Knee and Hip Joint Kinematics Predict Quadriceps and Hamstrings Neuromuscular Activation Patterns in Drop Jump LandingsReportar como inadecuado




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Purpose

The purpose was to assess if variation in sagittal plane landing kinematics is associated with variation in neuromuscular activation patterns of the quadriceps-hamstrings muscle groups during drop vertical jumps DVJ.

Methods

Fifty female athletes performed three DVJ. The relationship between peak knee and hip flexion angles and the amplitude of four EMG vectors was investigated with trajectory-level canonical correlation analyses over the entire time period of the landing phase. EMG vectors consisted of the {vastus medialisVM,vastus lateralisVL}, {vastus medialisVM,hamstring medialisHM}, {hamstring medialisHM,hamstring lateralisHL} and the {vastus lateralisVL,hamstring lateralisHL}. To estimate the contribution of each individual muscle, linear regressions were also conducted using one-dimensional statistical parametric mapping.

Results

The peak knee flexion angle was significantly positively associated with the amplitudes of the {VM,HM} and {HM,HL} during the preparatory and initial contact phase and with the {VL,HL} vector during the peak loading phase p<0.05. Small peak knee flexion angles were significantly associated with higher HM amplitudes during the preparatory and initial contact phase p<0.001. The amplitudes of the {VM,VL} and {VL,HL} were significantly positively associated with the peak hip flexion angle during the peak loading phase p<0.05. Small peak hip flexion angles were significantly associated with higher VL amplitudes during the peak loading phase p = 0.001. Higher external knee abduction and flexion moments were found in participants landing with less flexed knee and hip joints p<0.001.

Conclusion

This study demonstrated clear associations between neuromuscular activation patterns and landing kinematics in the sagittal plane during specific parts of the landing. These findings have indicated that an erect landing pattern, characterized by less hip and knee flexion, was significantly associated with an increased medial and posterior neuromuscular activation dominant hamstrings medialis activity during the preparatory and initial contact phase and an increased lateral neuromuscular activation dominant vastus lateralis activity during the peak loading phase.



Autor: Bart Malfait, Bart Dingenen, Annemie Smeets, Filip Staes, Todd Pataky, Mark A. Robinson, Jos Vanrenterghem, Sabine Verschueren

Fuente: http://plos.srce.hr/



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