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肉鸡颈皮样品加工延迟与微生物负荷的关系。

Relationships between processing delay and microbial load of broiler neck skin samples.

机构信息

Hallmark Meat Hygiene, Ltd., The Old Forge, Tetbury Street, Minchinhampton, Gloucestershire GL6 9JG, UK.

出版信息

J Food Prot. 2010 Jan;73(1):26-31. doi: 10.4315/0362-028x-73.1.26.

DOI:10.4315/0362-028x-73.1.26
PMID:20051200
Abstract

The measurable microbial load on poultry carcasses during processing is determined by a number of factors including farm or origin, processing hygiene, and external temperature. This study investigated associations between carcass microbial load and progressive delays to processing. A total of 30 carcasses were delayed immediately after defeathering and before evisceration in a commercial abattoir in groups of five, and were held at ambient temperature for 1, 2, 3, 4, 6, and 8 h. Delayed carcasses were reintroduced to the processing line, and quantitative assessment of total viable count, coliforms, Staphylococcus aureus, and Pseudomonas spp. was undertaken on neck skin flap samples collected after carcass chilling and then pooled for each group. Sampling was repeated on 5 separate days, and the data were combined. Significant increases in total viable count (P = 0.001) and coliforms (P = 0.004), but not for S. aureus or Pseudomonas loads, were observed across the 8-h period of delay. In line with previous studies, there was significant variation in microbiological data according to sampling day. In conclusion, there is a significant and measurable decline in microbiological status of uneviscerated but defeathered poultry carcasses after an 8-h delay, but the variability of sampling results, reflecting the wide range of factors that impact microbial load, means that it is not possible to determine maximum or minimum acceptable periods of processing delay based on this criterion alone.

摘要

在加工过程中,家禽胴体上可测量的微生物负荷取决于许多因素,包括农场或起源、加工卫生和外部温度。本研究调查了胴体微生物负荷与加工延迟之间的关系。总共 30 只胴体在商业屠宰场的拔毛后和去内脏前立即被延迟,以 5 只为一组,在环境温度下放置 1、2、3、4、6 和 8 小时。延迟的胴体被重新引入加工线,并在胴体冷却后采集颈部皮瓣样本,对总活菌计数、大肠菌群、金黄色葡萄球菌和铜绿假单胞菌进行定量评估,然后对每个组进行汇总。在 5 个不同的日子重复采样,并合并数据。在 8 小时的延迟期间,总活菌计数(P = 0.001)和大肠菌群(P = 0.004)显著增加,但金黄色葡萄球菌或铜绿假单胞菌负荷没有增加。与之前的研究一致,根据采样日,微生物数据存在显著差异。总之,在 8 小时的延迟后,未去内脏但已去毛的家禽胴体的微生物状况显著下降且可测量,但由于采样结果的可变性反映了影响微生物负荷的各种因素,因此仅根据这一标准,无法确定可接受的最长或最短加工延迟时间。

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