uranyl acetate and lead citrate Search Results


90
JEOL uranyl acetate/lead citrate
Uranyl Acetate/Lead Citrate, supplied by JEOL, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Inserm Transfert uranyl acetate and lead citrate
Uranyl Acetate And Lead Citrate, supplied by Inserm Transfert, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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SPI Supplies uranyl acetate and lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Uranyl Acetate And Lead Citrate, supplied by SPI Supplies, 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/uranyl acetate and lead citrate/product/SPI Supplies
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Fluka Chemical uranyl acetate/ lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Uranyl Acetate/ Lead Citrate, supplied by Fluka Chemical, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Philips Healthcare uranyl acetate–lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Uranyl Acetate–Lead Citrate, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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SERVA Electrophoresis uranyl acetate and lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Uranyl Acetate And Lead Citrate, supplied by SERVA Electrophoresis, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Ted Pella uranyl acetate and lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Uranyl Acetate And Lead Citrate, supplied by Ted Pella, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Fisher Scientific aqueous uranyl acetate and lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Aqueous Uranyl Acetate And Lead Citrate, supplied by Fisher Scientific, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Katayama Chemical Inc uranyl acetate and lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Uranyl Acetate And Lead Citrate, supplied by Katayama Chemical 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/uranyl acetate and lead citrate/product/Katayama Chemical Inc
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Agar Scientific 2% uranyl acetate and lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
2% Uranyl Acetate And Lead Citrate, supplied by Agar Scientific, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Philips Healthcare ultrathin sections stained with uranyl acetate and lead citrate
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
Ultrathin Sections Stained With Uranyl Acetate And Lead Citrate, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Merck KGaA 1:1 solution containing 100% acetonitrile and 0.1% (v/v) tfa
Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected <t>erythrocyte.</t> BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.
1:1 Solution Containing 100% Acetonitrile And 0.1% (V/V) Tfa, supplied by Merck KGaA, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected erythrocyte. BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.

Journal: Nature methods

Article Title: Nanoscale 3D cellular imaging by axial scanning transmission electron tomography

doi: 10.1038/nmeth.1367

Figure Lengend Snippet: Scanning transmission electron microscopy using axial detection. ( a ) Schematic diagram depicting the influence of STEM detector configuration on the spatial resolution of specimen features situated towards the bottom of thick sections. Light blue arrow represents a STEM probe incident on a thick specimen. Dark blue lines represent electrons that arrive at the bottom of the specimen with little displacement from the center of the probe, whereas red dashed lines represent electrons that arrive at the bottom with large displacements from the center. Black dotted line indicates the central axis through the specimen defined by the center of the incident STEM probe. Inset: detail of bottom region of specimen showing electron trajectories resulting in small displacements (blue lines) and large displacements (red lines) relative to the center of the probe. ( b–f ) Projection images from a 1 μm-thick section of P. falciparum -infected erythrocyte. BF STEM revealing particles both on top surface (arrows) and bottom surface (arrowheads) ( b ), HAADF STEM with contrast inverted showing only particles on top surface (arrows) ( c ), conventional TEM ( d ), and energy-filtered TEM at the most-probable energy-loss ( e , f ). Electron dose was 10 3 e/nm 2 in all images except in f , for which the dose was 10 4 e/nm 2 . Scale bar, 100 nm.

Article Snippet: Next, we stained sections containing infected erythrocytes with 0.5 wt% uranyl acetate and 0.5 wt% lead citrate (SPI Supplies, USA) in water for 15–20 minutes each.

Techniques: Transmission Assay, Electron Microscopy, Infection