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Abbott Laboratories continuous glucose monitoring system (cgm
Continuous Glucose Monitoring System (Cgm, supplied by Abbott 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/product/continuous+glucose+monitoring+cgm+systems/nct06292000-36-15-23?v=Abbott+Laboratories
Average 90 stars, based on 1 article reviews
continuous glucose monitoring system (cgm - by Bioz Stars, 2026-07
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Abbott Laboratories continuous glucose monitoring system (cgm
Continuous Glucose Monitoring System (Cgm, supplied by Abbott 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/product/continuous+glucose+monitoring+cgm+systems/nct06292000-36-15-23?v=Abbott+Laboratories
Average 90 stars, based on 1 article reviews
continuous glucose monitoring system (cgm - by Bioz Stars, 2026-07
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Dexcom Inc continuous glucose monitoring system cgm
Continuous Glucose Monitoring System Cgm, supplied by Dexcom Inc, 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/continuous+glucose+monitoring+cgm+systems/pmc13067912-101-8-7?v=Dexcom+Inc
Average 86 stars, based on 1 article reviews
continuous glucose monitoring system cgm - by Bioz Stars, 2026-07
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Abbott Laboratories continuous glucose monitoring cgm systems
a Example electrooculography recordings of saccades from five avian species: pigeon, duck, chukar, budgerigar, and chicken. Scale bars (left to right): 150 ms; 0.28, 0.25, 0.20, 0.34, and 0.25 mV. b Schematic drawing of <t>the</t> <t>intraocular</t> glucose monitoring <t>(CGM)</t> and eye movement (EOG) recording systems in awake, head-fixed pigeons – viewing bilateral visual displays. c The definition of saccade frequency, oscillation frequency, and intrasaccadic frequency. d Comparison of three frequencies under different visual conditions: light (L), dark (D), gray (G) screens and social mating videos (V) (one-way ANOVA: saccade frequency: n = 87 (L), 115 (D), 287 (G), 286 (V), F (3,771) = 45.26, p < 0.001, oscillation frequency: n = 86 (L), 115 (D), 288 (G), 283 (V), F (3,768) = 11.32, p < 0.001, intrasaccadic frequency: n = 82 (L), 111 (D), 290 (G), 286 (V), F (3,765) = 0.79, p = 0.50). Violin plots depict the distribution of measurement frequencies, whereas bar plots show the normalized mean frequencies for each visual condition, averaged across three pigeons (mean ± SD). *** p < 0.001, n.s. not significant. e Relationship between saccade frequency and oscillation frequency under four conditions. f Schematic diagram illustrating the dark-to-light screen transition. Normalized traces of saccade frequency ( g ), oscillation frequency ( h ), and glucose levels ( i ) during the transition from dark to light screens. The white lines with color shading represent the mean ± SD ( n = 6 pigeons), and the gray lines indicate data from individual animals. j Cross-correlation analysis of the time lag between eye movements and intraocular glucose levels aligned to the dark-to-light transition. Dashed lines indicate the peak time lags. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling), with correlations above this area considered statistically significant. k – o Same as ( f – j ), but for the transition from light to dark screens. p Schematic diagram illustrating pigeon social mating videos. q Average result of four pigeons exhibited increased saccadic eye movements and intraocular glucose levels while viewing 30-min conspecific social mating videos. r Same cross-correlation analysis as in ( j ), but aligned to the switch to social video. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling). Source data are provided as a file.
Continuous Glucose Monitoring Cgm Systems, supplied by Abbott Laboratories, 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/continuous+glucose+monitoring+cgm+systems/pmc13153195-278-24-34?v=Abbott+Laboratories
Average 86 stars, based on 1 article reviews
continuous glucose monitoring cgm systems - by Bioz Stars, 2026-07
86/100 stars
  Buy from Supplier

