Publications by authors named "S C Tongue"

Livestock keepers who operate on a small scale in the United Kingdom are often described as either smallholders or hobby farmers; however, this is not always the case. There is another distinct population in Scotland. The crofting system promotes the preservation of a way of life that is significant to the cultural heritage of Scotland, whilst at the same time utilising and maintaining marginal land that could otherwise be deemed of very low productive value.

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This paper explores the theoretical economic outcome of management changes that result in different levels of antimicrobial use (AMU) in two types of UK pig farm. A static farm economic pig production model (FEPM) was used on a representative 'Top-third' most profitable farm and a representative 'Mid-range' profitable farm. Three AMU theoretical management scenarios were investigated; (a) management changes leading to a reduction of AMU by 35% (AMU35); (b) more extensive management changes leading to a reduction of AMU by 95% (AMU95); and (c) implementing depopulation of the herd (AMU Depop).

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Introduction: The use of existing data to provide surveillance intelligence is widely advocated but often presents considerable challenges. Two data sources could be used as proxies for the mortality experienced by the Scottish cattle population: deaths recorded in the mandatory register [Cattle Tracing System (CTS)] and fallen stock collections by the National Fallen Stock Company (NSFCo) with a nationwide voluntary membership.

Methods: Data for the period 2011-2016 were described and compared to establish their strengths and limitations.

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O26 is the commonest non-O157 Shiga toxin ()-producing serogroup reported in human infections worldwide. Ruminants, particularly cattle, are the primary reservoir source for human infection. In this study, we compared the whole genomes and virulence profiles of O26:H11 strains ( = 99) isolated from Scottish cattle with strains from human infections ( = 96) held by the Scottish O157/STEC Reference Laboratory, isolated between 2002 and 2020.

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Article Synopsis
  • Over the past 20 years, the frequency of human infections caused by the E. coli strain O157 has been 2.5 times higher in Scotland compared to England and Wales.
  • A study combining cattle survey data and human clinical cases from 2014-2015 found that certain strains of O157 are more prevalent in Scottish cattle and humans, particularly the Stx2a+ strain PT21/28.
  • Whole genome sequencing revealed that most O157 diversity in human cases stemmed from cattle, with significant strain differences indicating localized transmission within Scotland.
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