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Tractography patterns of pedunculopontine nucleus deep brain stimulation.

Abstract
Deep brain stimulation of the pedunculopontine nucleus is a promising surgical procedure for the treatment of Parkinsonian gait and balance dysfunction. It has, however, produced mixed clinical results that are poorly understood. We used tractography with the aim to rationalise this heterogeneity. A cohort of eight patients with postural instability and gait disturbance (Parkinson's disease subtype) underwent pre-operative structural and diffusion MRI, then progressed to deep brain stimulation targeting the pedunculopontine nucleus. Pre-operative and follow-up assessments were carried out using the Gait and Falls Questionnaire, and Freezing of Gait Questionnaire. Probabilistic diffusion tensor tractography was carried out between the stimulating electrodes and both cortical and cerebellar regions of a priori interest. Cortical surface reconstructions were carried out to measure cortical thickness in relevant areas. Structural connectivity between stimulating electrode and precentral gyrus (r = 0.81, p = 0.01), Brodmann areas 1 (r = 0.78, p = 0.02) and 2 (r = 0.76, p = 0.03) were correlated with clinical improvement. A negative correlation was also observed for the superior cerebellar peduncle (r = -0.76, p = 0.03). Lower cortical thickness of the left parietal lobe and bilateral premotor cortices were associated with greater pre-operative severity of symptoms. Both motor and sensory structural connectivity of the stimulated surgical target characterises the clinical benefit, or lack thereof, from surgery. In what is a challenging region of brainstem to effectively target, these results provide insights into how this can be better achieved. The mechanisms of action are likely to have both motor and sensory components, commensurate with the probable nature of the underlying dysfunction.
AuthorsAshley L B Raghu, Tariq Parker, Amir P Divanbeighi Zand, Stephen Payne, Jesper Andersson, John Stein, Tipu Z Aziz, Alexander L Green
JournalJournal of neural transmission (Vienna, Austria : 1996) (J Neural Transm (Vienna)) Vol. 128 Issue 5 Pg. 659-670 (May 2021) ISSN: 1435-1463 [Electronic] Austria
PMID33779812 (Publication Type: Journal Article)
Topics
  • Deep Brain Stimulation
  • Gait
  • Gait Disorders, Neurologic (diagnostic imaging, etiology, therapy)
  • Humans
  • Parkinson Disease (diagnostic imaging, therapy)
  • Pedunculopontine Tegmental Nucleus (diagnostic imaging)

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