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Shanghai Pudong Development Bank Co Ltd continuous glucose monitoring system cgms data
a Example electrooculography recordings of saccades from five avian species: pigeon, duck, chukar, budgerigar, and chicken. Scale bars (left to right): 150 ms; 0.28, 0.25, 0.20, 0.34, and 0.25 mV. b Schematic drawing of <t>the</t> <t>intraocular</t> glucose monitoring <t>(CGM)</t> and eye movement (EOG) recording systems in awake, head-fixed pigeons – viewing bilateral visual displays. c The definition of saccade frequency, oscillation frequency, and intrasaccadic frequency. d Comparison of three frequencies under different visual conditions: light (L), dark (D), gray (G) screens and social mating videos (V) (one-way ANOVA: saccade frequency: n = 87 (L), 115 (D), 287 (G), 286 (V), F (3,771) = 45.26, p < 0.001, oscillation frequency: n = 86 (L), 115 (D), 288 (G), 283 (V), F (3,768) = 11.32, p < 0.001, intrasaccadic frequency: n = 82 (L), 111 (D), 290 (G), 286 (V), F (3,765) = 0.79, p = 0.50). Violin plots depict the distribution of measurement frequencies, whereas bar plots show the normalized mean frequencies for each visual condition, averaged across three pigeons (mean ± SD). *** p < 0.001, n.s. not significant. e Relationship between saccade frequency and oscillation frequency under four conditions. f Schematic diagram illustrating the dark-to-light screen transition. Normalized traces of saccade frequency ( g ), oscillation frequency ( h ), and glucose levels ( i ) during the transition from dark to light screens. The white lines with color shading represent the mean ± SD ( n = 6 pigeons), and the gray lines indicate data from individual animals. j Cross-correlation analysis of the time lag between eye movements and intraocular glucose levels aligned to the dark-to-light transition. Dashed lines indicate the peak time lags. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling), with correlations above this area considered statistically significant. k – o Same as ( f – j ), but for the transition from light to dark screens. p Schematic diagram illustrating pigeon social mating videos. q Average result of four pigeons exhibited increased saccadic eye movements and intraocular glucose levels while viewing 30-min conspecific social mating videos. r Same cross-correlation analysis as in ( j ), but aligned to the switch to social video. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling). Source data are provided as a file.
Continuous Glucose Monitoring System Cgms Data, supplied by Shanghai Pudong Development Bank Co Ltd, 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/continuous+glucose+monitoring+cgm+systems/10__1177_slash_15209156251412178-7207-16-10?v=Shanghai+Pudong+Development+Bank+Co+Ltd
Average 86 stars, based on 1 article reviews
continuous glucose monitoring system cgms data - by Bioz Stars, 2026-07
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Dexcom Inc g6 continuous glucose monitoring cgm system
Study timeline. The schematic illustrates the study timeline, including retrospective and prospective data collection periods surrounding the transition from Dexcom <t>G6</t> ® to Dexcom G7 ® (Day 0). Retrospective data collection: <t>CGM</t> data were retrieved at three time points before the transition (−90, −30, and −14 days), concluding the day before switching to Dexcom G7. Prospective data collection: at three time points after the transition (+14, +30, and +90 days), incorporating the day of the G7 transition in the analysis. Participants underwent two key study visits: Baseline Visit (Day 0): Included baseline questionnaires, anthropometric measurements, and HbA 1c assessment. Final Visit (+90 days): Included final questionnaires, anthropometric measurements, and HbA 1c assessment. *The day of the G7 transition is included in the prospective data downloads (+14, +30, +90). Retrospective data collection (−90, −30, −14) concludes the day before transitioning to G7. CGM, continuous glucose monitors.
G6 Continuous Glucose Monitoring Cgm System, supplied by Dexcom Inc, 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/continuous+glucose+monitoring+cgm+systems/pmc12812196-104-46-45?v=Dexcom+Inc
Average 86 stars, based on 1 article reviews
g6 continuous glucose monitoring cgm system - by Bioz Stars, 2026-07
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Dexcom Inc continuous glucose monitoring system (cgms) g6
Study timeline. The schematic illustrates the study timeline, including retrospective and prospective data collection periods surrounding the transition from Dexcom <t>G6</t> ® to Dexcom G7 ® (Day 0). Retrospective data collection: <t>CGM</t> data were retrieved at three time points before the transition (−90, −30, and −14 days), concluding the day before switching to Dexcom G7. Prospective data collection: at three time points after the transition (+14, +30, and +90 days), incorporating the day of the G7 transition in the analysis. Participants underwent two key study visits: Baseline Visit (Day 0): Included baseline questionnaires, anthropometric measurements, and HbA 1c assessment. Final Visit (+90 days): Included final questionnaires, anthropometric measurements, and HbA 1c assessment. *The day of the G7 transition is included in the prospective data downloads (+14, +30, +90). Retrospective data collection (−90, −30, −14) concludes the day before transitioning to G7. CGM, continuous glucose monitors.
Continuous Glucose Monitoring System (Cgms) G6, supplied by Dexcom 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/product/continuous+glucose+monitoring+cgm+systems/nct04225455-68-10-14?v=Dexcom+Inc
Average 90 stars, based on 1 article reviews
continuous glucose monitoring system (cgms) g6 - by Bioz Stars, 2026-07
90/100 stars
  Buy from Supplier

