Is LUMO fNIRS Scalable for Different Research Needs?

Infant wearing a LUMO fNIRS HD-DOT cap during developmental neuroscience research and natural parent-child interaction.

LUMO's fully modular and scalable architecture, which enables labs to set up the system in accordance with their present research goals and expand it as future projects develop, is one of its distinguishing features. When imaging needs grow, researchers can simply add more sensor tiles and specialized headgear to increase cortical coverage instead of buying a whole new system.

Flexible System Configurations

  • LUMO fNIRS can be configured in a variety of ways, from whole-head HD-DOT imaging with dozens of linked sensor modules to single-region imaging with just a few tiles.

  • Depending on the application, scientists can construct whole-head systems with up to 162 light sources, 216 detectors, and more than 7,000 overlapping measurement channels, or they can target particular cortical regions.

Scalable for Every Stage of Research

Because of its adaptability, LUMO fNIRS can be used for large-scale neuroscience research utilizing the same underlying technology as well as pilot studies and specialized region-of-interest experiments. While keeping the HD-DOT platform consistent, laboratories can modify the system to meet their research needs.

Modular Platform for Long-Term Research

Because each system is based on interchangeable sensor tiles and adaptable dock arrays, LUMO fNIRS expands in tandem with a lab's research program, offering an affordable platform for long-term neuroscience research.

Key Scalability Features of LUMO fNIRS

  • Fully modular and scalable HD-DOT architecture.

  • Expand cortical coverage by adding sensor tiles and customized headgear.

  • Supports configurations from single-region imaging to whole-head HD-DOT imaging.

  • Configurable with up to 162 light sources, 216 detectors, and more than 7,000 overlapping measurement channels.

  • Suitable for pilot studies, region-of-interest research, and large-scale neuroscience investigations.

  • Interchangeable sensor tiles and configurable dock arrays support long-term research expansion.

  • Enables laboratories to scale imaging capabilities without replacing the existing system.

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