bioRxiv Science⌕ Search

Biology subjects

Karachi, C.

Publications and source records attributed to Karachi, C..

2 recordsLinked to original sources

Subthalamic Signature of Freezing of Gait in Parkinson Disease

Freezing of gait (FOG) is a significant disability in Parkinsons disease (PD). Deep brain stimulation (DBS) of the subthalamic nucleus (STN) only partially alleviates it, with approximately one-third of patients experiencing worsening FOG within a year after surgery. The precise role of STN dysfunction in gait disabilities and FOG remains not fully elucidated. To investigate this, we recorded gait and STN local field potential (LFP) activity in 38 PD patients, both Off and On dopamine medication. Our analysis focused on the relationship between gait performance and STN neuronal activity, particularly examining differences in LFP activity across the posterior-sensorimotor and central-associative regions of the STN. When Off dopamine medication, 12 patients experienced FOG during recordings, with a total of 263 FOG episodes documented. Even in trials without FOG episodes, these patients exhibited altered gait initiation strategies, prioritizing stepping rhythm to manage balance and initiate walking. In contrast, non-FOG patients maintained a higher walking pace. STN activity patterns revealed key differences. In FOG patients, weaker STN alpha/low beta band activity in the STN was associated with walking pace, while stronger decreased low beta band activity correlated with rhythm and balance control. This low beta band association extended from the posterior-sensorimotor to the central-associative STN. In contrast, non-FOG patients showed a more restricted relationship between low beta band activity and gait performance, confined to the posterior STN. As stepping rhythm deteriorated further in FOG patients, FOG episodes occurred. FOG episodes were preceeded by a significant positive relationship between high beta power and rhythm restricted to the posterior STN, with a reverse negative relationship with pace, and a disruption in low beta desynchronization across both posterior and central STN regions. Dopamine medication significantly improved gait patterns, and partially restored STN neuronal activity, reducing differences between FOG and non-FOG patients. These findings differentiate two FOG states, i.e. predisposition and occurrence, each associated with distinct gait initiation strategies and STN activity patterns. They suggest distinct pathophysiological roles of low and high beta band STN activity within specific STN regions in regulating gait and FOG. These findings provide key insights for refining targeted DBS therapies.

neuroscience↗

Deep brain stimulation and dopamine medication enhance free choice preference in Parkinson's disease

BackgroundHumans prefer making choices freely, even when they dont maximize future outcomes, suggesting free-choice is intrinsically rewarding. However, whether reward-related brain networks influence choice preference remains unclear. In Parkinsons disease (PD), value-based decision impairments are well-documented, but mechanisms underlying intrinsically motivated behavior are poorly understood. This study investigates how the dopaminergic and basal ganglia systems encode intrinsic reward in PD. MethodsWe designed a decision-making task dissociating free-choices intrinsic value from extrinsic reward. Twenty PD patients with subthalamic deep brain stimulation (STN-DBS) and twentyfive on dopamine (DA) therapy performed the task ON and OFF their treatments. Their performances were compared to twenty age-matched healthy controls. To explore neural mechanisms, we analyzed DBS active contacts, modeled the volume of tissue activated, and examined cortico-subthalamic connectivity using high-resolution diffusion MRI. ResultsPD patients OFF STN-DBS exhibited reduced free-choice preference, which increased when STN-DBS was ON, particularly in risky choices. This effect correlated with the recruitment of the right medial prefrontal cortex (mPFC). DA therapy did not modulate free-choice preference acutely, but higher chronic DA levels correlated with increased free-choice preference. ConclusionsOur findings suggest STN-DBS enhances free-choice preference via the right mPFC-STN network, while chronic DA therapy amplifies free-choice sensitivity. This implies that freechoice preference is influenced by mPFC modulation, increasing impulsivity toward risky choices, and dopamines role in enhancing sensitivity to both extrinsic and intrinsic rewards.

neuroscience↗