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Orczykowski, M. E.

Publications and source records attributed to Orczykowski, M. E..

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Teaching adipose tissue as an organ system: addressing weight bias and enhancing anatomical understanding through AdipoAtlas

Adipose tissue (body fat) is increasingly recognized as a dynamic organ system essential to human health, with distinct depots that serve specialized biological functions. However, this understanding is not reflected in traditional human anatomy curricula, where adipose tissue is typically introduced only as connective tissue and treated in dissection as an obstacle to be removed rather than a structure worthy of study. Anatomy dissection courses have been identified as a source of negative weight bias in medical students, with students reporting disgust toward adipose tissue and frustration with its removal to visualize course-required anatomical structures. Here, we hypothesize that reframing adipose tissue as a functional organ system within anatomy curricula may improve students understanding of human anatomy and mitigate these negative perceptions. To test this, we created a human adipose atlas (AdipoAtlas) by identifying and photographing macroscopic adipose depots in an anatomical donor and organizing these images into an anatomical reference with evidence-based functional descriptions. The atlas was integrated into a human anatomy dissection course, followed by a survey assessing students perceptions of adipose tissue and attitudes related to weight bias, with a concurrent non-dissection anatomy course serving as a control. Students in the adipose-inclusive course reported more positive perceptions and improved understanding of adipose tissue as a multifunctional organ system, while responses related to weight-based discrimination and broader attitudes toward body size were similar between groups. These results support our hypothesis that integrating adipose tissue into anatomy education improves anatomical understanding and may reduce negative weight-related perceptions.

scientific communication and education↗

The Unlabeled Organ: Adipose tissue and normativity in anatomy and physiology texts

Adipose tissue is a dynamic and essential organ system with roles in metabolism, endocrine signaling, immune function, thermoregulation, and structural support. Despite this, it has historically been framed as inert or pathological, raising questions about how it is represented in biomedical education. We evaluated the visual and textual representation of adipose tissue across widely used anatomy, physiology, and combined anatomy-physiology textbooks. Images were coded for presence, labeling, and degree of representation, and text mentions of "adipose" and "fat" were quantified across functional contexts. In anatomy textbooks, adipose tissue was frequently present (6.6-21.7% of images) but rarely labeled (<5% of all images; <25% of adipose-containing images). Representation was often minimal or incidental, and text descriptions were predominantly non-functional, with a preference for the term "fat." In physiology textbooks, adipose tissue was more often described in functional terms and more frequently referred to as "adipose," particularly in metabolic contexts, but appeared in relatively few images (<5%) and was typically minimally depicted. Combined anatomy-physiology texts showed intermediate patterns but retained low labeling rates and limited integration of structure and function. Across all textbook types, terminology varied by context, with "fat" more common in non-functional and obesity-related descriptions and "adipose" associated with metabolic functions, suggesting context-dependent bias in terminology. Overall, adipose tissue is present but inconsistently framed across visual and textual domains. This fragmentation may limit recognition of adipose tissue as an integrated organ system and may reinforce reductive or stigmatizing interpretations. Aligning educational representations with current scientific understanding is therefore essential to support a more accurate and integrated view of adipose tissue as a dynamic organ system.

scientific communication and education↗