Transcranial Focused Ultrasound for Identifying the Neural Substrate of Conscious Perception.
Daniel K Freeman, Brian Odegaard, Seung-Schik Yoo, Matthias Michel
Neuroscience and biobehavioral reviews November 19, 2025 DOI: 10.1016/j.neubiorev.2025.106485 via PubMed
Summary
AI-generated from the abstractTranscranial focused ultrasound (tFUS) can stimulate the human brain non-invasively with millimeter-scale precision, targeting both cortical and deep structures. This new tool offers a potential breakthrough for studying the neural correlates of conscious perception, overcoming the coarse spatial resolution and limited depth of traditional electrical or magnetic stimulation. Because tFUS requires extensive preparation and regulatory approvals, careful experimental planning is essential. The authors provide a roadmap for using tFUS in humans to explore the neural substrate of conscious perception.
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Topics | Philosophy of mind |
| Keywords | Conscious perception Non-invasive brain stimulation Transcranial focused ultrasound Consciousness research |
| Key finding | Transcranial focused ultrasound enables non-invasive, millimeter-scale stimulation of cortical and deep brain structures, offering a promising method for investigating the neural correlates of conscious perception. |
Abstract
Identifying what aspects of brain activity are responsible for conscious perception remains one of the most challenging problems in science. While progress has been made through psychophysical studies employing EEG and fMRI, research would greatly benefit from improved methods for stimulating the brain in healthy human subjects. Traditional techniques for neural stimulation through the skull, including electrical or magnetic stimulation, suffer from coarse spatial resolution and have limited ability to target deep brain structures with high spatial selectivity. Over the past decade, a new tool has emerged known as transcranial focused ultrasound (tFUS), which enables the human brain to be stimulated safely and non-invasively through the skull with millimeter-scale spatial resolution, including cortical as well as deep brain structures. This tool offers an exciting opportunity for breakthroughs in consciousness research. Given the extensive preparation and regulatory approvals associated with tFUS testing, careful experimental planning is essential. Therefore, our goal here is to provide a roadmap for using tFUS in humans for exploring the neural substrate of conscious perception.