Sports Medicine
Optimized Recovery
and Performance
Optimizing athletic performance depends not only on the intensity and quality of training, but equally on the speed and effectiveness of recovery. HiToP® provides a power package for sports clinics and athletic teams with its combined benefits of strengthening and rehabilitation.
Muscle Strengthening and Energy Optimization
Studies indicate that HiToP® significantly boosts muscle performance by helping rebuild strength and increase muscle torque. HiToP® oscillations penetrate deeply into the body, energizing mitochondria and receptors thereby enhancing cell function, resulting in increased energy production and reduced muscle fatigue that ultimately leads to greater muscle mass and strength.
Reduced Inflammation for Enhanced Recovery
While training and physical activity naturally trigger inflammation as part of muscle repair and adaptation, excessive or prolonged inflammation can hinder performance. HiToP® helps modulate inflammation by improving microcirculation, enhancing microvascular endothelial cell (MEC) function, and promoting the differentiation of hematopoietic stem cells (HSCs) into immune cells. This stimulation of anti-inflammatory activity supports faster recovery, helps maintain homeostasis, and optimizes performance.
Reduced Edema for Injury Recovery
Injury Rehab and Tissue Regeneration
HiToP® increases VEGFR2 expression on circulating hematopoietic stem cells (HSCs), enhancing their differentiation and functionality. Together with endothelial progenitor cells (EPCs), these HSCs are crucial for processes like blood vessel formation, wound healing, and tissue regeneration. Simultaneously, HiToP® improves microcirculation by enhancing blood flow and delivering vital oxygen and nutrients to tissues, facilitating faster tissue repair, effective wound healing, and increased collagen production essential for skin and tissue regeneration.
HiToP® Treatments

Wellness and Longevity

Functional Medicine

Sport Medicine

Pain and Inflammation

Soft Tissue Regeneration