Rlab Interval Hypoxia-Hyperoxia Training Device is a new type of intelligent intermittent hypoxic training equipment, also known as a cell trainer. The product monitors and judges the user's current physical state in real-time through blood oxygen saturation sensors, heart rate sensors, etc., and provides users with mixed gases with different oxygen concentrations (9-34%) intermittently and accurately through intelligent algorithms.
People with ObesityHypoxic resistance training improves muscle hypertrophy, reduces fat, and accelerates metabolism.
Fitness EnthusiastsSupports athletes by boosting endurance, functional capacity, speed, and strength.
InsomniacsImproves sleep quality—counteracts sleepless nights and daytime fatigue.
Mental WorkersEases dizziness, insomnia, and forgetfulness caused by prolonged mental strain.
Altitude training, also known as hypoxic training, is training at high altitude where the air has lower oxygen content. This helps athletes increase red blood cell count and improve oxygen efficiency. Adapting to lower oxygen levels can improve endurance and performance when returning to sea level. Lower oxygen also drives the metabolism harder and burns more calories.
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What are the main components of the Rlab IHHT system?
The system include a host device, a hose, an oxygen mask, and an oximeter.
How does intermittent hypoxic-hyperoxia treatment (IHHT) work?
Wear a mask and select training mode. Inhales hypoxic air with intervals of hyperoxia air. It takes about 30-50 minutes per session.
How many sessions are recommended for IHHT?
Sessions usually last 30-50 min and are recommended 2-3 times per week to allow the body to adapt and recover.
What Does IHHT Feel Like?
You may feel tired after initial sessions, but energy levels increase with use. It leads to easier breathing and improved recovery.
Will I get health benefits from an IHHT system?
Yes, it alleviates fatigue, stress, and burnout. It improves cardiovascular performance, metabolism, and the immune system.
Is IHHT scientifically backed?
Yes, the 2019 Nobel Prize in Physiology or Medicine highlighted the benefits of oxygen adaptation for body rejuvenation.