Departamento de Ingeniería Mecánica y Fabricación, Escuela Superior Técnica de Ingeniería, Universidad de Sevilla, Camino de los Descubrimientos s/n, 41092, Seville, Spain.
Departamento de Medicina Física y Rehabilitación, Hospital Universitario Virgen de Valme. Universidad de Sevilla, Ctra. de Cádiz, 41014, Seville, Spain.
Ann Biomed Eng. 2023 Mar;51(3):618-631. doi: 10.1007/s10439-022-03076-y. Epub 2022 Sep 22.
The asymmetries study between both legs of the forces applied to the pedals in cycling is important because they may affect the performance of the cyclist or prevent the occurrence of injuries. Studies focused on analysing asymmetries in forces tend to consider only the effective force, disregarding the three-dimensional nature of the force. Furthermore, these studies do not analyse the possible physical or neurological causes that may have led to the appearance of the asymmetries. This paper presents a methodology to carry out three-dimensional analysis of the asymmetries of the forces applied in both pedals and discriminate the possible sources of these asymmetries. Seven participants, amateurs and without pathologies, were analysed. Two commercial pedals were instrumented to measure the three components of the force applied to each pedal. The Normalized Symmetry Index (NSI) and the Cross Correlation Coefficient (CCC) were used for the asymmetries analysis. Results showed that both indexes need to be used in conjunction to analyse the causes of asymmetry in the pedal forces from a 3D perspective along the pedal cycle. The NSI is an index that makes it possible to evaluate asymmetry by considering only the value of the force applied by each leg at each instant. The CCC makes it possible to evaluate whether the temporal evolutions of the forces applied by each leg are similar. Preliminary results suggest that the proposed methodology is effective for analysing asymmetries in the forces in a pedalling cycle from a three-dimensional point of view. Forces in the sagittal plane showed a high level of symmetry. The lateral-medial force presented the highest level of asymmetry due to the difference in the magnitudes of the applied forces by both legs and the existing time shift between the two force patterns. The results of this work will allow for more complete and accurate three-dimensional dynamic analyses of the lower body during pedalling.
研究施加在脚踏上的力在双腿之间的不对称性很重要,因为这可能会影响运动员的表现或防止受伤的发生。专注于分析力的不对称性的研究往往只考虑有效力,而忽略了力的三维性质。此外,这些研究并没有分析可能导致不对称性出现的物理或神经原因。本文提出了一种对施加在两个脚踏上的力的不对称性进行三维分析的方法,并对这些不对称性的可能来源进行区分。分析了 7 名业余且没有疾病的参与者。为了测量施加在每个脚踏上的力的三个分量,对两个商业脚踏进行了仪器化。使用归一化对称指数(NSI)和互相关系数(CCC)来进行不对称性分析。结果表明,这两个指标都需要结合使用,以便从 3D 角度分析沿脚踏周期的脚踏力的不对称性的原因。NSI 是一个通过仅考虑每条腿在每个时刻施加的力的值来评估不对称性的指数。CCC 可以评估每条腿施加的力的时间演变是否相似。初步结果表明,所提出的方法从三维角度分析蹬踏周期中力的不对称性是有效的。矢状面的力表现出高度的对称性。由于双腿施加的力的大小不同以及两个力模式之间存在时间滞后,横向-纵向力呈现出最高的不对称性。这项工作的结果将允许更完整和准确的三维动态分析蹬踏时的下肢。