Evidence map›Paper›PMID 41992483›Full record

ArticleMedicine and science in sports and exercise2026

Classifying Endurance Runners by Kinematics Strengthens Relationships of Muscle-Tendon Unit Function with Running Economy and Performance.

Yuuri Eihara, Momoka Kinoshita, Koshi Jotoku, Sumiaki Maeo, Hiroaki Kanehisa, Tadao Isaka

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Article in Medicine and science in sports and exercise, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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4 · The record

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5 · Who and what money

Authors and funding

6 authors.

Yuuri EiharaFaculty of Sport and Health Science, Ritsumeikan University, Shiga, JAPAN.
Momoka KinoshitaFaculty of Sport and Health Science, Ritsumeikan University, Shiga, JAPAN.
Koshi JotokuFaculty of Sport and Health Science, Ritsumeikan University, Shiga, JAPAN.
Sumiaki MaeoFaculty of Sport and Health Science, Ritsumeikan University, Shiga, JAPAN.
Hiroaki KanehisaInstitute of Advanced Research for Sport and Health Science, Ritsumeikan University, Shiga, JAPAN.
Tadao IsakaFaculty of Sport and Health Science, Ritsumeikan University, Shiga, JAPAN.

Funding

JST SPRING JPMJSP2101
6 · The paper itself

Abstract

purposeRunning kinematics and sex may alter the primary muscle and tendon demands for propulsion and shock absorption, potentially modifying how the muscle-tendon unit (MTU) function relates to the energy cost of running (ECR) and performance. This study examined whether clustering runners by running kinematics strengthens these relationships and how they differ by sex.

methodsOne hundred twenty endurance runners (60 females) underwent assessments of MTU function, including slow (30° s -1 ) and fast (180° s -1 ) isokinetic knee extension and flexion torque and performance in countermovement, drop, and rebound jumps. These variables were summarized using principal component analysis. Running kinematics and ECR were assessed at 11 km·h -1 and 80% of , and the season's best time (World Athletics score) was recorded. Runners were clustered via k-means based on foot-strike angle and knee extension/flexion range of motion. Stepwise regression analyses tested whether MTU-related associations differed between cluster-specific and whole-cohort models.

resultsThe k-means identified three or four clusters per sex at each running velocity condition. In whole-cohort analyses for each sex, only weak to fair correlations were found between MTU function and either energy cost ( r = -0.204 to 0.267) or World Athletics score ( r = -0.276 to 0.175). Clustering significantly ( P < 0.05) strengthened these relationships in a cluster-specific manner (adjusted R2 = 0.159-0.595). This pattern was more evident at 80% of , particularly in male clusters. Across conditions, MTU-related variables were selected in a greater proportion of female clusters (57.1%) than male clusters (31.2%).

conclusionsKinematic-based clustering strengthens sex- and cluster-specific associations of MTU function with the ECR and performance, supporting more individualized performance enhancement strategies.

Indexed as

Athletic PerformanceMuscle, SkeletalPhysical EnduranceRunningTendonsAdultBiomechanical PhenomenaCluster AnalysisEnergy MetabolismFemaleHumansMaleRange of Motion, ArticularSex FactorsTorqueYoung AdultCLUSTER ANALYSISENERGY COST OF RUNNINGJUMP PERFORMANCELONG-DISTANCE RUNNINGMUSCLE STRENGTH

Identifiers

PMID41992483
PMCPMC13446922

What Socratic holds

Textmetadata
LicenceCC BY-NC-ND
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Registered trials

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.