NLP Placement Caps – Multi-Modal EEG, fNIRS & tES Hybrid Neuroimaging Headcaps
NLP Placement Caps are high-end fully customizable multi-modal headcaps tailored for advanced hybrid neuroimaging and brain stimulation research. This integrated research headgear supports synchronous collection and combined experiments of EEG electroencephalography, fNIRS functional near-infrared spectroscopy and tES transcranial electrical stimulation. With a modular adjustable sensor fixing structure and comfortable breathable fabric, it solves the matching pain points of multi-device superposition, and provides an all-in-one stable experimental platform for university laboratories, brain science research institutes and BCI innovation projects.
Different from single-function EEG caps, NLP multi-modal placement caps realize the organic integration of electrical signal detection, hemodynamic monitoring and nerve regulation stimulation, greatly expanding the depth and dimension of modern neuroscience research.
All-in-One Design for Simultaneous EEG, fNIRS & tES Experiments
Single-mode brain detection can only obtain limited data; multimodal fusion technology complements multiple physiological indicators to restore comprehensive brain activity information.
- Synchronized EEG + fNIRS dual recording: Capture intracranial electrical activity and cerebral blood oxygen response in real time
- Seamless docking with tES stimulation: Support transcranial electrical stimulation intervention and neuromodulation research
- Hybrid multi-index brain imaging: Break experimental isolation and build a complete brain function research system
- One-cap multi-purpose: Meet diversified experimental needs and reduce repeated equipment investment
Modular Adjustable Sensor Placement System
The core advantage of NLP multi-modal caps is the independent modular clamping and fixing structure, which freely matches different sensors and probes.
- Completely customizable layout to adapt to personalized experimental schemes
- Independent adjustable positions for EEG electrodes, fNIRS light sources and detectors
- Universal expansion design, compatible with mainstream multi-brand neuroequipment
- Quick disassembly and combination, convenient for rapid switching of multiple experimental paradigms
Wide Application in Advanced Neuroscience & BCI Research
It is widely applicable to cutting-edge brain science fields that require multi-dimensional data verification and collaborative analysis.
- Brain-Computer Interface (BCI) frontier research
- Cognitive neuroscience & brain mechanism exploration
- Neuroergonomics and human factor experimental analysis
- Motor imagery, sensory feedback and neural rehabilitation research
- High-precision multimodal joint brain imaging projects
Lab-Grade Comfort & Stable Research-Grade Structure
- Lightweight high-elastic breathable fabric: Reduce head compression, avoid stuffiness during long experiments
- Anti-slip stable sensor fixation: Prevent probe offset and signal artifact caused by slight movement
- Durable reusable material: Easy to clean and maintain, suitable for long-term repeated laboratory use
- Humanized head circumference adaptation: Fit different head shapes to ensure uniform wearing pressure
Diversified Custom Configuration Solutions
Support standardized layout and personalized customized design to meet the differentiated needs of different research teams.
- EEG electrode distribution in accordance with international 10–20 standard system
- Special modular holders for fNIRS optode source & detector installation
- Reserved installation positions for tES transcranial stimulation electrodes
- Full personalized customization according to experimental design and regional detection requirements
Technical Specifications
| Parameter | Specification |
|---|---|
| Product Name | NLP Multi-Modal Placement Cap |
| Supported Modalities | EEG / fNIRS / tES Multimodal Integration |
| Core Application | Neuroscience Research / BCI / Cognitive Experiments / Neurostimulation |
| Sensor Structure | Modular adjustable customizable holders |
| Cap Material | Elastic skin-friendly breathable research-grade fabric |
Supporting EEG Laboratory Consumables
- NL5 Skin Prep Gel – Effectively reduce scalp impedance and optimize EEG electrode contact quality.
- NL3 EEG Conductive Paste – Long-lasting stable conduction, suitable for multi-modal long-duration experiments.
- NL7 EEG Conductive Gel – Mild and non-irritating, compatible with repeated use of multi-modal headcaps.
Request a Quote or Ask a Question
Custom exclusive NLP multi-modal EEG fNIRS tES placement caps for your laboratory. We provide personalized sensor layout design, multi-equipment compatibility adaptation, multi-size options and large-batch OEM customized services for global brain science research teams and medical laboratories.
- Full custom layout for unique multimodal research
- Cross-brand adaptation with mainstream EEG, fNIRS and tES systems
- Multiple sizes & elastic specifications for long-term wearing
- Lab bulk preferential price, stable inventory and one-stop solution
Frequently Asked Questions (FAQ)
What is a multi-modal EEG-fNIRS-tES placement cap?
NLP multi-modal placement cap is a dedicated integrated research headcap, which integrates the installation and fixing functions of EEG electrodes, fNIRS optical probes and tES stimulation electrodes, and can realize synchronous detection and combined stimulation experiments of three brain research technologies.
What core advantages does combined EEG and fNIRS research have?
EEG is responsible for capturing rapid electrical activity of the brain, while fNIRS monitors slow hemodynamic and blood oxygen changes. The combination of the two complements advantages, eliminates single-mode limitations, and makes research conclusions more comprehensive and accurate.
Can this headcap support tES brain stimulation intervention?
Yes. The NLP multi-modal cap reserves independent adjustable fixing positions for tES stimulation electrodes, which can perfectly realize the hybrid experimental mode of simultaneous detection + real-time nerve stimulation.
What research scenarios are NLP placement caps suitable for?
It is widely used in brain-computer interface BCI, cognitive neuroscience, neuroergonomics, motor imagery research, neural rehabilitation and high-end multimodal joint brain imaging research projects in universities and scientific research institutions.






