Source localization from MEG data in real time requires algorithms which are robust, fully automatic, and very fast. We present two neural network systems which are able to localize a single dipole to reasonable accuracy within a fraction of a millisecond, even when the signals are contaminated by considerable noise. The first network is a multilayer perceptron (MLP) which takes the sensor measurements as inputs, uses two hidden layers, and outputs source location in Cartesian coordinates. After training with random dipolar sources contaminated by real noise, localization of a single dipole could be performed within 300 microseconds on an 800 Mhz Athlon workstation, with an average localization error of 1.15 cm. To improve the accuracy to 0...
We present a deep learning solution to the problem of localization of magnetoencephalography (MEG) b...
The estimation of three-dimension neural active sources from the magnetoencephalography (MEG) record...
: The localization of intracerebral dipole sources for detecting pathological events is one object ...
Source localization from MEG data in real time requires algorithms which are robust, fully automatic...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoencepha...
We present a system that takes realistic magnetoencephalographic (MEG) signals and localizes a singl...
We present a system that takes realistic magnetoencephalographic (MEG) signals and localizes a singl...
Abstract—We present a system that takes realistic magnetoencephalographic (MEG) signals and localize...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoencepha...
Iterative gradient methods such as Levenberg–Marquardt (LM) are in widespread use for source localiz...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoenceph...
Iterative gradient methods like Levenberg-Marquardt (LM) are in widespread use for source localizati...
Iterative gradient methods like Levenberg-Marquardt (LM) are in widespread use for source localizati...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoenceph...
We present a deep learning solution to the problem of localization of magnetoencephalography (MEG) b...
We present a deep learning solution to the problem of localization of magnetoencephalography (MEG) b...
The estimation of three-dimension neural active sources from the magnetoencephalography (MEG) record...
: The localization of intracerebral dipole sources for detecting pathological events is one object ...
Source localization from MEG data in real time requires algorithms which are robust, fully automatic...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoencepha...
We present a system that takes realistic magnetoencephalographic (MEG) signals and localizes a singl...
We present a system that takes realistic magnetoencephalographic (MEG) signals and localizes a singl...
Abstract—We present a system that takes realistic magnetoencephalographic (MEG) signals and localize...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoencepha...
Iterative gradient methods such as Levenberg–Marquardt (LM) are in widespread use for source localiz...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoenceph...
Iterative gradient methods like Levenberg-Marquardt (LM) are in widespread use for source localizati...
Iterative gradient methods like Levenberg-Marquardt (LM) are in widespread use for source localizati...
We describe a system that localizes a single dipole to reasonable accuracy from noisy magnetoenceph...
We present a deep learning solution to the problem of localization of magnetoencephalography (MEG) b...
We present a deep learning solution to the problem of localization of magnetoencephalography (MEG) b...
The estimation of three-dimension neural active sources from the magnetoencephalography (MEG) record...
: The localization of intracerebral dipole sources for detecting pathological events is one object ...