Full-montage Standard Electroencephalograph,Standard polysomnograph with electro
Full-montage Standard Electroencephalograph,Standard polysomnograph with electroencephalograph
Standard polysomnograph with electroencephalograph,Full-montage Standard Electro
Standard polysomnograph with electroencephalograph,Full-montage Standard Electroencephalograph
Full-montage Standard Electroencephalograph,Standard polysomnograph with electro
Full-montage Standard Electroencephalograph,Standard polysomnograph with electroencephalograph
Full-montage Standard Electroencephalograph,Standard polysomnograph with electro
Full-montage Standard Electroencephalograph,Standard polysomnograph with electroencephalograph
Standard polysomnograph with electroencephalograph,Full-montage Standard Electro
Standard polysomnograph with electroencephalograph,Full-montage Standard Electroencephalograph
Full-montage Standard Electroencephalograph,Standard polysomnograph with electro
Full-montage Standard Electroencephalograph,Standard polysomnograph with electroencephalograph
Standard polysomnograph with electroencephalograph,Full-montage Standard Electro
Standard polysomnograph with electroencephalograph,Full-montage Standard Electroencephalograph
Standard polysomnograph with electroencephalograph,Full-montage Standard Electro
Standard polysomnograph with electroencephalograph,Full-montage Standard Electroencephalograph
Full-montage Standard Electroencephalograph,Standard polysomnograph with electro
Full-montage Standard Electroencephalograph,Standard polysomnograph with electroencephalograph
cortiQ PRO is a system that uses g.HIamp to map high-gamma broad band brain acti
cortiQ PRO is a system that uses g.HIamp to map high-gamma broad band brain activity while running an experimental paradigm. The software helps to identify electrode positions coding differences in brain activity by means of experimental paradigm. cortiQ PRO performs the signal analysis in real-time and compares the high-gamma broad band activity during specific tasks. Then it performs a statistical analysis and visualizes electrodes coding the information that are statistically significant. It is abstracted from technical details of data acquisition, channel order and signal processing assuring robust and efficient measurements.
This is an application intended to be used by neurologists who are monitoring or
This is an application intended to be used by neurologists who are monitoring or reviewing EEGs. It is part of a larger system provided by Persyst.
This is an application intended to be used by neurologists who are monitoring or
This is an application intended to be used by neurologists who are monitoring or reviewing EEGs. It is part of a larger system provided by Persyst.
Persyst 14 is a quantitative EEG trending, spike and seizure detection software.
Persyst 14 is a quantitative EEG trending, spike and seizure detection software. Persyst 14 is used for both monitoring andtrending of EEG recordings during acquisition and reviewing of processed recordings.
Persyst 13 is a quantitative EEG trending, spike and seizure detection software.
Persyst 13 is a quantitative EEG trending, spike and seizure detection software. Persyst 13 is used for both monitoring and trending of EEG recordings during acquisition and reviewing of processed recordings.
Persyst 12 is a quantitative EEG trending, spike and seizure detection software.
Persyst 12 is a quantitative EEG trending, spike and seizure detection software. Persyst 12 is used for both monitoring and trending of EEG recordings during acquisition and reviewing of processed recordings.
The eVox System is intended for the acquisition, display, and storage, of electr
The eVox System is intended for the acquisition, display, and storage, of electrical activityof a patient’s brain including electroencephalograph (EEG) and event-related potentials(ERP) obtained by placing two or more electrodes on the head to aid in diagnosisThe medical system includes the “eVox System” amplifier device, accessories, and acomputer (laptop computer or tablet device with internal battery and power cord).The hardware and ancillary components used in conjunction with the eVox System includean EEG cap, the eVox Amplifier, a charging kit (that consists of a USB cable, clip kit, andwall adapter), a Subject Response Device and a Base Station laptop computer. Thesoftware on the Base Station laptop computer is intended for device functioning