Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations

Low frequency deep brain stimulation (DBS) of the pedunculopontine nucleus area (PPNa) has been proposed as a novel surgical target for gait dysfunction in the late stage of Parkinson's disease (PD). Since the mid-2000s, we have shown that intrasurgical delivery of stimulation in the pontine te...

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Main Authors: Alessandro Stefani, Laura Clara Grandi, Salvatore Galati
Format: Article
Language:English
Published: Elsevier 2019-08-01
Series:Neurobiology of Disease
Online Access:http://www.sciencedirect.com/science/article/pii/S0969996118307435
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spelling doaj-1cc1dbbcd277485a930d57bbab2b17c22021-03-22T12:47:40ZengElsevierNeurobiology of Disease1095-953X2019-08-011284952Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillationsAlessandro Stefani0Laura Clara Grandi1Salvatore Galati2Department of system medicine, UOSD Parkinson, University of Rome “Tor Vergata”, Italy; Correspondence to: A. Stefani, Department of System Medicine, UOSD Parkinson Center, University of Rome ''Tor Vergata'', Fondazione Policlinico Tor Vergata viale Oxford 81, Rome 00133, Italy.Department of Movement Disorders, Neurocenter of Southern Switzerland, Ospedale Civico di Lugano, SwitzerlandDepartment of Movement Disorders, Neurocenter of Southern Switzerland, Ospedale Civico di Lugano, Switzerland; Correspondence to: S. Galati, Neurocenter of Southern Switzerland, Ospedale Civico di Lugano, via Tesserete, 46, 6900 Lugano, Switzerland.Low frequency deep brain stimulation (DBS) of the pedunculopontine nucleus area (PPNa) has been proposed as a novel surgical target for gait dysfunction in the late stage of Parkinson's disease (PD). Since the mid-2000s, we have shown that intrasurgical delivery of stimulation in the pontine tegmentum affects the firing activity in the subthalamic nucleus (STN), but its effect on STN oscillatory rhythms has not been studied. Neuronal oscillations detected by local field potential (LFPs) have great importance, since they express complex movement-related behavior such as locomotion. Therefore, we examined the effect of three PPNa-DBS stimulation protocols (at 10, 25 and 80 Hz) on the STN oscillatory activity of PD patients. We focused on the anti-kinetic beta (β, 15–30 Hz), the pro-kinetic gamma (γ, 60–90 Hz) and “gait-related” alpha (α, 7–12 Hz) bands. We hypothesized that modulation of STN oscillations might have clinical relevance in the PPNa-mediated effects.PPNa stimulation at 25 and 80 Hz decreased the power of the STN β band by 33.94 and 40.22%, respectively. PPNa-DBS did not affect the other two bands with a tendency to suppress α power, while γ oscillation increased.Our results suggest that the anti-kinetic β band is the oscillation most sensitive to PPNa-DBS despite the negligible clinical efficacy on bradykinesia. However, how these changes interact reciprocally with the cortex or are counterbalanced by lower brainstem/spinal pathways remain to be elucidated.Our observation might turn out to be helpful in new protocols designed with adaptive DBS supporting the addition of PPN implantation in PD patients experiencing declining efficacy of STN-DBS.http://www.sciencedirect.com/science/article/pii/S0969996118307435
collection DOAJ
language English
format Article
sources DOAJ
author Alessandro Stefani
Laura Clara Grandi
Salvatore Galati
spellingShingle Alessandro Stefani
Laura Clara Grandi
Salvatore Galati
Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations
Neurobiology of Disease
author_facet Alessandro Stefani
Laura Clara Grandi
Salvatore Galati
author_sort Alessandro Stefani
title Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations
title_short Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations
title_full Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations
title_fullStr Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations
title_full_unstemmed Deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations
title_sort deep brain stimulation of the pedunculopontine nucleus modulates subthalamic pathological oscillations
publisher Elsevier
series Neurobiology of Disease
issn 1095-953X
publishDate 2019-08-01
description Low frequency deep brain stimulation (DBS) of the pedunculopontine nucleus area (PPNa) has been proposed as a novel surgical target for gait dysfunction in the late stage of Parkinson's disease (PD). Since the mid-2000s, we have shown that intrasurgical delivery of stimulation in the pontine tegmentum affects the firing activity in the subthalamic nucleus (STN), but its effect on STN oscillatory rhythms has not been studied. Neuronal oscillations detected by local field potential (LFPs) have great importance, since they express complex movement-related behavior such as locomotion. Therefore, we examined the effect of three PPNa-DBS stimulation protocols (at 10, 25 and 80 Hz) on the STN oscillatory activity of PD patients. We focused on the anti-kinetic beta (β, 15–30 Hz), the pro-kinetic gamma (γ, 60–90 Hz) and “gait-related” alpha (α, 7–12 Hz) bands. We hypothesized that modulation of STN oscillations might have clinical relevance in the PPNa-mediated effects.PPNa stimulation at 25 and 80 Hz decreased the power of the STN β band by 33.94 and 40.22%, respectively. PPNa-DBS did not affect the other two bands with a tendency to suppress α power, while γ oscillation increased.Our results suggest that the anti-kinetic β band is the oscillation most sensitive to PPNa-DBS despite the negligible clinical efficacy on bradykinesia. However, how these changes interact reciprocally with the cortex or are counterbalanced by lower brainstem/spinal pathways remain to be elucidated.Our observation might turn out to be helpful in new protocols designed with adaptive DBS supporting the addition of PPN implantation in PD patients experiencing declining efficacy of STN-DBS.
url http://www.sciencedirect.com/science/article/pii/S0969996118307435
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