Our innovative Chill Kuzzi fabric technology supports better overall dog health by using naturally-occurring Far Infra-red (FIR) Therapy to stimulate blood circulation and oxygen flow. A proprietary bio-mineral finish is coated on our soft and comfortable fabrics; this novel finish captures, stores, and reflects the dog’s own energy back deep into tissue to stimulate cells.
Stimulated cells improve blood circulation which can increase oxygen levels throughout the body which has been shown to reduce muscle fatigue by nourishing muscles and flushing lactic acid. By flushing the blood and reducing cortisol levels, FIR therapy can lessen the intensity of anxiety and fearfulness episodes, which helps dogs stay calmer during thunderstorms and fireworks events.
Increased blood flow has been shown to ease the aches, pains, and joint stiffness associated with age or disability and can relieve pain and inflammation associated with arthritis.
Far infra-red (FIR) reflecting bioceramic technology in dog blankets, beds, and clothing utilizes advanced materials to reflect specific wavelengths of light back into the body. Embedded bioceramic particles in the fabric absorb and then re-emit FIR waves, which are subtle, longer infrared wavelengths that penetrate deep beneath the skin. These FIR waves naturally interact with tissues, promoting circulation and delivering gentle warmth to the skin and underlying muscles. Unlike other heat therapies, FIR operates at the cellular level, stimulating blood circulation without overheating the skin.
The mechanism behind FIR’s effectiveness lies in its ability to gently elevate tissue temperatures, which encourages the expansion of blood vessels, enhancing oxygen delivery. This process not only soothes muscle soreness but also alleviates inflammation, a common issue in dogs suffering from joint problems or arthritis.
Our innovative Chill Kuzzi fabric technology supports better overall dog health by using naturally-occurring Far Infra-red Rays (FIR) Therapy to stimulate blood circulation and oxygen flow.