Showing posts with label Nicholas Hulscher. Show all posts
Showing posts with label Nicholas Hulscher. Show all posts

Sunday, July 19, 2026

NICHOLAS HULSCHER: Sunlight goes through the human body, completely through it. But not only does it go through it, it improved the vision of participants and rapidly improved their mitochondrial function within just minutes

Sunlight goes through the human body, completely through it.  But not only does it go through it, it improved the vision of participants and rapidly improved their mitochondrial function within just minutes of fully-clothed sun exposure.  So it even goes through the clothes.  --Nicholas Hulscher


The experiment displayed in this slide is accurate and represents real thermal imaging data. This specific test was conducted by researcher Toshiaki Ichinose from Japan's National Institute for Environmental Studies. The slide visually demonstrates the principles of albedo and solar radiation absorption under direct sunlight: The Science Behind the SlideHigh-Absorption Colors: Fabric colors like black and dark green absorb the vast majority of visible and near-infrared light wavelengths, converting that radiation directly into heat energy. In this specific experiment, the surface temperatures of the black and dark green polo shirts exceeded 50°C (122°F) after just five minutes of exposure. High-Reflection Colors: Lighter colors like white and yellow possess a high albedo, meaning they reflect most of the sun's wavelengths rather than absorbing them. The white shirt remained the coolest, hovering around 30°C (86°F) under identical outdoor conditions. The Infrared Surprise: Many viewers are surprised to see the dark green shirt appearing just as hot (or slightly hotter) than the black shirt on the thermal camera. This occurs because the specific dye used for the dark green fabric absorbs a massive percentage (around 87%) of near-infrared light from the solar spectrum, making it incredibly efficient at generating surface heat. Caveat: Shirt Temperature vs. Actual Body TemperatureWhile the surface temperature of the fabric shifts exactly as shown, how it impacts actual human body temperature depends on a few additional variables: Garment Fit: A tight-fitting dark shirt will transfer heat directly to the skin via conduction. However, a loose-fitting dark shirt can create a chimney effect, where the heated fabric warms the air inside, causing it to rise and pull cooler air up from the bottom, a design principle utilized in traditional desert garments.

Fabric Material: Heavy, non-breathable fabrics trap metabolic body heat and moisture, whereas lightweight, breathable fabrics allow for evaporative cooling through sweat, regardless of the color spectrum.