2021
DOI: 10.1088/1741-2552/ac0d42
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Simultaneous decoding of cardiovascular and respiratory functional changes from pig intraneural vagus nerve signals

Abstract: Objective. Bioelectronic medicine is opening new perspectives for the treatment of some major chronic diseases through the physical modulation of autonomic nervous system activity. Being the main peripheral route for electrical signals between central nervous system and visceral organs, the vagus nerve (VN) is one of the most promising targets. Closed-loop VN stimulation (VNS) would be crucial to increase effectiveness of this approach. Therefore, the extrapolation of useful physiological information from VN e… Show more

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Cited by 19 publications
(37 citation statements)
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“…Neural interfaces used for stimulation can also be used to record neural signals and monitor ANS activity in real-time ( 13 ). While innovative neural interfaces with multiple contacts are designed to improve the quality and information content of neural recordings ( 148 151 ), comparable efforts are being made to develop advanced signal processing and data analysis methods ( 152 , 153 ). Several studies recently focused on the extrapolation of neural markers from spontaneous or physiologically enhanced VN activity, employing various decoding techniques.…”
Section: Vagus Nerve Stimulation For Cardiovascular Diseasesmentioning
confidence: 99%
See 4 more Smart Citations
“…Neural interfaces used for stimulation can also be used to record neural signals and monitor ANS activity in real-time ( 13 ). While innovative neural interfaces with multiple contacts are designed to improve the quality and information content of neural recordings ( 148 151 ), comparable efforts are being made to develop advanced signal processing and data analysis methods ( 152 , 153 ). Several studies recently focused on the extrapolation of neural markers from spontaneous or physiologically enhanced VN activity, employing various decoding techniques.…”
Section: Vagus Nerve Stimulation For Cardiovascular Diseasesmentioning
confidence: 99%
“…The TIME has shown higher selectivity at low stimulation intensities than the single LIFE and multipolar cuffs ( 46 , 148 , 149 ). Our group combined the use of multichannel intrafascicular electrodes, machine learning principles and hybrid models ( 136 ) to study high frequency (>1,500 Hz) VN activity of anesthetized pigs during artificially produced alterations of physiological parameters, simulating increases in respiratory rate, tidal volume and arterial blood pressure ( Figure 6A ) ( 152 ). Using a new decoding algorithm that combines wavelet decomposition, dimensionality reduction, and ensemble learning classifiers, we could associate VN signals to specific functional changes ( Figure 6B ).…”
Section: Vagus Nerve Stimulation For Cardiovascular Diseasesmentioning
confidence: 99%
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