Our new wearable ultrasound is a compact, non-invasive neuromodulation device built on transcranial focused ultrasound (tFUS) technology, delivering targeted brain stimulation with millimeter precision. It replaces cumbersome fixed clinical equipment, letting users conduct self-regulated neural adjustment anytime without hospital monitoring.
This patch emits low-intensity pulsed ultrasound to hit key brain zones including the prefrontal cortex, motor cortex and hippocampus. It modulates neuron excitability safely with zero tissue injury, supporting cognitive improvement, mood balancing, pain relief and post-injury neural rehabilitation. Custom built algorithms tweak wave frequency, power and focal depth in real time via biological feedback, matching stimulation parameters to each user’s unique brain physiology for reliable therapeutic effects.
This device suits diverse groups: neurology patients needing auxiliary therapy, people looking to sharpen mental function, athletes healing from concussions, and wellness users prioritizing long-term brain care. It also acts as a practical research tool for labs to track long-term neural reactions to non-invasive stimulation.
Most users notice sharper concentration, lower anxiety, sounder sleep and clearer thinking within several weeks of regular wear. It runs silently and creates no obvious physical sensation, remaining unobtrusive during work, travel or workouts, and easily blends into everyday schedules.
Core user questions answered:
1. Safety of tFUS: Safe for repeated use when following standard power and duration limits.
2. Difference from TMS: TMS uses electromagnetic fields, while our patch relies on acoustic waves, which reach deeper brain tissue with less signal diffusion and finer targeting accuracy.
3. Independent use: Though built for self-operation, a preliminary clinician consultation is advised to set baseline stimulation plans.
Merging mature tFUS tech ,this patch creates a new standard for convenient, reliable long-term neuromodulation. It serves anyone managing neurological discomfort, boosting cognitive performance, or exploring modern brain regulation, backed by solid clinical neuroscience data.