A Comprehensive Comparison and Validation of Published Methods to Detect Turn Switch during Alpine Skiing

Author:

Martínez AaronORCID,Snyder CoryORCID,Moore Stephanie R.ORCID,Stöggl ThomasORCID

Abstract

The instant of turn switch (TS) in alpine skiing has been assessed with a variety of sensors and TS concepts. Despite many published methodologies, it is unclear which is best or how comparable they are. This study aimed to facilitate the process of choosing a TS method by evaluating the accuracy and precision of the methodologies previously used in literature and to assess the influence of the sensor type. Optoelectronic motion capture, inertial measurement units, pressure insoles, portable force plates, and electromyography signals were recorded during indoor treadmill skiing. All TS methodologies were replicated as stated in their respective publications. The method proposed by Supej assessed with optoelectronic motion capture was used as a comparison reference. TS time differences between the reference and each methodology were used to assess accuracy and precision. All the methods analyzed showed an accuracy within 0.25 s, and ten of them within 0.05 s. The precision ranged from ~0.10 s to ~0.60 s. The TS methodologies with the best performance (accuracy and precision) were Klous Video, Spörri PI (pressure insoles), Martinez CTD (connected boot), and Yamagiwa IMU (inertial measurement unit). In the future, the specific TS methodology should be chosen with respect to sensor selection, performance, and intended purpose.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference46 articles.

1. A Kinematic and Kinetic Study of Alpine Skiing Technique in Slalom;Reid,2010

2. Control systems approach to a ski-turn analysis

3. Kinematic determination of the beginning of a ski turn;Supej;Kinesiol. Slov,2003

4. Imu and gnss-based turn switch detection in alpine ski racing;Fasel,2018

5. Comparison of the Turn Switch Time Points Measured by Portable Force Platforms and Pressure Insoles

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