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February 9, 20264 citations

Technology on Snow and Ice: Innovation, Monitoring, and Performance for the Olympic Winter Games Milano Cortina 2026.

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AAAndreas AlmqvistMSMatej SupejPDPeter Düking

Key Points

  • The review aims to synthesize literature on technology's role in athlete performance and surface interaction for winter sports.
  • Conducted a narrative review based on existing scientific literature.
  • Analyzed the interplay between equipment, athletes, and surface conditions.
  • Evaluated sensing and monitoring technologies with field validation.
  • Discussed digitalization in coaching, officiating, and broadcasting.
  • Identified key factors affecting winter sport performance, including friction and drag.
  • Recommended alignment of equipment and surface preparation with performance conditions.
  • Emphasized the need for reliable sensors and analytics for performance assessment.
  • Highlighted the importance of regulatory compliance in technology design.

Abstract

Elite performance in Olympic winter sports depends on the interplay among the athlete, equipment, and the snow or ice. This naturally evolves with temperature, humidity, wind, preparation, and contact between the equipment and its surface. Together, these factors continuously rebalance the forces of gravity, aerodynamic drag, and friction, requiring athletes, coaches, and organizers to adapt technique, equipment, and surface management, e.g., snow grooming and salting, ice resurfacing or pebbling, and rink climate control. This narrative review (SANRA-guided) synthesizes the scientific literature across four domains: (i) the evolution of equipment and athlete-surface interaction; (ii) the physics of resistive forces and targeted countermeasures; (iii) sensing and monitoring with robust, field-validated technologies and analytics; and (iv) the digitalization of coaching, officiating, and broadcasting. We integrate design and validation with sport regulations and governance. This includes the ban on fluorinated waxes, geometry and mass limits, and principles for data stewardship, model transparency, and fairness. A central component of this review is the assessment of quality aspects of technologies, including the assessment of ecological validity under field-specific conditions before their use in high-stakes coaching, medical, or officiating decisions. We conclude with actionable recommendations for Milano-Cortina 2026: (i) align equipment and surface preparation with expected regimes of drag and friction; (ii) deploy sensors and analytics with demonstrated accuracy, precision, and reliability; (iii) quantify uncertainty in key performance indicators; and (iv) treat federation rules as a priori design constraints. This approach enables innovation to deliver faster, safer, and more equitable outcomes in winter sport at Milano-Cortina 2026 and beyond.

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Cite This Study

Almqvist et al. (2026) studied this question.

synapsesocial.com/papers/69897a06f0ec2af6756e8345https://doi.org/10.1111/sms.70218
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Olympic Snow Sports: Current Insights and Future Directions for Milano Cortina 2026 and Beyond2026 · 1 citations
  2. 2Olympic Snow Sports: Current Insights and Future Directions for Milano Cortina 2026 and Beyond2026
  3. 3Winter Sports Science: Milano‐Cortina 2026 and the Road Ahead2026
  4. 4A tribological perspective on friction and performance in Olympic snow and ice sports2025 · 4 citations
  5. 5A Review of the Application and Cutting-Edge Research Progress of Drag-Reducing Coating Technology in Ice and Snow Sports Equipment2026