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Noise enhanced the electrical stimulation-contractile response coupling in isolated mouse heart

  • Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional (IPN)
    ,
  • Centro de Investigaciones en Materiales Avanzados Unidad Monterrey
Research Output:
Contribution to journal
Article
Peer-review

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Citations
7
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FWCI
0.20
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Author count
5
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Paper percentile
38

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Abstract

BACKGROUND: Stochastic resonance is a phenomenon that allows a system to improve its capability to detect stimulus when a limited amount of noise is added to the stimuli. It has experimentally been shown that noise enhances the homeostatic function of the blood pressure regulatory system. This study aimed to investigate whether the noise can enhance the contractile response in the whole heart.

METHODS: Experiments were conducted in isolated mouse hearts (0.040kg, n=8), a Langendorff heart preparation is used to obtain two variables of the contractile response contraction force and heart rate. The contractile response due to an electrical stimulation perturbed with Gaussian noise was recorded.

RESULTS: The results show that the intensity of noise induced in the electrical stimuli has an effect on the electrical stimulation-contractile response coupling. With 10% noise induced, the bandwidth where the synchronization effect is presented was increased from (7-11Hz) to (6-12Hz), and the irregular dynamic threshold was changed to 13Hz.

CONCLUSIONS: We find that the noise increases the synchronization bandwidth in the electrical stimulation-contractile response coupling. We have experimentally demonstrated the stochastic resonance in isolated mouse heart.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 155-160 (6 pages)

Journal (Volume, Issue Number)

International Journal of Cardiology (Volume 221)

Publication milestones

  • Published - 15/10/2016

Publication status

Published - 15/10/2016

ISSN

0167-5273

Publication IDs

  • PubMed: 27400314
  • Scopus: 84978042655
  • WOS: 000384692600029

Funding Details

FundersFunding numbers
CONACYT
105649
CONACYT
-