG640 filter or a LS600 filter above the lipid solutions in the black box of the CCD camera installation.

Article Snippet: The luminescence emissions from plants, leaf discs or liquid solutions were imaged using a highly sensitive, liquid N 2 -cooled charge coupled device (CCD) camera (VersArray 1300 B, Roper Scientific).

Techniques: Comparison

Schematic diagram of our imaging system. In vivo imaging system consists of a CCD camera, small animal anesthesia machine, a Micro-focus X-ray source, an X-ray flat panel detector, a rotation stage, and an antiradiation shield.

Journal: International Journal of Biomedical Imaging

Article Title: Cerenkov Luminescence Tomography for In Vivo Radiopharmaceutical Imaging

doi: 10.1155/2011/641618

Figure Lengend Snippet: Schematic diagram of our imaging system. In vivo imaging system consists of a CCD camera, small animal anesthesia machine, a Micro-focus X-ray source, an X-ray flat panel detector, a rotation stage, and an antiradiation shield.

Article Snippet: The CCD camera (Princeton Instruments VersArray 1300 B, Roper Scientific, Trenton, NJ) has 1340 × 1300 pixels with 20 × 20 μ m-sized pixels.

Techniques: Imaging, In Vivo Imaging

System block diagram of the in vivo imaging system, developed by ourselves. The region near the bladder belongs to the view of the CCD camera.

Journal: International Journal of Biomedical Imaging

Article Title: Cerenkov Luminescence Tomography for In Vivo Radiopharmaceutical Imaging

doi: 10.1155/2011/641618

Figure Lengend Snippet: System block diagram of the in vivo imaging system, developed by ourselves. The region near the bladder belongs to the view of the CCD camera.

Article Snippet: The CCD camera (Princeton Instruments VersArray 1300 B, Roper Scientific, Trenton, NJ) has 1340 × 1300 pixels with 20 × 20 μ m-sized pixels.

Techniques: Blocking Assay, In Vivo Imaging

The views of the mouse bed with the fixed markers. The healthy mouse was injected with Fenestra LC and FDG. The rotation stage is set to rotate at 0°, 90 °, 180°, and 270° for taking photos respectively. The CCD camera was fixed in front of the mouse bed.

Journal: International Journal of Biomedical Imaging

Article Title: Cerenkov Luminescence Tomography for In Vivo Radiopharmaceutical Imaging

doi: 10.1155/2011/641618

Figure Lengend Snippet: The views of the mouse bed with the fixed markers. The healthy mouse was injected with Fenestra LC and FDG. The rotation stage is set to rotate at 0°, 90 °, 180°, and 270° for taking photos respectively. The CCD camera was fixed in front of the mouse bed.

Article Snippet: The CCD camera (Princeton Instruments VersArray 1300 B, Roper Scientific, Trenton, NJ) has 1340 × 1300 pixels with 20 × 20 μ m-sized pixels.

Techniques: Injection