This research is being done to determine if Mozart music and/or age-appropriate music can reduce the frequency of seizures and epileptiform discharges.
Several prospective studies have demonstrated the impact of Mozart's sonata for Two Pianos (K.448) on interictal epileptiform discharges and/or clinical seizure recurrence in children with epilepsy. While the exact mechanisms by which Mozart music has this effect are not yet established, there continues to be growing evidence demonstrating the positive effects on Mozart music upon seizure frequency and epileptiform discharges. Additional studies are needed to further elucidate the effect of Mozart music on epilepsy given the heterogeneity of protocols used in diverse clinical settings, with the goal of using these findings to drive potential therapy in the clinical setting. Therefore, this study will explore if there are differences in epileptiform activity and clinical seizures between Mozart K.448, instrumental age-appropriate songs, and a patient's baseline activity during EMU stays. The children (age 4-17 yrs.) will listen to Mozart K.448 (1st movement) and instrumental age-appropriate songs with washout (10 minutes) in between, each lasting up to 9 minutes in the daytime. The music stimuli will be randomly played in 2 to 7 EMU stay days (average length of stay 4 days) and delivered via single-use earbuds. As per standard clinical care the investigators will monitor continuous video electroencephalography (EEG) in the epilepsy monitoring unit. The frequency of epileptiform discharges (e.g., the number of spikes per 100 seconds, the number of seconds with spikes, and clinical seizures) will be counted before, during, and after music procedures. Heart rate variability and blood pressure will also be measured before, during, and after music stimuli to understand associations between physiological responses and epileptiform discharges to musical stimuli. Participants' behavior changes will be recorded.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
10
Nine-minute-long Mozart K.448 (1st movement) and instrumental age-appropriate songs will be played via single-use earbuds with 10 minutes wash-out in between music stimuli.
Johns Hopkins School of Medicine
Baltimore, Maryland, United States
RECRUITINGChange in the frequency of epileptiform discharges (number of spikes)
The number of spikes in 100 seconds will be counted.
Time frame: Epilepsy Monitoring Units Stay (up to Day 7)
Change in the frequency of epileptiform discharges (number of seconds with spikes)
The number of seconds with spikes will be measured.
Time frame: Epilepsy Monitoring Units Stay (up to Day 7)
Change in heart rate variability (HRV)
Heart rate variability (HRV) is the fluctuation in the time (ms) intervals between adjacent heartbeats.
Time frame: Epilepsy Monitoring Units Stay (up to Day 7)
Change in blood pressure variability (BPV)
The determinants of BPV are calculated for both systolic and diastolic blood pressure using "the indices standard deviation (SD), average real variability (ARV), and coefficient of variation (CV)" of all 3 measurement methods. The CV is obtained by dividing the SD by the average Blood Pressure (BP) level. The ARV is calculated as the average of the differences between consecutive BP measurements. SD, ARV and CV will be combined to report BPV. The unit of BPV is mmHg.
Time frame: Epilepsy Monitoring Units Stay (up to Day 7)
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