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用于自动去内脏的鸡肌肉和内脏的营养代谢评估及图像分割

Nutritional metabolism evaluation and image segmentation of the chicken muscle and internal organs for automatic evisceration.

作者信息

Chen Yan, Lu Jianjian, Feng Ke, Wan Lili, Ai Hui

机构信息

School of Mechanical Engineering, Wuhan Polytechnic University, Wuhan, China.

School of Electrical and electronic Engineering, Wuhan Polytechnic University, Wuhan, China.

出版信息

J Anim Physiol Anim Nutr (Berl). 2023 Jan;107(1):228-237. doi: 10.1111/jpn.13693. Epub 2022 Mar 2.

Abstract

The chicken is rich in various proteins, fatty acids, polysaccharides, trace elements, and other human essential nutrients that contribute to its high nutritional value. In this study, the expression levels of nutrition-related genes (acetyl-CoA acyltransferase, ACAA) of native chicken breeds were investigated. The level of GgalACAA1-2 transcripts expression in the liver of chicken was significantly higher than that of muscle and heart. Moreover, three protein extracts were isolated from the muscle, heart, and liver tissues from the chicken, and their nutritional function was evaluated in the present study. These protein extracts had excellent DPPH and hydroxyl radical scavenging capacities and exhibited significant superoxide anion scavenging ability. Moreover, the protein extracts of muscle tissue showed an important mouse splenocyte proliferation activity and could be used as an immunomodulator of natural origin. In addition, this report presented an automatic visual inspection of chicken viscera using the active contour algorithms and the image processing method for eviscerating by the parallel robot. The recognition and positioning rate of chicken viscera obtained by the proposed method could reach 96.45%. These methods provided basic data for automated poultry slaughter and segmentation, avoiding unnecessary health risks by a pathogenic microorganism, such as avian influenza, Newcastle disease virus, and coronavirus. Moreover, the internal organs of the chicken could be fully harvested by the image segmentation of automatic evisceration, which also facilitated the processing value of these internal organs as by-products of poultry.

摘要

鸡肉富含多种蛋白质、脂肪酸、多糖、微量元素及其他对人体至关重要的营养成分,这使其具有很高的营养价值。在本研究中,对本地鸡品种营养相关基因(乙酰辅酶A酰基转移酶,ACAA)的表达水平进行了研究。鸡肝脏中GgalACAA1 - 2转录本的表达水平显著高于肌肉和心脏。此外,从鸡的肌肉、心脏和肝脏组织中分离出三种蛋白质提取物,并在本研究中对其营养功能进行了评估。这些蛋白质提取物具有出色的清除DPPH和羟自由基的能力,并表现出显著的超氧阴离子清除能力。此外,肌肉组织的蛋白质提取物显示出重要的小鼠脾细胞增殖活性,可作为天然来源的免疫调节剂。此外,本报告提出了一种使用主动轮廓算法和图像处理方法对鸡内脏进行自动视觉检查的方法,用于并行机器人去内脏操作。所提方法对鸡内脏的识别和定位率可达96.45%。这些方法为家禽自动化屠宰和分割提供了基础数据,避免了诸如禽流感、新城疫病毒和冠状病毒等病原微生物带来的不必要健康风险。此外,通过自动去内脏的图像分割可以完整收获鸡的内脏,这也提高了这些内脏作为家禽副产品的加工价值。

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