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Cardiovascular autonomic responses in patients with Parkinson disease to pedunculopontine deep brain stimulation
by
Hyam, Jonathan A
, Coyne, Terry J
, Silburn, Peter
, Green, Alexander L
, Rippey, Jodi
, Paterson, David J
, Kerr, Graham
, Aziz, Tipu Z
, Huang, Yongzhi
, Wang, Shouyan
, Martin, Sean
, Stewart, Ian
, Roy, Holly A
in
Antihypertensives
/ Baroreceptors
/ Blood pressure
/ Cardiovascular system
/ Clinical trials
/ Deep brain stimulation
/ Dysautonomia
/ EKG
/ Electrocardiography
/ Electrodes
/ Electrophysiological recording
/ Experiments
/ Fourier transforms
/ Heart rate
/ Movement disorders
/ Neurodegenerative diseases
/ Orthostatic hypotension
/ Parkinson's disease
/ Patients
/ Pedunculopontine tegmental nucleus
/ Pharmacists
/ Posture
/ Reflexes
/ Testing laboratories
2019
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Cardiovascular autonomic responses in patients with Parkinson disease to pedunculopontine deep brain stimulation
by
Hyam, Jonathan A
, Coyne, Terry J
, Silburn, Peter
, Green, Alexander L
, Rippey, Jodi
, Paterson, David J
, Kerr, Graham
, Aziz, Tipu Z
, Huang, Yongzhi
, Wang, Shouyan
, Martin, Sean
, Stewart, Ian
, Roy, Holly A
in
Antihypertensives
/ Baroreceptors
/ Blood pressure
/ Cardiovascular system
/ Clinical trials
/ Deep brain stimulation
/ Dysautonomia
/ EKG
/ Electrocardiography
/ Electrodes
/ Electrophysiological recording
/ Experiments
/ Fourier transforms
/ Heart rate
/ Movement disorders
/ Neurodegenerative diseases
/ Orthostatic hypotension
/ Parkinson's disease
/ Patients
/ Pedunculopontine tegmental nucleus
/ Pharmacists
/ Posture
/ Reflexes
/ Testing laboratories
2019
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Cardiovascular autonomic responses in patients with Parkinson disease to pedunculopontine deep brain stimulation
by
Hyam, Jonathan A
, Coyne, Terry J
, Silburn, Peter
, Green, Alexander L
, Rippey, Jodi
, Paterson, David J
, Kerr, Graham
, Aziz, Tipu Z
, Huang, Yongzhi
, Wang, Shouyan
, Martin, Sean
, Stewart, Ian
, Roy, Holly A
in
Antihypertensives
/ Baroreceptors
/ Blood pressure
/ Cardiovascular system
/ Clinical trials
/ Deep brain stimulation
/ Dysautonomia
/ EKG
/ Electrocardiography
/ Electrodes
/ Electrophysiological recording
/ Experiments
/ Fourier transforms
/ Heart rate
/ Movement disorders
/ Neurodegenerative diseases
/ Orthostatic hypotension
/ Parkinson's disease
/ Patients
/ Pedunculopontine tegmental nucleus
/ Pharmacists
/ Posture
/ Reflexes
/ Testing laboratories
2019
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Cardiovascular autonomic responses in patients with Parkinson disease to pedunculopontine deep brain stimulation
Journal Article
Cardiovascular autonomic responses in patients with Parkinson disease to pedunculopontine deep brain stimulation
2019
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Overview
PurposeDysautonomia can be a debilitating feature of Parkinson disease (PD). Pedunculopontine nucleus (PPN) stimulation may improve gait disorders in PD, and may also result in changes in autonomic performance.MethodsTo determine whether pedunculopontine nucleus stimulation improves cardiovascular responses to autonomic challenges of postural tilt and Valsalva manoeuver, eight patients with pedunculopontine nucleus deep brain stimulation were recruited to the study; two were excluded for technical reasons during testing. Participants underwent head up tilt and Valsalva manoeuver with stimulation turned ON and OFF. Continuous blood pressure and ECG waveforms were recorded during these tests. In a single patient, local field potential activity was recorded from the implanted electrode during tilt.ResultsThe fall in systolic blood pressure after tilt was significantly smaller with stimulation ON (mean − 8.3% versus − 17.2%, p = 0.044). Valsalva ratio increased with stimulation from median 1.15 OFF to 1.20 ON (p = 0.028). Baroreflex sensitivity increased during Valsalva compared to rest with stimulation ON versus OFF (p = 0.028). The increase in baroreflex sensitivity correlated significantly with the mean depth of PPN stimulating electrode contacts. This accounted for 89% of its variance (r = 0.943, p = 0.005).ConclusionPPN stimulation can modulate the cardiovascular system in patients with PD. In this study, it reduced the postural fall in systolic blood pressure during head-up tilt and improved the cardiovascular response during Valsalva, presumably by altering the neural control of baroreflex activation.
Publisher
Springer Nature B.V
Subject
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