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首页> 外文期刊>Journal of applied microbiology >Predictive model for the growth of Yersinia enterocolitica under modified atmospheres
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Predictive model for the growth of Yersinia enterocolitica under modified atmospheres

机译:改良气氛下小肠结肠炎耶尔森菌生长的预测模型

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A quadratic response surface model is presented to describe the maximum specific growth rate of Yersinia enterocolitica, at refrigeration temperatures, under modified atmospheres. The presence of CO_2 affected mainly the lag phase of the organism. The length of the lag phase increased with higher levels of CO_2 in the atmosphere, and this effect was more noticeable at low temperatures. The effect of oxygen was similar but less pronounced. The observed growth was slower with higher CO_2. Oxygen also decreased the growth rate, but its effect was significant only when its proportion in the atmosphere was greater than about 40%. Model predictions were compared with growth rates obtained in sea food inoculated with Y. enterocolitica and packaged under modified atmospheres. Predictions were also checked to determine whether they were inside the strict interpolation region of the model.
机译:提出了一个二次响应表面模型来描述在改良温度下在冷藏温度下小肠结肠炎耶尔森氏菌的最大比生长速率。 CO_2的存在主要影响了生物体的滞后期。滞后阶段的长度随着大气中CO_2含量的增加而增加,这种影响在低温下更为明显。氧气的作用相似但不明显。随着CO_2的增加,观察到的生长较慢。氧气也降低了生长速率,但是只有当其在大气中的比例大于40%时,氧气的作用才显着。将模型预测与接种小肠结肠炎耶尔森氏菌并在改良气氛下包装的海鲜中获得的增长率进行比较。还检查了预测以确定它们是否在模型的严格插值区域内。

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