90
Dexcom Inc g6 continuous glucose monitoring (cgm) system
Study timeline. The schematic illustrates the study timeline, including retrospective and prospective data collection periods surrounding the transition from Dexcom <t>G6</t> ® to Dexcom G7 ® (Day 0). Retrospective data collection: <t>CGM</t> data were retrieved at three time points before the transition (−90, −30, and −14 days), concluding the day before switching to Dexcom G7. Prospective data collection: at three time points after the transition (+14, +30, and +90 days), incorporating the day of the G7 transition in the analysis. Participants underwent two key study visits: Baseline Visit (Day 0): Included baseline questionnaires, anthropometric measurements, and HbA 1c assessment. Final Visit (+90 days): Included final questionnaires, anthropometric measurements, and HbA 1c assessment. *The day of the G7 transition is included in the prospective data downloads (+14, +30, +90). Retrospective data collection (−90, −30, −14) concludes the day before transitioning to G7. CGM, continuous glucose monitors.
G6 Continuous Glucose Monitoring (Cgm) System, supplied by Dexcom 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/product/continuous+glucose+monitoring+cgm+systems/nct05059860-15-2-1?v=Dexcom+Inc
Average 90 stars, based on 1 article reviews
g6 continuous glucose monitoring (cgm) system - by Bioz Stars, 2026-07
90/100 stars
  Buy from Supplier

86
Abbott Laboratories continuous glucose monitoring cgm system
Study timeline. The schematic illustrates the study timeline, including retrospective and prospective data collection periods surrounding the transition from Dexcom <t>G6</t> ® to Dexcom G7 ® (Day 0). Retrospective data collection: <t>CGM</t> data were retrieved at three time points before the transition (−90, −30, and −14 days), concluding the day before switching to Dexcom G7. Prospective data collection: at three time points after the transition (+14, +30, and +90 days), incorporating the day of the G7 transition in the analysis. Participants underwent two key study visits: Baseline Visit (Day 0): Included baseline questionnaires, anthropometric measurements, and HbA 1c assessment. Final Visit (+90 days): Included final questionnaires, anthropometric measurements, and HbA 1c assessment. *The day of the G7 transition is included in the prospective data downloads (+14, +30, +90). Retrospective data collection (−90, −30, −14) concludes the day before transitioning to G7. CGM, continuous glucose monitors.
Continuous Glucose Monitoring Cgm System, supplied by Abbott Laboratories, 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/continuous+glucose+monitoring+cgm+systems/pm41133541-64-1-9?v=Abbott+Laboratories
Average 86 stars, based on 1 article reviews
continuous glucose monitoring cgm system - by Bioz Stars, 2026-07
86/100 stars
  Buy from Supplier

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a Example electrooculography recordings of saccades from five avian species: pigeon, duck, chukar, budgerigar, and chicken. Scale bars (left to right): 150 ms; 0.28, 0.25, 0.20, 0.34, and 0.25 mV. b Schematic drawing of the intraocular glucose monitoring (CGM) and eye movement (EOG) recording systems in awake, head-fixed pigeons – viewing bilateral visual displays. c The definition of saccade frequency, oscillation frequency, and intrasaccadic frequency. d Comparison of three frequencies under different visual conditions: light (L), dark (D), gray (G) screens and social mating videos (V) (one-way ANOVA: saccade frequency: n = 87 (L), 115 (D), 287 (G), 286 (V), F (3,771) = 45.26, p < 0.001, oscillation frequency: n = 86 (L), 115 (D), 288 (G), 283 (V), F (3,768) = 11.32, p < 0.001, intrasaccadic frequency: n = 82 (L), 111 (D), 290 (G), 286 (V), F (3,765) = 0.79, p = 0.50). Violin plots depict the distribution of measurement frequencies, whereas bar plots show the normalized mean frequencies for each visual condition, averaged across three pigeons (mean ± SD). *** p < 0.001, n.s. not significant. e Relationship between saccade frequency and oscillation frequency under four conditions. f Schematic diagram illustrating the dark-to-light screen transition. Normalized traces of saccade frequency ( g ), oscillation frequency ( h ), and glucose levels ( i ) during the transition from dark to light screens. The white lines with color shading represent the mean ± SD ( n = 6 pigeons), and the gray lines indicate data from individual animals. j Cross-correlation analysis of the time lag between eye movements and intraocular glucose levels aligned to the dark-to-light transition. Dashed lines indicate the peak time lags. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling), with correlations above this area considered statistically significant. k – o Same as ( f – j ), but for the transition from light to dark screens. p Schematic diagram illustrating pigeon social mating videos. q Average result of four pigeons exhibited increased saccadic eye movements and intraocular glucose levels while viewing 30-min conspecific social mating videos. r Same cross-correlation analysis as in ( j ), but aligned to the switch to social video. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling). Source data are provided as a file.

