Microbiological safety of cantaloupes and tomatoes in the Canadian retail market- Findings of multi-year targeted surveys conducted by the Canadian food inspection agency

2015 ◽  
Vol 06 (09) ◽  
Author(s):  
Helen Zhang
2018 ◽  
Vol 75 ◽  
pp. 72-81 ◽  
Author(s):  
Romina Zanabria ◽  
Manon Racicot ◽  
Mathieu Cormier ◽  
Julie Arsenault ◽  
Cécile Ferrouillet ◽  
...  

Author(s):  
Nicole (HeeYoung) Park ◽  
BCIT School of Health Sciences, Environmental Health ◽  
Helen Heacock ◽  
Lorraine McIntyre

  Background: The recent Vibrio parahaemolyticus outbreak in the summer of 2015 highlighted that shellfish tags are one of the key pieces of information used to trace back and determine the source of a foodborne outbreak or illness associated with raw or uncooked shellfish. According to the Canadian Food Inspection Agency, all shellfish tags must meet the requirements stated in the Section 7.3 of the Canadian Shellfish Sanitation Program (CSSP). Non-compliant tags may hinder national and regional regulatory agencies from identifying problems in harvest locations and at the processors, and further impede provincial control measures. As a result of the national outbreak, the BC Center for Disease Control (BCCDC), Ministry of Agriculture and the Canadian Food Inspection Agency (CFIA), as well as health authorities and Environmental Health Officers (EHO) have been involved in a variety of actions and interventions to improve compliance. These include efforts to promote education and to improve control and surveillance of V. parahaemolyticus and other shellfish associated illnesses. This study examined the effectiveness of health agencies’ interventions to improve shellfish tag compliance rates to Section 7.3 of the CSSP by comparing the numbers of shellfish tags in compliance before and after the interventions that were implemented in 2016. Methods: 120 randomly selected shellfish tags were grouped into “Before” and “After” interventions. By assessing the date of processing, 60 tags collected before September 2016 were placed into the “Before” group. Another 60 tags collected after September 2016 were placed into the “After” group. Within each group, shellfish tags were individually analyzed to determine whether the tag met or exceeded the required quality, information, and type and quantity criteria. Shellfish tags were considered “Compliant” if they completely fulfill 10 components embodied in the criteria, whereas shellfish tags that failed to meet all the components were labeled “Non-compliant”. Results: Based on the statistical analysis conducted on the data, there was a greater proportion of compliant shellfish tags post-intervention compared to pre-intervention. The Pearson’s Chi-square test confirmed that there was a statically significant association (p-value = 0.000) between the numbers of shellfish tags in compliance and the interventions that were implemented after the outbreak. Conclusion: The results have demonstrated that the interventions implemented by numerous regulatory authorities resulted in greater compliance to Section 7.3 of the CSSP. Public health regulators including the Ministry of Agriculture and the CFIA, as well as BCCDC and EHOs should continuously be involved in a variety of actions, such as promoting education at the processor and retail level and also implementing interventions to improve compliance. By doing so, successful interventions and increased compliance rates will lead to rapid identification of shellfish-related illnesses or outbreaks and facilitate control measures that can expeditiously remediate public health issues.  


Author(s):  
Weikai Yan ◽  
Judith Fregeau-Reid ◽  
Brad deHann ◽  
Stephen Thomas ◽  
Matthew Hayes ◽  
...  

AAC Banner is a white-hulled spring oat (Avena sativa L.) cultivar developed at the Ottawa Research and Development Centre (ORDC), Agriculture and Agri-Food Canada. It was supported for registration by the Ontario Cereal Crops Committee (OCCC) in January 2017 and was registered by the Variety Registration Office of the Canadian Food Inspection Agency on Aug 11, 2017 (Registration #8340). It yielded well in both Ontario and Quebec, but is particularly adapted to eastern and southern Ontario, where crown rust (Puccinia coronata f. sp. avenae) is a key yield-limiting factor. It has high β-glucan content and is a miller approved milling oat cultivar. It also has superior post-maturation standability.


2019 ◽  
Vol 82 (11) ◽  
pp. 1901-1908
Author(s):  
ADRIAN HEROD ◽  
LAWRENCE GOODRIDGE ◽  
JOHN ROHDE

ABSTRACT Recall of microbial-contaminated food products is an important intervention in preventing the transmission of foodborne illness. Here, we summarize the number and nature of foods recalled as a result of microbial contamination, classified by the Canadian Food Inspection Agency, for the period 1 January 2000 through 31 December 2017. A total of 10,432 food products were recalled from 2,094 recall events in Canada because of microbial contamination during this period. The meat, meat products and poultry category, followed by fishery and seafood products and nuts and edible seeds, contained the food products most commonly associated with microbial contamination. Most microbial-contaminated food products reported were recalled because of the presence bacterial pathogens. Salmonella contamination was responsible for the largest number of recall events, whereas Listeria monocytogenes contamination accounted for the greatest number of food products recalled because of microbial contamination. L. monocytogenes contamination was also most commonly associated with major food recall events, although records may be inflated because of an invested effort to prevent future L. monocytogenes outbreaks following a 2008 deli meat recall. The findings and data we present in this study will support future surveillance and analysis of microbial-contaminated food recalls in Canada.


2002 ◽  
Vol 82 (2) ◽  
pp. 433-434
Author(s):  
Albert Vandenberg ◽  
Al E. Slinkard

CDC Verdi is a green cotyledon field pea (Pisum sativum L.) cultivar with semi-leafless leaf type, good yielding ability, medium-sized round seeds and good bleaching resistance. It was developed by the Crop Development Centre, University of Saskatchewan, Saskatoon, Saskatchewan, Saskatoon, Saskatchewan. The Variety Section, Plant Health and Plant Products Division, Canadian Food Inspection Agency issued registration #5045 to CDC Verdi on 7 February 2000 by the Variety Section, Plant Health and Plant Health and Plant Products Division, Canadian Food Inspection Agency. Key words: Field pea, Pisum sativum L., cultivar description


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