adhesive sealer Search Results


90
MJ Research microseal b adhesive sealers #msb-1001
Microseal B Adhesive Sealers #Msb 1001, supplied by MJ Research, 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/microseal b adhesive sealers #msb-1001/product/MJ Research
Average 90 stars, based on 1 article reviews
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Amplistar Inc adhesive plate sealers
Adhesive Plate Sealers, supplied by Amplistar Inc, 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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Average 90 stars, based on 1 article reviews
adhesive plate sealers - by Bioz Stars, 2026-04
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Loctite commercial sealers/adhesives loctite 9396
Commercial Sealers/Adhesives Loctite 9396, supplied by Loctite, 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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Average 90 stars, based on 1 article reviews
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Edge Bio adhesive plate sealer edge bio systems #48461
Adhesive Plate Sealer Edge Bio Systems #48461, supplied by Edge Bio, 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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Average 90 stars, based on 1 article reviews
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Hampton Research Corp hdclear transparent adhesive sealers
Hdclear Transparent Adhesive Sealers, supplied by Hampton Research Corp, 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/hdclear transparent adhesive sealers/product/Hampton Research Corp
Average 90 stars, based on 1 article reviews
hdclear transparent adhesive sealers - by Bioz Stars, 2026-04
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Greiner Diagnostic AG transparent, adhesive microplate sealer
Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a <t>microplate</t> reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve
Transparent, Adhesive Microplate Sealer, supplied by Greiner Diagnostic AG, 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/transparent, adhesive microplate sealer/product/Greiner Diagnostic AG
Average 90 stars, based on 1 article reviews
transparent, adhesive microplate sealer - by Bioz Stars, 2026-04
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ICN Biomedicals mylar film plate sealer with adhesive backing
Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a <t>microplate</t> reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve
Mylar Film Plate Sealer With Adhesive Backing, supplied by ICN Biomedicals, 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/mylar film plate sealer with adhesive backing/product/ICN Biomedicals
Average 90 stars, based on 1 article reviews
mylar film plate sealer with adhesive backing - by Bioz Stars, 2026-04
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Flow Laboratories adhesive plate sealer
Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a <t>microplate</t> reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve
Adhesive Plate Sealer, supplied by Flow Laboratories, 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/adhesive plate sealer/product/Flow Laboratories
Average 90 stars, based on 1 article reviews
adhesive plate sealer - by Bioz Stars, 2026-04
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Amplistar Inc plastic film sealers amplistar adhesive plate sealers
Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a <t>microplate</t> reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve
Plastic Film Sealers Amplistar Adhesive Plate Sealers, supplied by Amplistar 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/plastic film sealers amplistar adhesive plate sealers/product/Amplistar Inc
Average 90 stars, based on 1 article reviews
plastic film sealers amplistar adhesive plate sealers - by Bioz Stars, 2026-04
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Corning Life Sciences sterile adhesive plate sealer
Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a <t>microplate</t> reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve
Sterile Adhesive Plate Sealer, supplied by Corning Life Sciences, 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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Average 90 stars, based on 1 article reviews
sterile adhesive plate sealer - by Bioz Stars, 2026-04
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Parkell Inc self-adhesive, dual curable methacrylate resin-based sealer metaseal
Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a <t>microplate</t> reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve
Self Adhesive, Dual Curable Methacrylate Resin Based Sealer Metaseal, supplied by Parkell 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/self-adhesive, dual curable methacrylate resin-based sealer metaseal/product/Parkell Inc
Average 90 stars, based on 1 article reviews
self-adhesive, dual curable methacrylate resin-based sealer metaseal - by Bioz Stars, 2026-04
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Parkell Inc epiphany self-adhesive sealer
Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a <t>microplate</t> reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve
Epiphany Self Adhesive Sealer, supplied by Parkell 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/epiphany self-adhesive sealer/product/Parkell Inc
Average 90 stars, based on 1 article reviews
epiphany self-adhesive sealer - by Bioz Stars, 2026-04
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Image Search Results


Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a microplate reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve

Journal: Physiological Reports

Article Title: High‐throughput determination of oxygen dissociation curves in a microplate reader—A novel, quantitative approach

doi: 10.14814/phy2.14995

Figure Lengend Snippet: Scheme of the method to determine, in parallel, ODC of small blood samples by a modified 96‐well plate and a microplate reader. (a) ODC plate. All wells are interspaced with a black polymer, and channels milled to form a meandering gas flow system when covered with a transparent seal. Wells are either empty (white) or contain thin films of whole blood (pink), internal standards (red) and two O 2 sensors (blue) as depicted. Signals of the in‐ and outflow O 2 sensors (blue line graphs) and two (A2 and A4), out of 92, exemplary ODCs are shown (top). (b) Cross‐section through wells H5‐F5 with details of the polymer cast and the gas channel system, as well as principle of measurements (fluorescence intensity in the bottom reading mode for oxygen partial pressure, P O 2 , absorption measurements for oxygen saturation, S O 2 ). (c) Microscopy of the central blood film showing a 1–2 cell layer of red blood cells over large parts. (d) Entire setup with computer, gas supply, temperature‐controlled humidifying gas reservoir, modified cover, microplate reader (front view), and a peristaltic pump (bottom right). (e) Top‐view of the modified cover allowing a flexible, smooth, and light‐proof connection between the ODC plate and gas supply/outflow. Arrows indicate movements of the plate within the microplate reader during measurements. (f) Depicts an exemplary possibility for modifying the ODC plate with four independent (colors) gas flow systems (= four‐channel ODC plate). ODC, oxygen dissociation curve

Article Snippet: After plating the RBC, the top of the plate was sealed with a transparent, adhesive microplate sealer (Greiner AG), providing unidirectional gas flow along the channels and gas tightness between the wells and the exterior (Figure ).

Techniques: Modification, Fluorescence, Microscopy