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European Radiology, ISSN 0938-7994, 2/2019, Volume 29, Issue 2, pp. 599 - 608
Chemical shift encoding-based water–fat MRI derived proton density fat fraction (PDFF) of the paraspinal muscles has been emerging as a surrogate marker in... 
Paraspinal muscle | Muscle strength | Medicine & Public Health | Diagnostic Radiology | Magnetic resonance imaging | Internal Medicine | Interventional Radiology | Imaging / Radiology | Ultrasound | Neuroradiology | LOW-BACK-PAIN | MULTIFIDUS | QUANTIFICATION | SIZE | EXERCISE | INFILTRATION | REPLACEMENT | SKELETAL-MUSCLE | HEALTH | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | AGE | Protons | Cross-Sectional Studies | Lumbar Vertebrae - diagnostic imaging | Humans | Paraspinal Muscles - diagnostic imaging | Magnetic Resonance Imaging - methods | Paraspinal Muscles - physiology | Body Water - diagnostic imaging | Male | Adipose Tissue - diagnostic imaging | Lumbar Vertebrae - anatomy & histology | Psoas Muscles - anatomy & histology | Psoas Muscles - diagnostic imaging | Young Adult | Low Back Pain - physiopathology | Low Back Pain - diagnostic imaging | Adult | Female | Isometric Contraction - physiology | Psoas Muscles - physiology | Paraspinal Muscles - anatomy & histology | Back pain | Construction | Statistical analysis | Spine | Change detection | Spine (lumbar) | Proton density (concentration) | Muscles | Psoas muscle | Regression analysis | Muscle contraction | Organic chemistry | Sarcopenia | Chemical equilibrium | Regression models | Pain | Coding | Back injuries | Predictions | Muscular strength | Neuromuscular system
Journal Article
PLoS ONE, ISSN 1932-6203, 11/2017, Volume 12, Issue 11, p. e0187765
Objective This study aimed to establish sex- and age-dependent distributions of the cross sectional area and fatty infiltration ratio of paraspinal muscles,... 
LOW-BACK-PAIN | MULTIDISCIPLINARY SCIENCES | SARCOPENIA | GROWTH-HORMONE-SECRETION | COHORT | QUALITY-OF-LIFE | BODY-COMPOSITION | PREVALENCE | RADIOGRAPHIC LUMBAR SPONDYLOSIS | FATTY INFILTRATION | AGE | Age Factors | Humans | Middle Aged | Paraspinal Muscles - diagnostic imaging | Adipose Tissue - physiopathology | Male | Low Back Pain - physiopathology | Muscular Atrophy - physiopathology | Low Back Pain - diagnostic imaging | Aged, 80 and over | Female | Low Back Pain - pathology | Lumbar Vertebrae - physiopathology | Body Mass Index | Cross-Sectional Studies | Lumbar Vertebrae - diagnostic imaging | Japan | Muscular Atrophy - pathology | Adipose Tissue - pathology | Logistic Models | Adipose Tissue - diagnostic imaging | Muscular Atrophy - diagnostic imaging | Paraspinal Muscles - physiopathology | Magnetic Resonance Imaging | Paraspinal Muscles - pathology | Sex Factors | Aged | Lumbar Vertebrae - pathology | Degeneration, Fatty | Physiological aspects | Back | Muscles | Research | Diagnosis | Backache | Risk factors | Back pain | Nuclear magnetic resonance--NMR | Spine | Spine (lumbar) | Low back pain | Sex | Population studies | Arthritis | Disability | Confidence intervals | Sarcopenia | Body mass index | Mens health | Pain | Surgery | Aging | Population | Degeneration | Age | Medical research | Construction | Medical imaging | Statistical analysis | Regression analysis | Preventive medicine | Quality of life | Studies | Musculoskeletal system | Magnetic resonance imaging | Body mass | Womens health | Body size | Men | Comparative studies | Resonance | Infiltration | Nuclear magnetic resonance | NMR
Journal Article
Journal Article
Journal Article
Journal of Spinal Disorders and Techniques, ISSN 1536-0652, 09/2013, Volume 29, Issue 10, pp. 441 - 447
Study Design: A comparative case-control study. Objective: The aim of this study was to quantify the degree of paraspinal muscle changes in degenerative lumbar... 
cross-sectional area | paraspinal muscle | LOW-BACK-PAIN | fat infiltration | SURGICAL-TREATMENT | quantitative evaluation | CLINICAL NEUROLOGY | TRUNK MUSCLES