Danish Epilepsy Center, Filadelfia
Dianalund, Denmark
NCT Number: NCT04171934
The main purpose of this study is to validate the ability of the Nelli system (video-based epilepsy examination system) to detect epileptic motor seizure behaviors in patients at rest.
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Observational
Dianalund, Denmark
Proper seizure documentation is an important tool to evaluate treatment outcomes and risks associated with epileptic seizures. Apart from a costly in-hospital video electro-encephalogram (VEEG) monitoring, most patients with epilepsy log and track their seizures with the help of the seizure diaries only. However, the reliability of the diaries is heavily dependent on an accurate recognition and recording of the seizures. There is an obvious need for a more objective and reliable seizure detection method. The investigators propose a low-cost video-based examination system, designed to detect motor seizure behaviors in patients at rest.
The main aim of this study is to clinically validate the ability of the Nelli system (video-based epilepsy examination system) to detect epileptic motor seizure behaviors in patients at rest, using simultaneous VEEG as the ground truth with the reference to all motor seizures and individual motor seizure types.
Study design established as follows:
a. Specificity and sensitivity of the Nelli system are evaluated with reference to both all motor seizures and individual motor seizure types.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Patients with epilepsy undergoing a standard VEEG examination for clinical evaluation consenting to participate in the present study
Exclusion criteria
Patients not consenting to participate in the study
Time frame: Examination period specific to the patient (1-4 days)
False detection rate (FDR/hour) as well as true positive rate (TPR) of the Nelli service is to be evaluated. Here FDR stands for detections which do not intersect with the ground truth events, and true positive events match ground truth with the Nelli detections.
Time frame: Examination period specific to the patient (1-4 days)
Latency from the seizure onset (according to the ground truth) and the seizure detection by the Nelli system.
Time frame: Examination period specific to the patient (1-4 days)
Inter-rater agreement for the supervisory component of the Nelli system
Time frame: Examination period specific to the patient (1-4 days)
Performance of the algorithmic component evaluated using the ROC (receiver operating characteristic) curve at different operating points (thresholds).
Tampere University
Other
Acronym: Nelli
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