2004
DOI: 10.1016/j.clinbiomech.2004.02.003
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Gait coordination in pregnancy: transverse pelvic and thoracic rotations and their relative phase

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Cited by 78 publications
(73 citation statements)
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References 31 publications
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“…While walking on the treadmill, it was found that in pregnancy self-selected velocity was significantly lower, while pelvis and thorax rotation amplitudes were slightly reduced [6]. Gilleard found that sagittal plane range of motion for thoracic, pelvic and thoracolumbar spine and walking velocity, showed no linear trends with advancing pregnancy.…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…While walking on the treadmill, it was found that in pregnancy self-selected velocity was significantly lower, while pelvis and thorax rotation amplitudes were slightly reduced [6]. Gilleard found that sagittal plane range of motion for thoracic, pelvic and thoracolumbar spine and walking velocity, showed no linear trends with advancing pregnancy.…”
Section: Introductionmentioning
confidence: 99%
“…These changes include weight gain [1,2], extended lower back [3], increased ligamentous laxity [4], decreased neuromuscular control and coordination [5,6], swelling of the arms and legs [7], altered biomechanical parameters such as changes in mechanical loading and joint kinetics [8][9][10], decreased of abdominal muscle strength [11] and increased spinal lordosis [2]. Also, more than 50% of the women reported swelling of the foot, ankle, and leg, unsteady gait, increased foot width and hip pain [12].…”
Section: Introductionmentioning
confidence: 99%
“…Hauswald által 2002-ben publikált tanulmányban a terhes nő járására jellemző vál-tozásokat kutatták, leírták, hogy a megnöveke-dett testsúly miatt a járás sebessége csökken, a lépésszélesség nő 4 . Wu és munkatársai megerősítik tanulmányukban, hogy a várandósok járása lassul a koordinációs hibák elkerülése érdekében 10 .…”
Section: Bevezetésunclassified
“…However, the popularity and clinical applicability of this method has waned, in part due to the lack of appropriate methodologies for quantitatively comparing phase portraits of different individuals or limbs. Fourier analyses of the phase shapes has been attempted [41], however, the resulting Fourier coefficients are sample dependent and difficult for clinicians to relate to their patients. Quantification of the kinematic and kinetic parameters for all limb segments and joints throughout an entire stride would permit both a more holistic representation of limb movement, as well as more clinically useful results that identify the nature of the asymmetry and the relative time that it occurs during a stride.…”
Section: Need For New Analysis Toolsmentioning
confidence: 99%