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The Brain Ultimate MEP Module for M100 TMS System. In this picture a MEP module is a while box with electrode leads coming out of it and attaching across the thumb muscles of an out stretched hand.
Directly measure EMG signals with your Brain Ultimate M-100 TMS system to quickly and easily identify the motor evoke potential (MEP) threshold when calibrating the TMS pulse magnitude for individual participants.

Brain Ultimate Dual-channel EMG MEP Module

BrainVision Recorder 2 software mode icons are shown in a row numbered 1 through 4 to illustrate the normal workflow for using the software.
Meet the next generation of EEG research recording software!

BrainVision Recorder 2

An actiCHamp Plus AUX is drawn by hand showing its front eight (8) AUX ports ready but no EEG channel modules installed.
An expandable platform for peripheral physiology today and up to 160Ch of EEG + 8Ch of AUX tomorrow!

actiCHamp Plus AUX

Force Sensor is depicted between a finger tip and a button on a computer keyboard to allow for precise measurement of when force was applied by the finger.
Measure relative changes in force (Newtons) alongside your EEG or other peripheral physiology measures.

Force Sensor

A male participant is depictred doing stretching with an exercise band while wearing an actiCAP snap EEG cap and a chest harness across his front that holds a LiveAmp, actiCAP slim electrode bundle, and a LiveAmp Sensor & Trigger Extension Compact (STEc).
Expand the capabilities of your LiveAmp to record 6x AUX, wireless triggers, and pulse oximetry with the STEc.

LiveAmp Sensor & Trigger Extension Compact

A blond female model is facing away from us while wearing the Mindtooth Touch System on her head.
Record research-grade EEG out in the wild and apply state of the art neurometrics calculations on live data.

Mindtooth

The LOOP-IT's front panel is depicted with its touchscreen interface, 8x EEG inputs, 2x tES outputs, 4x BNC outputs, and a special port.
The neuroConn LOOP-IT is an all-in-one solution for closed loop EEG-tES, TMS-EEG, and EEG-tFUS.

neuroConn LOOP-IT

neuroConn DCMC is pictured with its control panel PC, keyboard, and mouse, along with 4x stimulation channels connected to a glass head via rubber electrodes.
An expandalbe multi-channel transcranial electrical stimulation (HD-tES) platform.

neuroConn DC-STIMULATOR MC

neuroConn DC-STIMULATOR PLUS is depicted laying on a table with a pair of rubber/sponge electrodes connected.
A capable and powerful one-channel transcranial electrical stimulation (tES) tool.

neuroConn DC-STIMULATOR PLUS

The BESA Connectivity software interface is a workflow-based GUI that walks you through the connectivity analysis of your choosing. Here you see the results of a Coherence analysis between multiple regional sources (source space, frequency anlaysis).
BESA Connectivity is a stand-alone module that extends BESA Research with streamlined, user-guided workflows for time–frequency and connectivity analysis of EEG and MEG data (in both scalp and source space). With multiple time–frequency and connectivity analysis methods supported, you can run batch analyses across subjects and easily visualize results using a variety of 2D and 3D renderings. The output is also ready for direct import into BESA Statistics.

BESA Connectivity 2.0

A male participant wearing an active electrode EEG cap is seated in a large brown and white treatment chair. Behind him stands a researcher holding a TMS coil. To their left is a neuronavigation setup and to their right is the TMS system and its controlling computer.
The M-100 TMS system from Brain Ultimate is a new transcranial magnetic stimulation system ready to help researchers advance non-invasive brain stimulation experiments.

Brain Ultimate M-100 TMS System

Screenshot of an analysis in BESA Statistics. See the time course of selected EEG channels as well as significant clusters of channels after a t-test.
Run complex statistical analyses on your processed EEG/MEG data with BESA Statistics workflow based GUI.

BESA Statistics 2.1

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