arXiv:2511.21767eess.IVcs.AI2025-11

提出可解释框架LAYER,发现非肌肉组织对腰痛预测贡献巨大。

LAYER: A Quantitative Explainable AI Framework for Decoding Tissue-Layer Drivers of Myofascial Low Back Pain

  • 基于三维超声构建分层可解释AI框架,分析六层软组织
  • 非肌肉组织总显著性达0.316,接近肌肉的0.317
  • 挑战肌肉主导理论,为疼痛治疗提供新靶点

肌筋膜痛(MP)是慢性腰痛的主要原因,但其组织层面驱动因素尚不明确,缺乏可靠的影像生物标志物。现有研究主要关注肌肉,忽视了在生物力学中起关键作用的筋膜、脂肪等其他软组织。我们开发了基于解剖结构的可解释人工智能框架LAYER(Layer-wise Analysis for Yielding Explainable Relevance Tissue),分析三维超声中的六层组织,并量化其对MP预测的贡献。基于包含超过4000例扫描的多模态3D超声最大队列,LAYER发现非肌肉组织在疼痛预测中贡献显著:在B-mode图像中,深筋膜膜(DFM)显著性最高(0.420);在结合B-mode与剪切波图像时,非肌肉层总体显著性(0.316)几乎与肌肉(0.317)相当,挑战了传统以肌肉为中心的研究范式,可能影响治疗策略。LAYER建立了一个定量且可解释的框架,将特定组织结构与疼痛生理联系起来,揭示新组织靶点,并为软组织影像的可解释分析提供通用方法。

原文摘要 · Abstract (English)

Myofascial pain (MP) is a leading cause of chronic low back pain, yet its tissue-level drivers remain poorly defined and lack reliable image biomarkers. Existing studies focus predominantly on muscle while neglecting fascia, fat, and other soft tissues that play integral biomechanical roles. We developed an anatomically grounded explainable artificial intelligence (AI) framework, LAYER (Layer-wise Analysis for Yielding Explainable Relevance Tissue), that analyses six tissue layers in three-dimensional (3D) ultrasound and quantifies their contribution to MP prediction. By utilizing the largest multi-model 3D ultrasound cohort consisting of over 4,000 scans, LAYER reveals that non-muscle tissues contribute substantially to pain prediction. In B-mode imaging, the deep fascial membrane (DFM) showed the highest saliency (0.420), while in combined B-mode and shear-wave images, the collective saliency of non-muscle layers (0.316) nearly matches that of muscle (0.317), challenging the conventional muscle-centric paradigm in MP research and potentially affecting the therapy methods. LAYER establishes a quantitative, interpretable framework for linking layer-specific anatomy to pain physiology, uncovering new tissue targets and providing a generalizable approach for explainable analysis of soft-tissue imaging.

可解释AI软组织成像腰痛机制三维超声

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