The Spinal Curvature of Three Different Sitting Positions Analysed in an Open MRI Scanner

Author:

Baumgartner Daniel12,Zemp Roland1,List Renate1,Stoop Mirjam1,Naxera Jaroslav3,Elsig Jean Pierre4,Lorenzetti Silvio1

Affiliation:

1. Institute for Biomechanics, ETH Zurich, Zurich, Switzerland

2. School of Engineering, Winterthur, Switzerland

3. Röntgeninstitut Zürich-Altstetten, Zurich, Switzerland

4. Spine Surgery, 8700 Küsnacht, Switzerland

Abstract

Sitting is the most frequently performed posture of everyday life. Biomechanical interactions with office chairs have therefore a long-term effect on our musculoskeletal system and ultimately on our health and wellbeing. This paper highlights the kinematic effect of office chairs on the spinal column and its single segments. Novel chair concepts with multiple degrees of freedom provide enhanced spinal mobility. The angular changes of the spinal column in the sagittal plane in three different sitting positions (forward inclined, reclined, and upright) for six healthy subjects (aged 23 to 45 years) were determined using an open magnetic resonance imaging (MRI) scanner. An MRI-compatible and commercially available office chair was adapted for use in the scanner. The midpoint coordinates of the vertebral bodies, the wedge angles of the intervertebral discs, and the lumbar lordotic angle were analysed. The mean lordotic angles were16.0±8.5(mean ± standard deviation) in a forward inclined position,24.7±8.3in an upright position, and28.7±8.1in a reclined position. All segments from T10-T11 to L5-S1 were involved in movement during positional changes, whereas the range of motion in the lower lumbar segments was increased in comparison to the upper segments.

Publisher

Hindawi Limited

Subject

General Environmental Science,General Biochemistry, Genetics and Molecular Biology,General Medicine

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