Swallowing is a complex phenomenon that allows oral feeding while protecting the airway. It involves many brain areas, including primary motor and sensory areas. Its dysfunction, called oropharyngeal dysphagia is present in approximately 60% of patients with a stroke. In this case, it is conventionally translated by a swallow response time delay of the swallowing reflex. Pathophysiology of dysphagia is explained by impairment of the dominant swallowing, function that representation center is bi-hemispheric but asymmetric (Hamdy, 1997). Half of patients with a stroke supra-tentoriel with oropharyngeal dysphagia (about 55 % of strokes) regain normal swallowing in a few weeks ( Barer, 1989). Mechanisms that determine the recovery appear to be related to a reorganization of the motor cortex intact. Patients who retain disorders are those who have not cortical reorganization. With this in mind a team used different methods known to modulate brain plasticity, which electrotherapy with an application endo- pharyngeal sensory threshold. This stimulation increases the excitability of the cortico- bulbar reflex, which improves swallowing function in the clinical application. The hypothesis of this work is that the transcutaneous electrical stimulation applied submental, noninvasive technique, would also have an impact on cortical plasticity may explain the improved coordination of swallowing observed in earlier studies (Verin , 2011) ( Gallas , 2010).
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
OTHER
Masking
NONE
Enrollment
10
Sensory transcutaneous electrical stimulation will be started for a period of 20 minutes. It is applied by means of two surface electrodes placed under chin stimulation of both sides of the center line of the preceding side. Sensory transcutaneous electrical stimulation will inhibit the cerebral control of swallowing.
UHRouen
Rouen, France
Variation in motor evoked potential amplitude
Our aim was to show that submental sensitive transcutaneous electrical stimulation (SSTES) can modified swallowing function. Primary endpoint is change in motor evoked potential amplitude after submental transcutaneous electrical stimulation
Time frame: 1 month
variation of swallow reaction time
highlighting a change in swallowing with videofluoroscopy studied with electrical stimulation. Secondary endpoints are : * modification of swallowing cortical area * variation of swallow reaction time on videofluoroscopy
Time frame: 1 Month
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