ecg amplifiers animal bio amp Search Results


90
ADInstruments ecg amplifier animal bio amp
Ecg Amplifier Animal Bio Amp, supplied by ADInstruments, 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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ADInstruments differential amplifier animal bio amp ml136
Differential Amplifier Animal Bio Amp Ml136, supplied by ADInstruments, 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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ADInstruments ml138 octal bio amp
Ml138 Octal Bio Amp, supplied by ADInstruments, 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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ADInstruments ecg amplifier
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Ecg Amplifier, supplied by ADInstruments, 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
ecg amplifier - by Bioz Stars, 2026-04
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ADInstruments ecg amplifiers animal bio amp
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Ecg Amplifiers Animal Bio Amp, supplied by ADInstruments, 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/ecg amplifiers animal bio amp/product/ADInstruments
Average 90 stars, based on 1 article reviews
ecg amplifiers animal bio amp - by Bioz Stars, 2026-04
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ADInstruments amplifiers
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Amplifiers, supplied by ADInstruments, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 95 stars, based on 1 article reviews
amplifiers - by Bioz Stars, 2026-04
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90
Gould Instrument Systems Inc amp 6600 bioelectric amplifier
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Amp 6600 Bioelectric Amplifier, supplied by Gould Instrument Systems 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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amp 6600 bioelectric amplifier - by Bioz Stars, 2026-04
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95
ADInstruments fe232 dual bio amp
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Fe232 Dual Bio Amp, supplied by ADInstruments, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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fe232 dual bio amp - by Bioz Stars, 2026-04
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90
emka TECHNOLOGIES S A S single lead ecg amplifier amp-b01
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Single Lead Ecg Amplifier Amp B01, supplied by emka TECHNOLOGIES S A S, 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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93
ADInstruments animal bio amp
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Animal Bio Amp, supplied by ADInstruments, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 93 stars, based on 1 article reviews
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ADInstruments amplifiers for electrocardiography power lab dual bio amp ml135
Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative <t>electrocardiogram</t> <t>(ECG)</t> recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.
Amplifiers For Electrocardiography Power Lab Dual Bio Amp Ml135, supplied by ADInstruments, 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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amplifiers for electrocardiography power lab dual bio amp ml135 - by Bioz Stars, 2026-04
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Image Search Results


Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative electrocardiogram (ECG) recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.

Journal: Frontiers in Physiology

Article Title: Drivers of Sinoatrial Node Automaticity in Zebrafish: Comparison With Mechanisms of Mammalian Pacemaker Function

doi: 10.3389/fphys.2022.818122

Figure Lengend Snippet: Mechanisms of zebrafish sinoatrial node (SAN) automaticity. Effects of pharmacological block of membrane (40 min of 3 μM ivabradine hydrochloride for intracellular block of “funny” current, I f , n = 7; 7 min of 3 mM cesium chloride for extracellular block of I f , n = 6; 15 min of 165 μM nickel(II) chloride for block of T-type Ca 2+ current, I Ca,T , n = 7) or Ca 2+ (15 min of 1 μM ryanodine for block of ryanodine receptors, n = 6; 30 min exposure of 5 μM BAPTA-AM, followed by 30 min to allow for de-esterification of the AM group, for chelation of cytosolic Ca 2+ , n = 7; 15 min of 0.2 μM nifedipine for block of L-type Ca 2+ current, I Ca,L , n = 6) “clock” components, as well as matched time controls (60 min, n = 7) on heart rate (A,C,E) and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ; B , D , F ), in the isolated zebrafish heart. Representative electrocardiogram (ECG) recording of zebrafish cardiac rhythm in control and after combined pharmacological block of membrane and Ca 2+ “clock” components (3 mM cesium chloride, 165 μM nickel(II) chloride, and 1 μM ryanodine, n = 6) and measurements of the resulting SAN pause and burst duration and control and burst heart rate (G) . Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.

Article Snippet: The electrodes were connected to an ECG amplifier (Animal Bio Amp, ADInstruments, Colorado Springs, CO, United States) and bath temperature was monitored using a thermocouple (T-type Pod, ADInstruments, Colorado Springs, CO, United States).

Techniques: Blocking Assay, Isolation, Two Tailed Test

Effect of mechanical preload on zebrafish and rabbit sinoatrial node automaticity. Representative electrocardiogram (ECG) recording of zebrafish (A) and rabbit (D) sinoatrial node rhythm under unloaded (slack) or mechanically preloaded (5 mg or 300 mg) conditions. Heart rate over time of individual zebrafish ( B , n = 8) and rabbit ( E , n = 8) sinoatrial nodes when mechanically unloaded or preloaded. Average heart rate and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ) of the zebrafish (C) and rabbit (F) sinoatrial node when mechanically unloaded or preloaded. Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.

Journal: Frontiers in Physiology

Article Title: Drivers of Sinoatrial Node Automaticity in Zebrafish: Comparison With Mechanisms of Mammalian Pacemaker Function

doi: 10.3389/fphys.2022.818122

Figure Lengend Snippet: Effect of mechanical preload on zebrafish and rabbit sinoatrial node automaticity. Representative electrocardiogram (ECG) recording of zebrafish (A) and rabbit (D) sinoatrial node rhythm under unloaded (slack) or mechanically preloaded (5 mg or 300 mg) conditions. Heart rate over time of individual zebrafish ( B , n = 8) and rabbit ( E , n = 8) sinoatrial nodes when mechanically unloaded or preloaded. Average heart rate and the inter-beat variability of cycle length (measured as the root mean square of its successive differences, RMSSD CL ) of the zebrafish (C) and rabbit (F) sinoatrial node when mechanically unloaded or preloaded. Data shown as mean ± SEM. Means compared by paired, two-tailed, Student’s t -tests; * p < 0.05.

Article Snippet: The electrodes were connected to an ECG amplifier (Animal Bio Amp, ADInstruments, Colorado Springs, CO, United States) and bath temperature was monitored using a thermocouple (T-type Pod, ADInstruments, Colorado Springs, CO, United States).

Techniques: Two Tailed Test