Multiple noninvasive brain stimulation is also introduced over the few years regarding their impact on spasticity, tDCS being the most common due to its effects on spasticity. There are multiple structural and functional changes in motor cortex post stroke, tDCS causes improvement in motor control by reorganizing the motor cortex. Anodal and cathodal tDCS are based on the current direction with cathodal decreasing excitability of the cortex area and anodal increasing it. Anodal tDCS is more effective in reducing spasticity as compared to cathodal. The change in cortical excitation alters the reflex arc i.e. altering the neurons and reducing their excitability which causes a decrease in tone and facilitates neuroplasticity.
Spasticity is often found along with weakness in stroke and is one of the reasons for impaired motor function, increased resistance to stretch and is due to increased excitability and abnormal regulation of spindle and reflex arc. With chronicity and reduced motor control spasticity also increases by 97 %. Spasticity and paresis lead to impaired motor control. Spasticity will not change recovery in function in early stages but is going to affect motor recovery in all stages. Spasticity disrupts motor function and the daily tasks which creates different levels of dependence in the patients hence effecting the QOL. Spasticity is found in almost 40% of individuals suffering from stroke. It affects joints and extremities in a way that impedes function and ADLs. Painful, restricted joints resulting from prolonged spasticity badly impacts the QOL leading to high burden on caregivers