computerized thromboelastography coagulation analyzer teg model 5000 Search Results


86
Haemonetics teg 5000 thrombelastograph haemostasis system
Teg 5000 Thrombelastograph Haemostasis System, supplied by Haemonetics, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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86
Haemonetics thromboelastography
Thromboelastography, supplied by Haemonetics, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Haemonetics thromboelastograph nalyzer
Thromboelastograph Nalyzer, supplied by Haemonetics, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Haemoscope Corporation thromboelastography
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Thromboelastography, supplied by Haemoscope Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/computerized+thromboelastography+coagulation+analyzer+teg+model+5000/analyzer+hemostasis+teg/pmc12602134-85-7-10
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Hemodyne Inc teg ® 5000 thromboelastograph haemostasis system
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Teg ® 5000 Thromboelastograph Haemostasis System, supplied by Hemodyne 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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Eppendorf AG cacl 2 eppendorf tubes equipment thromboelastograph hemostasis analyzer 5000 series
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Cacl 2 Eppendorf Tubes Equipment Thromboelastograph Hemostasis Analyzer 5000 Series, supplied by Eppendorf AG, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Haemonetics computer controlled thrombelastograph hemostasis system
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Computer Controlled Thrombelastograph Hemostasis System, supplied by Haemonetics, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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computer controlled thrombelastograph hemostasis system - by Bioz Stars, 2026-10
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Haemonetics thromboelastograph teg
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Thromboelastograph Teg, supplied by Haemonetics, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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86
Haemonetics thrombelastogram
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Thrombelastogram, supplied by Haemonetics, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/computerized+thromboelastography+coagulation+analyzer+teg+model+5000/thrombelastogram/10__1097_slash_mat__0000000000000208-45-31-39
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Haemoscope Corporation teg haemoscope 5000
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Teg Haemoscope 5000, supplied by Haemoscope Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Haemoscope Corporation viscoelastic method
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Viscoelastic Method, supplied by Haemoscope Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Haemonetics thrombelastograph
Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and <t>thromboelastography</t> (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.
Thrombelastograph, supplied by Haemonetics, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and thromboelastography (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.

Journal: Vox Sanguinis

Article Title: Characterization of the in vitro quality parameters of cold‐stored platelets containing aggregates

doi: 10.1111/vox.70064

Figure Lengend Snippet: Platelet functional parameters are affected by aggregate formation. Apheresis platelets were transferred to cold storage within 8 h of collection, and components that developed aggregates during storage were compared to non‐aggregated controls at day 21. (a) PAC‐1 median fluorescence intensity was measured by flow cytometry, and the activation potential of GPIIb/IIIa was calculated as a ratio of stimulated (20 μM adenosine diphosphate [ADP] for 5 min at 37°C) and unstimulated fluorescence. Platelets were diluted in fresh plasma, and (b) spontaneous, (c) ADP‐ (20 μM) or (d) collagen‐induced (10 μg/mL) aggregation was measured by light transmission aggregometry. Platelets were diluted in fresh plasma, and thromboelastography (TEG) was used to assess the (e) R‐time and (f) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points, with mean (solid line) ± SD (error bars). Statistical comparisons were performed using a two‐tailed, unpaired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.

Article Snippet: The platelet clotting potential was measured by thromboelastography (TEG 5000, Haemoscope Corporation, Niles, IL, USA) using platelets diluted in plasma to 200 × 10 9 /L, re‐calcified and activated with kaolin, as previously described [ ].

Techniques: Functional Assay, Fluorescence, Flow Cytometry, Activation Assay, Clinical Proteomics, Transmission Assay, Two Tailed Test

Effect of filtration through a transfusion administration set on aggregates and other cold‐induced changes. Apheresis platelets were transferred to cold storage within 8 h of collection. Components that developed aggregates during storage were tested at day 21 and then gravity‐fed through an administration set containing a 200‐μm filter (filtered). (a) CD61+ events with a higher forward scatter than platelets (microaggregates) were measured by flow cytometry and reported per 10,000 platelets. (b) Platelet concentration and (c) mean platelet volume (MPV) were measured using a haematology analyser. (d) Extracellular vesicles staining positive for CD61 and annexin‐V were enumerated by flow cytometry. (e) PAC‐1 median fluorescence intensity was measured by flow cytometry. Platelets were diluted in fresh plasma and (f) spontaneous aggregation was measured by light transmission aggregometry. Thromboelastography (TEG) was used to assess the (g) R‐time and (h) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points. Statistical comparisons were performed using a two‐tailed, paired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.

Journal: Vox Sanguinis

Article Title: Characterization of the in vitro quality parameters of cold‐stored platelets containing aggregates

doi: 10.1111/vox.70064

Figure Lengend Snippet: Effect of filtration through a transfusion administration set on aggregates and other cold‐induced changes. Apheresis platelets were transferred to cold storage within 8 h of collection. Components that developed aggregates during storage were tested at day 21 and then gravity‐fed through an administration set containing a 200‐μm filter (filtered). (a) CD61+ events with a higher forward scatter than platelets (microaggregates) were measured by flow cytometry and reported per 10,000 platelets. (b) Platelet concentration and (c) mean platelet volume (MPV) were measured using a haematology analyser. (d) Extracellular vesicles staining positive for CD61 and annexin‐V were enumerated by flow cytometry. (e) PAC‐1 median fluorescence intensity was measured by flow cytometry. Platelets were diluted in fresh plasma and (f) spontaneous aggregation was measured by light transmission aggregometry. Thromboelastography (TEG) was used to assess the (g) R‐time and (h) maximum amplitude (MA) of the clot initiated by activation with kaolin and calcium chloride. Data represent individual data points. Statistical comparisons were performed using a two‐tailed, paired t ‐test. Asterisk (*) indicates p < 0.05; ns indicates p > 0.05.

Article Snippet: The platelet clotting potential was measured by thromboelastography (TEG 5000, Haemoscope Corporation, Niles, IL, USA) using platelets diluted in plasma to 200 × 10 9 /L, re‐calcified and activated with kaolin, as previously described [ ].

Techniques: Filtration, Flow Cytometry, Concentration Assay, Staining, Fluorescence, Clinical Proteomics, Transmission Assay, Activation Assay, Two Tailed Test