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Description
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TRIUX™ neo
Megin Oy
The TRIUX™ neo non-invasively measures the magnetoencephalographic (MEG) signals (and, optionally, electroencephalographic (EEG) signals) produced by electrically active tissue of the brain. These signals are recorded by a computerized data acquisition system, displayed, and may then be interpreted by trained physicians to help localize these active areas. The locations may then be correlated with anatomical information of the brain. MEG is routinely used to identify the locations of visual, auditory, somatosensory, and motor cortex in the brain when used in conjunction with evoked response averaging devices. MEG is also used to non-invasively locate regions of epileptic activity within the brain. The localization information provided by MEG may be used, in conjunction with other diagnostic data, in neurosurgical planning.
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TRIUX™ neo chair
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Adjustable patient chair with accessories for comfortable seated measurement position
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HPI coil set (VectorView)
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VectorView HPI coil set Individual OR Package of 1 HPI coil set in a box
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Auditory stimulator earphones (VectorView)
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Auditory Stimulator earphones used with VectorView
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128-channel EEG cap (L)
Megin Oy
A non-magnetic 128-channel EEG cap (size 56-62 cm) with sintered Ag/AgCl electrodes.
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128-channel EEG cap (M)
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A non-magnetic 128-channel EEG cap (size 52-58 cm) with sintered Ag/AgCl electrodes
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64-channel EEG cap (L)
Megin Oy
A non-magnetic 64-channel EEG cap (size 56-62 cm) with sintered Ag/AgCl electrodes.
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64-channel EEG cap (M)
Megin Oy
A non-magnetic 64-channel EEG cap (size 52-58 cm) with sintered Ag/AgCl electrodes.
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64-channel EEG cap (S)
Megin Oy
A non-magnetic 64-channel EEG cap (size 47-53 cm) with sintered Ag/AgCl electrodes.
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32-channel EEG cap (L)
Megin Oy
A non-magnetic 32-channel EEG cap (size 56-62 cm) with sintered Ag/AgCl electrodes.
0
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32-channel EEG cap (M)
Megin Oy
A non-magnetic 32-channel EEG cap (size 52-58 cm) with sintered Ag/AgCl electrodes.
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32-channel EEG cap (S)
Megin Oy
A non-magnetic 32-channel EEG cap (size 47-53 cm) with sintered Ag/AgCl electrodes.
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Head position coil set
Megin Oy
A head position coil set for tracking the position of the patient's head.
0
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Bilateral finger response system
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A bilateral finger response system for detecting patient responses.
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Auditory stimulator (earphones)
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A binaural auditory stimulator for eliciting auditory evoked fields.
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Patient chair
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Adjustable patient chair with accessories for comfortable seated measurement position.
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MaxFilter™ 2.2
Megin Oy
MaxFilter™ is used with Elekta Neuromag®, Elekta Neuromag® TRIUX and TRIUX™ neo in suppressing magnetic interference and in reducing measurement artifacts.
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Data analysis software 3.4
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A comprehensive analysis suite for magnetoencephalographic and electroencephalographic data acquired with Elekta Neuromag®, Elekta Neuromag® TRIUX and TRIUX™ neo.
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Elekta Neuromag® TRIUX
Megin Oy
The Elekta Neuromag® TRIUX non-invasively measures the magnetoencephalographic (MEG) signals (and, optionally, electroencephalographic (EEG) signals) produced by electrically active tissue of the brain. These signals are recorded by a computerized data acquisition system, displayed, and may then be interpreted by trained physicians to help localize these active areas. The locations may then be correlated with anatomical information of the brain. MEG is routinely used to identify the locations of visual, auditory, somatosensory, and motor cortex in the brain when used in conjunction with evoked response averaging devices. MEG is also used to non-invasively locate regions of epileptic activity within the brain. The localization information provided by MEG may be used, in conjunction with other diagnostic data, in neurosurgical planning.
0
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Elekta Neuromag® TRIUX
Megin Oy
The Elekta Neuromag® TRIUX non-invasively measures the magnetoencephalographic (MEG) signals (and, optionally, electroencephalographic (EEG) signals) produced by electrically active tissue of the brain. These signals are recorded by a computerized data acquisition system, displayed, and may then be interpreted by trained physicians to help localize these active areas. The locations may then be correlated with anatomical information of the brain. MEG is routinely used to identify the locations of visual, auditory, somatosensory, and motor cortex in the brain when used in conjunction with evoked response averaging devices. MEG is also used to non-invasively locate regions of epileptic activity within the brain. The localization information provided by MEG may be used, in conjunction with other diagnostic data, in neurosurgical planning.