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May 31, 2026Osteoporosis and Sarcopenia1 citationsOpen Access

Deep learning–based quantification of muscle volume and attenuation and their associations with preinjury ambulatory status in patients with hip fractures

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TATomoki AsanoKUKeisuke UemuraSKSotaro Kono

Key Points

  • Explore the relationship between muscle volume, attenuation, and preinjury ambulatory status in hip fracture patients using deep learning.
  • Retrospective analysis of 170 female patients with hip fractures and preoperative CT scans.
  • Muscle segmentation and measurement were conducted using a deep learning model on the unfractured side.
  • Preinjury ambulatory status was categorized using the Koval index, and associations were analyzed with ordinal logistic regression.
  • Ambulatory status was significantly associated with muscle attenuation, CCI, and BMI across all muscle groups (p<0.05).
  • Patients with poorer ambulatory function showed lower muscle attenuation, higher CCI, and lower BMI based on the model's findings.
  • Muscle volume did not show a significant association with ambulatory status.

Abstract

Objectives Use a deep learning model on computerized tomography images to explore how muscle volume and attenuation relate to preinjury ambulatory levels in patients with intertrochanteric or femoral neck fractures. Methods This retrospective study involved 170 female patients with intertrochanteric or femoral neck fractures who had preoperative hip computed tomography (CT) scans. Using a deep learning–based model, muscles on the unfractured side were automatically segmented, and the muscle volume and attenuation were measured for four groups: gluteal muscles, hip adductors, quadriceps, and hamstrings. Preinjury walking ability was categorized into three groups based on the Koval index: Group 1 (Koval index 1–3; walking outdoors), Group 2 (Koval index 4–6; walking indoors), and Group 3 (Koval index 7; chairbound or bedridden). Finally, associations between preinjury ambulatory status and muscle parameters, patients’ age, body mass index (BMI), hip bone mineral density, geriatric nutritional risk index, and Charlson comorbidity index (CCI) were analyzed using ordinal logistic regression models. Results Ambulatory status was associated with muscle attenuation, CCI, and BMI across all four muscle groups. Other factors did not reach statistical significance. Patients with poorer ambulatory function had lower muscle attenuation, higher CCI, and lower BMI. Conclusions Muscle attenuation on CT images correlated with preinjury ambulatory status, whereas muscle volume did not. This indicates that evaluating muscle quality via CT may more accurately reflect functional decline in older adults than assessing muscle quantity alone.

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Cite This Study

Asano et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd1db5783ba022b6fd50dhttps://doi.org/10.1016/j.afos.2026.05.001
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