Literature DB >> 32108524

Spinal cord neural network interactions: implications for sympathetic control of the porcine heart.

Erica A Dale1, Jasmine Kipke1, Yukiko Kubo1, Michael D Sunshine2, Peter A Castro1, Jeffrey L Ardell1,3, Aman Mahajan1.   

Abstract

Inherent and acquired factors determine the integrated autonomic response to cardiovascular stressors. Excessive sympathoexcitation to ischemic stress is a major contributor to the potential for sudden cardiac death. To define fundamental aspects of cardiac-related autonomic neural network interactions within the thoracic cord, specifically as related to modulating sympathetic preganglionic (SPN) neural activity. Adult, anesthetized Yorkshire pigs (n = 10) were implanted with penetrating high-density microarrays (64 electrodes) at the T2 level of the thoracic spinal cord to record extracellular potentials concurrently from left-sided dorsal horn (DH) and SPN neurons. Electrical stimulation of the T2 paravertebral chain allowed for antidromic identification of SPNs located in the intermediolateral cell column (57 of total 1,760 recorded neurons). Cardiac stressors included epicardial touch, occlusion of great vessels to transiently alter preload/afterload, and transient occlusion of the left anterior descending coronary artery (LAD). Spatial/temporal assessment of network interactions was characterized by cross-correlation analysis. While some DH neurons responded solely to changes in preload/afterload (8.5 ± 1.9%) or ischemic stress (10.5 ± 3.9%), the majority of cardiovascular-related DH neurons were multimodal (30.2 ± 4.7%) with ischemia sensitivity being one of the modalities (26.1 ± 4.7%). The sympathoexcitation associated with transient LAD occlusion was associated with increased correlations from baseline within DH neurons (2.43 ± 0.61 to 7.30 ± 1.84%, P = 0.04) and between SPN to DH neurons (1.32 ± 0.78 to 7.24 ± 1.84%, P = 0.02). DH to SPN network correlations were reduced during great vessel occlusion. In conclusion, increased intrasegmental network coherence within the thoracic spinal cord contributes to myocardial ischemia-induced sympathoexcitation.NEW & NOTEWORTHY In an in vivo pig model, we demonstrate using novel high-resolution neural electrode arrays that increased intrasegmental network coherence within the thoracic spinal cord contributes to myocardial ischemia-induced sympathoexcitation.

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Year:  2020        PMID: 32108524      PMCID: PMC7191487          DOI: 10.1152/ajpheart.00635.2019

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  60 in total

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Review 4.  2017 AHA/ACC/HRS guideline for management of patients with ventricular arrhythmias and the prevention of sudden cardiac death: Executive summary: A Report of the American College of Cardiology/American Heart Association Task Force on Clinical Practice Guidelines and the Heart Rhythm Society.

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Journal:  Heart Rhythm       Date:  2017-10-30       Impact factor: 6.343

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Authors:  Christian Steinberg; Zachary W M Laksman; Andrew D Krahn
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7.  Dorsal spinal cord stimulation obtunds the capacity of intrathoracic extracardiac neurons to transduce myocardial ischemia.

Authors:  Jeffrey L Ardell; René Cardinal; Michel Vermeulen; J Andrew Armour
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8.  Network interactions within the canine intrinsic cardiac nervous system: implications for reflex control of regional cardiac function.

Authors:  Eric Beaumont; Siamak Salavatian; E Marie Southerland; Alain Vinet; Vincent Jacquemet; J Andrew Armour; Jeffrey L Ardell
Journal:  J Physiol       Date:  2013-07-01       Impact factor: 5.182

9.  Cardiac sympathectomy and spinal cord stimulation attenuate reflex-mediated norepinephrine release during ischemia preventing ventricular fibrillation.

Authors:  Jeffrey L Ardell; Robert D Foreman; J Andrew Armour; Kalyanam Shivkumar
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Review 10.  Deciphering the Neural Control of Sympathetic Nerve Activity: Status Report and Directions for Future Research.

Authors:  Susan M Barman; Bill J Yates
Journal:  Front Neurosci       Date:  2017-12-22       Impact factor: 4.677

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  4 in total

1.  Spinal Cord Stimulation Reduces Ventricular Arrhythmias by Attenuating Reactive Gliosis and Activation of Spinal Interneurons.

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Journal:  JACC Clin Electrophysiol       Date:  2021-08-25

Review 2.  Studying Cardiac Neural Network Dynamics: Challenges and Opportunities for Scientific Computing.

Authors:  Nil Z Gurel; Koustubh B Sudarshan; Sharon Tam; Diana Ly; J Andrew Armour; Guy Kember; Olujimi A Ajijola
Journal:  Front Physiol       Date:  2022-04-29       Impact factor: 4.755

3.  Spinal Anesthesia Reduces Myocardial Ischemia-triggered Ventricular Arrhythmias by Suppressing Spinal Cord Neuronal Network Interactions in Pigs.

Authors:  Yukiko Omura; Jasmine P Kipke; Siamak Salavatian; Andrew Shea Afyouni; Christian Wooten; Robert F Herkenham; Uri Maoz; Elnaz Lashgari; Erica A Dale; Kimberly Howard-Quijano; Aman Mahajan
Journal:  Anesthesiology       Date:  2021-03-01       Impact factor: 7.892

4.  Optical Activation of the Dorsal Horn of the Thoracic Spinal Cord Prevents Ventricular Arrhythmias in Acute Myocardial Ischemia-Reperfusion Rats.

Authors:  Yong Wu; Zhongxu Luo; Zhengtao Hu; Kun Lv; Yinhua Liu; Deguo Wang
Journal:  Front Cardiovasc Med       Date:  2022-02-07
  4 in total

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