TMS-Compatible EEG Positioning Cap | Low-Profile Neoprene Cap for Concurrent TMS-EEG & Neuromodulation

  • TMS-Compatible Low-Profile Design: Ultra-flat electrode holder sockets allow Transcranial Magnetic Stimulation (TMS) coils to sit exceptionally close to the scalp, ensuring optimal magnetic field induction.
  • Zero Magnetic Interference Materials: Constructed entirely from non-magnetic, artifact-free components and high-purity Ag/AgCl sensors to prevent induction heating and magnetic field distortion.
  • Breathable Composite Neoprene Fabric: Premium gray composite neoprene substrate with custom laser-cut ventilation apertures delivers persistent tension, shape retention, and cooling comfort.
  • Precision 10-20 / Extended System Positioning: Clear blue/orange color-coded position markers (e.g., Fp1, F3, F7, Fz) allow error-free, high-resolution electrode placement for targeted magnetic stimulation.
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CERESENSO TMS-Compatible EEG Positioning Cap – Precision Mapping for Concurrent TMS-EEG

The CERESENSO TMS-Compatible EEG Positioning Cap is engineered specifically for non-invasive brain stimulation research requiring simultaneous Transcranial Magnetic Stimulation and high-resolution Electroencephalography (TMS-EEG). Built with ultra-low profile electrode sockets and non-magnetic materials, this cap minimizes the distance between the TMS stimulation coil and the cerebral cortex, delivering maximum magnetic flux density into targeted brain regions.

The cap offers uniform radial elastic tension that keeps electrodes flat against the scalp without slipping. Marked with high-contrast, color-coded international 10-20 system position tags (such as Fp1, Fp2, F3, F4, F7, F8), it enables neuroscience researchers and clinicians to execute precise coil placement, motor threshold determination, and real-time cortical reactivity monitoring.

Key Features & TMS-EEG Optimization

Engineered for cognitive neuroscience laboratories, psychiatric neuromodulation centers, rehabilitation facilities, and BCI research teams.

  • Ultra-Slim Flat Holder Sockets: Extremely low-profile holder geometry reduces coil-to-scalp distance, maximizing magnetic field strength and stimulation efficacy.
  • 100% Non-Magnetic Construction: Made entirely without ferrous metals or heavy magnetic components to eliminate coil-induced heating, displacement forces, and severe artifact noise.
  • Laser-Cut Breathable Grid: Perforated mesh structure ensures heat and sweat evaporation during long rTMS or repetitive brain stimulation protocols.
  • High-Stability Composite Neoprene: Resists stretching out over repeated use, maintaining tight, uniform contact across all electrode channels.
  • Color-Coded Channel Identification: Bright blue and orange socket tags provide clear visual feedback for fast, error-free setup during multi-channel studies.

Ergonomics, Patient Comfort & Cable Routing

Designed to streamline complex neurostimulation experiments and ensure patient safety.

  • Integrated Cable Harness Loops: Flexible side loops hold lead wires securely together, preventing cable pull artifacts caused by coil repositioning.
  • Adjustable Chin Strap System: Padded under-chin strap maintains steady vertical anchoring, ensuring continuous electrode-skin contact throughout the session.
  • Sweat & Gel Resistant Fabric: Wipes clean easily and tolerates routine disinfection, extending service life in high-throughput research labs.

Broad Applications in Brain Stimulation & Neuroscience

Ideal for university research labs, clinical neurophysiology units, stroke rehabilitation centers, and psychiatric research clinics.

  • Concurrent Transcranial Magnetic Stimulation & EEG Recording (TMS-EEG)
  • Repetitive Transcranial Magnetic Stimulation (rTMS) Target Positioning
  • Evoked Potential (TEP) & Cortical Excitability Research
  • Non-Invasive Neuromodulation, tDCS/tACS, and Cognitive Neuroscience Mapping

Technical Specifications

Parameter Specification
Product Name TMS-Compatible EEG Positioning Cap
Compatibility Modality TMS, rTMS, Concurrent TMS-EEG, tDCS, tACS & High-Density EEG
Electrode Socket Profile Ultra-Low Profile Flat Sockets (Non-magnetic polymer)
Channel Configurations 21 / 32 / 64 / 128 Channels (International 10-20 / 10-10 System Layouts)
Fabric Substrate Gray Perforated Composite Neoprene / Breathable Synthetic Fabric
Size Availability Small (52-54 cm), Medium (54-58 cm), Large (58-62 cm), Custom sizes available
Reusability Reusable (Hand-washable with mild detergent)

Supporting Brain Stimulation & EEG Accessories

Request a Quote or Ask a Question

Source factory-direct TMS-compatible EEG positioning caps from CERESENSO. We offer factory-direct bulk pricing, custom channel counts, custom socket profiles, and fast international express shipping for research labs, TMS equipment OEMs, and medical distributors.

  • Custom socket heights, channel layouts, and connector cabling available
  • Factory-direct pricing on caps, low-profile electrodes, and conductive pastes
  • Bulk inventory with rapid worldwide shipping
  • Complete technical support for TMS-EEG integration

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Frequently Asked Questions (FAQ)

Why is a low-profile socket important for TMS-EEG studies?

Because magnetic field intensity drops rapidly with distance, tall electrode sockets force the TMS coil further away from the head, reducing stimulation efficiency. Ultra-low profile sockets allow the stimulation coil to sit almost directly against the scalp.

Is this cap completely safe to use under a active TMS magnetic coil?

Yes. The cap and sockets are constructed entirely from non-ferrous, non-magnetic materials that prevent magnetic induction forces, excessive heating, and physical displacement when the coil discharges.

Can I perform simultaneous EEG recording while pulsing the TMS coil?

Yes. When paired with TMS-compatible EEG amplifiers (which feature artifact-rejection or rapid recovery circuits) and low-profile Ag/AgCl sensors, this cap enables real-time recording of Transcranial Evoked Potentials (TEPs).

How should I clean and maintain this neoprene TMS cap?

After testing, remove electrode leads if applicable, wash the neoprene fabric in warm water using mild non-bleaching soap, gently wipe the low-profile holders, and allow it to air-dry naturally away from heat sources.

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