Journal: Nature Communications

Article Title: Saccades orchestrate intraocular glucose dynamics to shape visual responses in birds

doi: 10.1038/s41467-026-70672-0

Figure Lengend Snippet: a Example electrooculography recordings of saccades from five avian species: pigeon, duck, chukar, budgerigar, and chicken. Scale bars (left to right): 150 ms; 0.28, 0.25, 0.20, 0.34, and 0.25 mV. b Schematic drawing of the intraocular glucose monitoring (CGM) and eye movement (EOG) recording systems in awake, head-fixed pigeons – viewing bilateral visual displays. c The definition of saccade frequency, oscillation frequency, and intrasaccadic frequency. d Comparison of three frequencies under different visual conditions: light (L), dark (D), gray (G) screens and social mating videos (V) (one-way ANOVA: saccade frequency: n = 87 (L), 115 (D), 287 (G), 286 (V), F (3,771) = 45.26, p < 0.001, oscillation frequency: n = 86 (L), 115 (D), 288 (G), 283 (V), F (3,768) = 11.32, p < 0.001, intrasaccadic frequency: n = 82 (L), 111 (D), 290 (G), 286 (V), F (3,765) = 0.79, p = 0.50). Violin plots depict the distribution of measurement frequencies, whereas bar plots show the normalized mean frequencies for each visual condition, averaged across three pigeons (mean ± SD). *** p < 0.001, n.s. not significant. e Relationship between saccade frequency and oscillation frequency under four conditions. f Schematic diagram illustrating the dark-to-light screen transition. Normalized traces of saccade frequency ( g ), oscillation frequency ( h ), and glucose levels ( i ) during the transition from dark to light screens. The white lines with color shading represent the mean ± SD ( n = 6 pigeons), and the gray lines indicate data from individual animals. j Cross-correlation analysis of the time lag between eye movements and intraocular glucose levels aligned to the dark-to-light transition. Dashed lines indicate the peak time lags. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling), with correlations above this area considered statistically significant. k – o Same as ( f – j ), but for the transition from light to dark screens. p Schematic diagram illustrating pigeon social mating videos. q Average result of four pigeons exhibited increased saccadic eye movements and intraocular glucose levels while viewing 30-min conspecific social mating videos. r Same cross-correlation analysis as in ( j ), but aligned to the switch to social video. The shaded area represents the 95% confidence interval of the null distribution (generated via shuffling). Source data are provided as a file.

Article Snippet: In this study, assessments of glucose levels involve measuring the concentration of glucose in intraocular fluid and interstitial fluid of pectoral muscles, via the Continuous Glucose Monitoring (CGM) systems (Freestyle Libre 2 CGM System, Abbott, USA; GS1 CGM System, SIBIONICS, China) and the glucometer (Accu-Chek Active, Roche, Switzerland).

Techniques: Comparison, Generated

Study timeline. The schematic illustrates the study timeline, including retrospective and prospective data collection periods surrounding the transition from Dexcom G6 ® to Dexcom G7 ® (Day 0). Retrospective data collection: CGM data were retrieved at three time points before the transition (−90, −30, and −14 days), concluding the day before switching to Dexcom G7. Prospective data collection: at three time points after the transition (+14, +30, and +90 days), incorporating the day of the G7 transition in the analysis. Participants underwent two key study visits: Baseline Visit (Day 0): Included baseline questionnaires, anthropometric measurements, and HbA 1c assessment. Final Visit (+90 days): Included final questionnaires, anthropometric measurements, and HbA 1c assessment. *The day of the G7 transition is included in the prospective data downloads (+14, +30, +90). Retrospective data collection (−90, −30, −14) concludes the day before transitioning to G7. CGM, continuous glucose monitors.

Journal: Therapeutic Advances in Endocrinology and Metabolism

Article Title: Prospective multicenter evaluation of glycemic and patient-reported outcomes following transition to a next-generation continuous glucose monitoring system in users of advanced hybrid closed-loop technology

doi: 10.1177/20420188251407515

Figure Lengend Snippet: Study timeline. The schematic illustrates the study timeline, including retrospective and prospective data collection periods surrounding the transition from Dexcom G6 ® to Dexcom G7 ® (Day 0). Retrospective data collection: CGM data were retrieved at three time points before the transition (−90, −30, and −14 days), concluding the day before switching to Dexcom G7. Prospective data collection: at three time points after the transition (+14, +30, and +90 days), incorporating the day of the G7 transition in the analysis. Participants underwent two key study visits: Baseline Visit (Day 0): Included baseline questionnaires, anthropometric measurements, and HbA 1c assessment. Final Visit (+90 days): Included final questionnaires, anthropometric measurements, and HbA 1c assessment. *The day of the G7 transition is included in the prospective data downloads (+14, +30, +90). Retrospective data collection (−90, −30, −14) concludes the day before transitioning to G7. CGM, continuous glucose monitors.

Article Snippet: These functionalities have been shown to significantly improve glycemic metrics, including a 12% increase in time in range (TIR 70–180 mg/dL), reductions in mean glucose levels, a 0.38% decrease in HbA 1c , and fewer hypoglycemic episodes., Initially, the Control-IQ system was integrated with the Dexcom G6 ® continuous glucose monitoring (CGM) system, which provided real-time interstitial glucose measurements.

Techniques: