Remember my wife, up every night shaking her hands at the edge of the bed?
Three weeks after my discovery, she was back at her knitting table, finishing the blanket she'd given up on months before, without her hands going numb once.
No pills. No shots. No surgery.
After almost two years of watching her suffer, I could hardly believe it.
Just 15 minutes a day of something so stupidly simple, I'm embarrassed it took me this long to figure it out.
To actually calm carpal tunnel, you have to reach the median nerve with TWO exact wavelengths of light at the same time:
- 660nm red light — works near the surface to calm the inflammation that's swelling the tunnel and pressing on the nerve.
- 850nm near-infrared light — reaches deep to the nerve itself and reopens the blood vessels, flooding the starved nerve with oxygen-rich blood.
And once the blood flow comes back, the oxygen comes with it. So the nerve cells can finally make ATP again, the fuel they need to wake up and repair.
Miss either wavelength, and you're just quieting the symptom.
That's why braces don't work. (They only hold the wrist still — no blood flow, no oxygen.)
That's why cortisone doesn't work for long. (It calms the inflammation, but never restores the blood flow.)
That's why cheap red light wraps don't work. (Wrong wavelengths — the light never reaches the nerve.)
You need both wavelengths. At the same time. At the exact right depth.
I call it the Dual-Wave Method.
And that's exactly what I built into the InfraWrap.
After Diane got her hands back, I couldn't stop thinking about everyone else.
Because she isn't rare.
Millions of people are lying awake right now, shaking their hands at the edge of the bed.
Cycling through the same braces, shots, and surgery consults we did.
Being told the same thing: manage it, or go under the knife.
I'd found something that actually worked using nothing but two precise wavelengths of light.
And it felt wrong to keep it to one person.
So I set out to turn my rough prototype into something anyone could use at home.
The wavelengths themselves were the easy part. 660nm and 850nm. The research was clear.
The hard part was fitting that light into a wrap. I've never engineered anything before, so I teamed up with a group of biomedical engineers who could.
Getting clinical-grade dual-wavelength light into something small enough to wear, something that hugged the wrist and thumb and held every LED against the skin
Took months to get right.
But I wasn't building another gadget to sit in a drawer.
I was building the thing I wish someone had handed my wife two years earlier.
Cordless. Contoured. Fifteen minutes a day.
I made the prototype and started selling it and word spread around fast.
That's when the threats started