Literature DB >> 22151709

Heart rate control via vagus nerve stimulation.

Hendrik P Buschman1, Corstiaan J Storm, Dirk J Duncker, Pieter D Verdouw, Hans E van der Aa, Peter van der Kemp.   

Abstract

Objectives.  There is ample and well-established evidence that direct electrical stimulation of the vagus nerve can change heart rate in animals and humans. Since tachyarrhythmias cannot always be controlled through medication, we sought, in this pilot study, to elucidate whether a clinical implantable lead system that is used in cervical vagus nerve stimulation therapy (VNS therapy) also can be used for control of heart rate, and tachycardia in particular. Materials and Methods.  Experiments were carried out in three pigs (weight 21-26 kg) under general anesthesia. The right and left vagus nerves in the neck region were exposed by dissection, and bipolar, multiturn, helical, silicone leads were wrapped around the vagus nerves. Stimulation was applied by an external device with multivariable settings: frequency 10-100 Hz, pulse duration 100-700 µsec; delay 0-0.5 msec; current 0.5-14 mA. Measurements were performed under normal sinus rhythm (RR-interval 501 ± 30 msec) and during isoprenaline-induced tachycardia (RR-interval 284 ± 11 msec). Results.  VNS, under optimal pacing conditions (100 Hz; 5 mA; 0.2 msec; 70 msec delay), in an electrocardiogram-triggered (ECG-triggered) pacing mode, increased RR-intervals by approximately 40%, irrespective of the duration of the RR-interval preceding VNS. The maximum effect on heart rate was established within approximately 5 sec after the onset of stimulation and was reversible and reproducible. No differences were found between stimulation of the right or left vagus nerve. Conclusion.  VNS can be used effectively and rapidly to decrease heart rate, in acute settings, when connected to an external pacing system. Future devices that are fully implantable may be used for nonpharmacological treatment of illnesses in which tachycardia results in deterioration of cardiac function.

Entities:  

Year:  2006        PMID: 22151709     DOI: 10.1111/j.1525-1403.2006.00062.x

Source DB:  PubMed          Journal:  Neuromodulation        ISSN: 1094-7159


  12 in total

1.  Timing Considerations for Noninvasive Vagal Nerve Stimulation in Clinical Studies.

Authors:  Nil Z Gurel; Asim H Gazi; Kristine L Scott; Matthew T Wittbrodt; Amit J Shah; Viola Vaccarino; J Douglas Bremner; Omer T Inan
Journal:  AMIA Annu Symp Proc       Date:  2020-03-04

2.  The pig as preclinical model for laparoscopic vagus nerve stimulation.

Authors:  A M Wolthuis; N Stakenborg; A D'Hoore; G E Boeckxstaens
Journal:  Int J Colorectal Dis       Date:  2015-11-06       Impact factor: 2.571

3.  Targeted Vagus Nerve Stimulation does not Disrupt Cardiac Function in the Diabetic Rat.

Authors:  Elliott W Dirr; Yogi A Patel; Lauren Lester; Francisco Delgado; Kevin J Otto
Journal:  Annu Int Conf IEEE Eng Med Biol Soc       Date:  2019-07

4.  Toward Bioelectronic Medicine-Neuromodulation of Small Peripheral Nerves Using Flexible Neural Clip.

Authors:  Sanghoon Lee; Wendy Yen Xian Peh; Jiahui Wang; Fengyuan Yang; John S Ho; Nitish V Thakor; Shih-Cheng Yen; Chengkuo Lee
Journal:  Adv Sci (Weinh)       Date:  2017-07-26       Impact factor: 16.806

5.  Stochastic vagus nerve stimulation affects acute heart rate dynamics in rats.

Authors:  Steven W Lee; Kanchan Kulkarni; Elizabeth M Annoni; Imad Libbus; Bruce H KenKnight; Elena G Tolkacheva
Journal:  PLoS One       Date:  2018-03-28       Impact factor: 3.240

6.  An Implanted Closed-loop Chip System for Heart Rate Control: System Design and Effects in Conscious Rats.

Authors:  Yuxuan Zhou; Yuan Yuan; Juan Gao; Ling Yang; Feng Zhang; Guoqing Zhu; Xingya Gao
Journal:  J Biomed Res       Date:  2010-03

7.  Vagal nerve stimulation started just prior to reperfusion limits infarct size and no-reflow.

Authors:  André Uitterdijk; Tuncay Yetgin; Maaike te Lintel Hekkert; Stefan Sneep; Ilona Krabbendam-Peters; Heleen M M van Beusekom; Trent M Fischer; Richard N Cornelussen; Olivier C Manintveld; Daphne Merkus; Dirk J Duncker
Journal:  Basic Res Cardiol       Date:  2015-08-26       Impact factor: 17.165

8.  Modulation of heart rate by temporally patterned vagus nerve stimulation in the anesthetized dog.

Authors:  Paul B Yoo; Haoran Liu; Juan G Hincapie; Stephen B Ruble; Jason J Hamann; Warren M Grill
Journal:  Physiol Rep       Date:  2016-02

9.  A novel controller based on state-transition models for closed-loop vagus nerve stimulation: Application to heart rate regulation.

Authors:  Hector M Romero-Ugalde; Virginie Le Rolle; Jean-Luc Bonnet; Christine Henry; Alain Bel; Philippe Mabo; Guy Carrault; Alfredo I Hernández
Journal:  PLoS One       Date:  2017-10-27       Impact factor: 3.240

10.  Sensitivity Analysis of Vagus Nerve Stimulation Parameters on Acute Cardiac Autonomic Responses: Chronotropic, Inotropic and Dromotropic Effects.

Authors:  David Ojeda; Virginie Le Rolle; Hector M Romero-Ugalde; Clément Gallet; Jean-Luc Bonnet; Christine Henry; Alain Bel; Philippe Mabo; Guy Carrault; Alfredo I Hernández
Journal:  PLoS One       Date:  2016-09-30       Impact factor: 3.240

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