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Microbiological food safety assessment of high hydrostatic pressure processing: A review

LWT · 2010 · Vol. 44(5) · pp. 1251–1260
Eugenia RenduelesM.K. OmerOle AlvseikeCarlos Alonso‐CallejaRosa CapitaMiguel Prieto Maradona

Abstract

High hydrostatic pressure (HHP) processing as a novel non-thermal method has shown great potential in producing microbiologically safer products while maintaining the natural characteristics of the food items. Scientific research of the process and its industrial applications has been widespread in the past two decades with many scientific publications describing its uses, advantages and limitations. The review describes the effect of HHP on foodborne pathogenic microorganisms, their structures and adaptive mechanisms, the intrinsic and extrinsic factors that affect its application with a focus on microbiological safety, and research needs. In a risk assessment context, tools and mechanisms in place to monitorize, optimize and validate the process, and procedures for assessing and modelling the lethal effect of the treatment are reviewed.

Microbial Inactivation MethodsListeria monocytogenes in Food SafetyBacillus and Francisella bacterial researchSAFERRisk analysis (engineering)Hydrostatic pressureContext (archaeology)Food safetyBiochemical engineeringProcess (computing)Computer scienceHigh pressureEngineering
Citations
385
FWCI
15.88
field-weighted impact
References
169
Percentile
100%
vs. same field & year
Citations per year
References
Decontamination technologies for meat products
Meat Science · 2007 · 400 citations
Microbiology of pressure-treated foods
Journal of Applied Microbiology · 2005 · 449 citations
Recent advances in the microbiology of high pressure processing
Trends in Food Science & Technology · 1998 · 660 citations
On the use of the Weibull model to describe thermal inactivation of microbial vegetative cells
International Journal of Food Microbiology · 2002 · 947 citations
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