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Effect of Pacing Site on Systolic Mechanical Restitution Curves in the In Vivo Canine Model
- Source :
- Cardiovascular Engineering. 7:89-96
- Publication Year :
- 2007
- Publisher :
- Springer Science and Business Media LLC, 2007.
-
Abstract
- Introduction Pacing site is known to influence the contractile state of the ventricle. Non-physiologic pacing sites such as the right ventricular apex (RVA) or left ventricular freewall (LVFW) have been shown to decrease the contractile state of normal myocardium, due to abnormal electrical propagation. The impact of pacing at these sites may alter mechanical restitution (MR), a fundamental cardiac property involving the electro-mechanical regulation of contraction. This, in turn, may affect cardiac function. The present study was conducted to determine if pacing site alters the time constant of MR: τ. Methods and results Anesthetized canines (n = 6) were acutely paced at four sites: right atrium (RA), RVA, right ventricular septum (RVS), and LVFW. MR data was captured by the S1–S2 pacing protocol and used to create MR curves, generating a restitution time constant, τ, at each site. No significant difference in τ was found between pacing sites. A linear regression analysis of MR curves revealed that there was no significant difference in slope between pacing sites. Conclusion Although pacing site has been found to influence the contractile state of the ventricle, this is the first known study to demonstrate no change in τ in an in vivo preparation. This suggests that alteration of electro-mechanical coupling described by MR is not sufficiently robust to provide insight into pacing site and cardiac function in healthy hearts.
- Subjects :
- Cardiac function curve
medicine.medical_specialty
Contraction (grammar)
Systole
Hemodynamics
Dogs
Heart Conduction System
In vivo
Internal medicine
medicine
Animals
Ventricular Function
Computer Simulation
Transplantation
business.industry
Cardiac Pacing, Artificial
Models, Cardiovascular
Time constant
General Medicine
Atrial Function
Myocardial Contraction
Biomechanical Phenomena
Restitution
medicine.anatomical_structure
Ventricle
Anesthesia
Cardiology
Surgery
Cardiology and Cardiovascular Medicine
business
Canine model
Subjects
Details
- ISSN :
- 15736806 and 15678822
- Volume :
- 7
- Database :
- OpenAIRE
- Journal :
- Cardiovascular Engineering
- Accession number :
- edsair.doi.dedup.....db8d46c18b71161c7c07d517f13a72ce
- Full Text :
- https://doi.org/10.1007/s10558-007-9033-9