The quantification of work-related musculoskeletal risk factors is of great importance; however, only a few tools allow objective, unrestricted measurements of spinal posture and motion in workplaces. This study was performed to evaluate the applicability of the Epionics system in a sedentary workplace. The system is mobile and wireless and assesses lumbar lordosis, pelvic orientation and spinal motion, without restricting subjects in their movements. In total, 10 males were monitored while sitting for 2 h on static and dynamic office chairs and on an exercise ball, to evaluate the effect of dynamic sitting. The volunteers were able to perform their work unhampered. No differences among the tested furniture could be detected with respect to either the lordosis or the number of spinal movements after habituation to the furniture; however, differences in pelvic orientation were statistically significant. The results of the present study indicate that Epionics may be useful for the quantitative assessment of work-related risk factors. Practitioner Summary: Only a few tools allow objective, unrestricted measurements of spinal posture and motion in the workplace. Epionics SPINE measures lumbar lordosis, pelvic orientation and spinal motion under nearly unrestricted conditions and can be used to quantify work-related musculoskeletal risk factors. We demonstrated the use of this tool in the workplace-analysis.
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http://dx.doi.org/10.1080/00140139.2015.1019938 | DOI Listing |
Acta Neurochir (Wien)
January 2025
Department of Orthopaedic Surgery, Seoul National University College of Medicine, SMG-SNU Boramae Medical Center, 20 Boramae-Ro 5-Gil, Dongjak-Gu, Seoul, Republic of Korea.
Background: The degenerative spondylosis can cause the difficulty in maintaining sagittal and coronal alignment of spine, and X-ray parameters are the gold standard to analyze the malalignment. This study aimed to develop a new 3D full body scanner to analyze the spinal balance and compare it to X-ray parameters.
Methods: Ninety-seven adult participants who suffer degenerative spondylosis underwent 3D full body scanning, whole spine X-rays, clinical questionnaires and body composition analyses.
Cureus
December 2024
Department of Physical Therapy, Faculty of Rehabilitation Sciences, Nishikyushu University, Saga, JPN.
Purpose: To evaluate the reliability and validity of spinal alignment measurements in the raised arm standing posture using a smartphone app.
Background: An inclinometer is a reliable tool for measuring spinal alignment. Measurement of static standing posture spinal curvature angles using smartphone inclinometer applications has been investigated in the lumbar spine but has not been reported for the thoracic spine.
Gait Posture
January 2025
Department of Orthopaedic Surgery, Nagoya Joint Replacement Orthopaedic Clinic, Japan.
Background: Sagittal spinal alignment is closely related to knee joint function, and sagittal malalignment can affect knee joint pain. This study investigated the association between knee joint pain intensity and sagittal spinal alignment in patients with knee osteoarthritis.
Methods: This retrospective study enrolled 187 patients with knee osteoarthritis who were scheduled for primary unilateral total knee arthroplasty (TKA) from December 2021 to March 2023.
Spine (Phila Pa 1976)
January 2025
Department of Neurological Surgery, The Ohio State University Wexner Medical Center, Columbus, Ohio, USA.
Study Design: Prospective cohort study.
Objective: This study aimed to investigate the durability of postural stability after ASD correction surgery and its' association with clinical outcomes.
Summary Of Background Data: The prevalence of symptomatic adult spinal deformity (ASD) necessitates surgical intervention, aiming to correct global spinal balance and spinopelvic parameters.
Glia
January 2025
Burke Neurological Institute, White Plains, New York, USA.
Manipulating wound healing-associated signaling after SCI presents a promising avenue for increasing the recovery of function after injury. This study explores the potential of targeting molecular regulators of wound healing, initially identified in nonneural tissues, to enhance outcomes after SCI. Astrocytes, pivotal in central nervous system wound healing, play a crucial role in tissue remodeling and recovery.
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