通过3D打印和3D扫描,为吞咽困难患者提供增加纤维含量的有吸引力的纹理改性食品

Astrid Ahlinder, Evelina Höglund, C. Öhgren, A. Miljković, M. Stading
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引用次数: 0

摘要

随着预期寿命的延长,与年龄有关的问题也在增加,如吞咽障碍、吞咽困难,这些问题影响着10%-30%的65岁以上的人。对于吞咽困难的患者来说,食物的质地和流变性能以及丸剂对于避免窒息和肺炎至关重要。由于易于吞咽,这些患者通常会食用质地改良的食物,如timbals。这些食物的主要问题是它们在视觉上与它们所取代的食物不一样,这可能会降低病人的食欲,导致食物摄入量减少和身体虚弱。本研究的目的是提高食品的视觉外观,同时提高食品的能量密度和纤维含量。3D扫描和增材制造(3D打印)被用来制作更让人想起原始食品的食物,增加了它们的视觉吸引力。在通过减少淀粉含量和部分用膳食纤维代替来重新配制时,利用流变学来确保维持原始的流动剖面。淀粉的含量从原来的8.7 wt%减少到3.5 wt%,部分用3wt %的柑橘纤维代替,同时保持了适合吞咽和3D打印的性能。由此产生的配方改善了营养特性,同时仍然适合构建视觉上吸引人的食物,正如3D打印鸡腿从3D扫描生成的模型中所证明的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards attractive texture modified foods with increased fiber content for dysphagia via 3D printing and 3D scanning
As life expectancy increases so do age related problems such as swallowing disorders, dysphagia, which affects 10%–30% of people over 65 years old. For dysphagia patients the texture and rheological properties of the food, and the bolus, is critical to avoid choking and pneumonia. Texture modified foods, timbals, are often served to these patients due to their ease of swallowing. The main concern with these foods is that they do not look visually alike the food they replace, which can decrease the patient’s appetite and lead to reduced food intake and frailty. This study aims to improve both the visual appearance of texturized food as well as the energy density and fiber content of the timbal formulation. 3D scanning and additive manufacturing (3D Printing) were used to produce meals more reminiscent of original food items, increasing their visual appeal. Rheology was used to ensure the original flow profile was maintained as the timbal was reformulated by reducing starch contents and partially replacing with dietary fibers. The amount of starch was reduced from 8.7 wt% in the original formulation to 3.5 wt% and partially replaced with 3 wt% citrus fiber, while maintaining properties suitable for both swallowing and 3D printing. The resulting formulation has improved nutritional properties, while remaining suitable for constructing visually appealing meals, as demonstrated by 3Dprinting a chicken drumstick from a model generated with 3D scanning.
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