Testing biomechanical models of human lumbar lordosis variability

scientific article published on 13 February 2017

Testing biomechanical models of human lumbar lordosis variability is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/AJPA.23189
P698PubMed publication ID28195302

P50authorDaniel E. LiebermanQ16195648
Eric R CastilloQ88286724
P2093author name stringRoss W Mair
Connie Hsu
P2860cites workSpinopelvic pathways to bipedality: why no hominids ever relied on a bent-hip-bent-knee gait.Q24605171
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Lower back painQ28650545
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Spinal lordosis optimizes the requirements for a stable erect postureQ35950923
Correlation between sagittal plane changes and adjacent segment degeneration following lumbar spine fusionQ36726686
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The Mechanisms of Muscle Hypertrophy and Their Application to Resistance TrainingQ37789610
Lumbar lordosis.Q38149543
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Morphological and postural sexual dimorphism of the lumbar spine facilitates greater lordosis in femalesQ39967672
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Disc height and lumbar index as independent predictors of degenerative spondylolisthesis in middle-aged women with low back painQ44633200
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The costal skeleton of Shanidar 3 and a reappraisal of Neandertal thoracic morphologyQ47584107
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Gravity line analysis in adult volunteers: age-related correlation with spinal parameters, pelvic parameters, and foot position.Q53756955
Spinal Pantograph-A Non-Invasive Technique for Describing Kyphosis and Lordosis in the Thoraco-Lumbar SpineQ53848048
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Euler buckling as a model for the curvature and flexion of the human lumbar spineQ57633626
P433issue1
P921main subjectabnormal lordosisQ744305
biomechanicsQ193378
P304page(s)110-121
P577publication date2017-02-13
P1433published inAmerican Journal of Biological AnthropologyQ4744260
P1476titleTesting biomechanical models of human lumbar lordosis variability
P478volume163

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