Literature DB >> 19479730

Cerebral blood flow changes induced by pedunculopontine nucleus stimulation in patients with advanced Parkinson's disease: a [(15)O] H2O PET study.

Benedicte Ballanger1, Andres M Lozano, Elena Moro, Thilo van Eimeren, Clement Hamani, Robert Chen, Roberto Cilia, Sylvain Houle, Yu Yan Poon, Anthony E Lang, Antonio P Strafella.   

Abstract

Patients with advanced Parkinson's disease (PD) develop disabling axial symptoms, including gait disturbances, freezing and postural instability poorly responsive to levodopa replacement therapy. The pedunculopontine nucleus (PPN) is involved in locomotion, control of posture, and behavioral states [i.e. wakefulness, rapid eye movement sleep]. Recent reports suggested that PPN modulation with deep brain stimulation (DBS) may be beneficial in the treatment of axial symptoms. However, the mechanisms underlying these effects are still unknown. We used [(15)O] H(2)O PET to investigate regional cerebral blood flow in three patients with advanced PD who underwent a new experimental surgical procedure with implantation of unilateral PPN-DBS. Patients were studied Off-medication with stimulator Off and On, both at rest and during a self-paced alternating motor task of the lower limbs. We used SPM2 for imaging data analysis, threshold P < 0.05 corrected at the cluster level. Stimulation induced significant regional cerebral blood flow increment in subcortical regions such as the thalamus (P < 0.006), cerebellum (P < 0.001), and midbrain region (P < 0.001) as well as different cortical areas involving medial sensorimotor cortex extending into caudal supplementary motor area (BA 4/6; P < 0.001). PPN-DBS in advanced PD resulted in blood flow and presumably neuronal activity changes in subcortical and cortical areas involved in balance and motor control, including the mesencephalic locomotor region (e.g. PPN) and closely interconnected structures within the cerebello-(rubro)-thalamo-cortical circuit. Whether these findings are associated with the DBS-PPN clinical effect remains to be proven. However, they suggest that PPN modulation may induce functional changes in neural networks associated with the control of lower limb movements. 2009 Wiley-Liss, Inc.

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Year:  2009        PMID: 19479730      PMCID: PMC6871082          DOI: 10.1002/hbm.20815

Source DB:  PubMed          Journal:  Hum Brain Mapp        ISSN: 1065-9471            Impact factor:   5.038


  43 in total

1.  Cortical motor reorganization in akinetic patients with Parkinson's disease: a functional MRI study.

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Journal:  Brain       Date:  2000-02       Impact factor: 13.501

2.  Event-related functional magnetic resonance imaging in Parkinson's disease before and after levodopa.

Authors:  B Haslinger; P Erhard; N Kämpfe; H Boecker; E Rummeny; M Schwaiger; B Conrad; A O Ceballos-Baumann
Journal:  Brain       Date:  2001-03       Impact factor: 13.501

3.  Distributed neural systems underlying the timing of movements.

Authors:  S M Rao; D L Harrington; K Y Haaland; J A Bobholz; R W Cox; J R Binder
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4.  An evaluation of the role of internal cues in the pathogenesis of parkinsonian hypokinesia.

Authors:  N Georgiou; R Iansek; J L Bradshaw; J G Phillips; J B Mattingley; J A Bradshaw
Journal:  Brain       Date:  1993-12       Impact factor: 13.501

5.  A novel role of pedunculopontine tegmental kainate receptors: a mechanism of rapid eye movement sleep generation in the rat.

Authors:  S Datta; E E Spoley; V K Mavanji; E H Patterson
Journal:  Neuroscience       Date:  2002       Impact factor: 3.590

6.  Continuous subcutaneous apomorphine therapy improves dyskinesias in Parkinson's disease: a prospective study using single-dose challenges.

Authors:  Regina Katzenschlager; Andrew Hughes; Andrew Evans; Alice J Manson; Marion Hoffman; Lesley Swinn; Hilary Watt; Kailash Bhatia; Niall Quinn; Andrew J Lees
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7.  Evidence for a role of basal ganglia in the regulation of rapid eye movement sleep by electrical and chemical stimulation for the pedunculopontine tegmental nucleus and the substantia nigra pars reticulata in decerebrate cats.

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8.  Characterization of REM-sleep associated ponto-geniculo-occipital waves in the human pons.

Authors:  Andrew S Lim; Andres M Lozano; Elena Moro; Clement Hamani; William D Hutchison; Jonathan O Dostrovsky; Anthony E Lang; Richard A Wennberg; Brian J Murray
Journal:  Sleep       Date:  2007-07       Impact factor: 5.849

9.  Gait is associated with an increase in tonic firing of the sub-cuneiform nucleus neurons.

Authors:  B Piallat; S Chabardès; N Torres; V Fraix; L Goetz; E Seigneuret; E Bardinet; M Ferraye; B Debu; P Krack; J Yelnik; P Pollak; A L Benabid
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10.  Patterns of levodopa response in Parkinson's disease: a clinico-pathological study.

Authors:  P A Kempster; D R Williams; M Selikhova; J Holton; T Revesz; A J Lees
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  44 in total

1.  Combined pedunculopontine-subthalamic stimulation in Parkinson disease.

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Review 2.  The pedunculopontine nucleus as a target for deep brain stimulation.

Authors:  Clement Hamani; Elena Moro; Andres M Lozano
Journal:  J Neural Transm (Vienna)       Date:  2010-12-31       Impact factor: 3.575

Review 3.  Network effects of deep brain stimulation.

Authors:  Ahmad Alhourani; Michael M McDowell; Michael J Randazzo; Thomas A Wozny; Efstathios D Kondylis; Witold J Lipski; Sarah Beck; Jordan F Karp; Avniel S Ghuman; R Mark Richardson
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4.  PPNa-DBS for gait and balance disorders in Parkinson's disease: a double-blind, randomised study.

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Journal:  J Neurol       Date:  2015-04-23       Impact factor: 4.849

5.  Motor and Nonmotor Circuitry Activation Induced by Subthalamic Nucleus Deep Brain Stimulation in Patients With Parkinson Disease: Intraoperative Functional Magnetic Resonance Imaging for Deep Brain Stimulation.

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Journal:  Mayo Clin Proc       Date:  2015-06       Impact factor: 7.616

6.  Arousal and the control of perception and movement.

Authors:  E Garcia-Rill; T Virmani; J R Hyde; S D'Onofrio; S Mahaffey
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Review 7.  Freezing of gait in Parkinson's disease: where are we now?

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Review 8.  Brain network markers of abnormal cerebral glucose metabolism and blood flow in Parkinson's disease.

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9.  Extra-nigral pathological conditions are common in Parkinson's disease with freezing of gait: an in vivo positron emission tomography study.

Authors:  Nicolaas I Bohnen; Kirk A Frey; Stephanie Studenski; Vikas Kotagal; Robert A Koeppe; Gregory M Constantine; Peter J H Scott; Roger L Albin; Martijn L T M Müller
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10.  The 10 Hz Frequency: A Fulcrum For Transitional Brain States.

Authors:  E Garcia-Rill; S D'Onofrio; B Luster; S Mahaffey; F J Urbano; C Phillips
Journal:  Transl Brain Rhythm       Date:  2016-03-24
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