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Gary Smith

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Gary Smith, PhD

Gary Smith, PhD

Born and raised in Caddo County, Oklahoma, Dr. Gary Smith attended universities in California, Washington and Texas. Since 1961, he has taught and conducted research at Washington State University (WSU), Texas A&M University, and Colorado State University (CSU).

From 1916 to 1975, his research focused on beef palatability (bullocks vs. steers, carcass chilling effects on tenderness, blade tenderization, electrical stimulation of carcasses, Tenderstretch®); beef shelf life (vacuum packaging for domestic and transoceanic shipments, retail case life); and USDA Feeder Cattle Grade Standards From 1975 to 1990, his research efforts included modified atmosphere packaging of beef; transoceanic shipments of variety meats; USDA Beef Quality and Yield Grade Standards; time-on-feed and beef palatability; The Hamburger Steer®; breed types and beef palatability; beef lipids and human nutrition; National Consumer Retail beef Study; and restructured beef steaks.

From 1990 to 2015, his research focused on chemical residues in US beef; National Beef Quality Audits; International Beef Quality Audit; National Market Cow and Bull Audits; injection site lesions; Conventional, Natural, and Organic Beef; feeding Vitamin E and Beef retail case life; “Multiple-Hurdle E. coli 0157:H7 decontamination systems; implementation of HACCP programs in beef packing plants; Palatability Assurance Critical Control points; controlling Salmonella and Listeria on ready-to-eat beef; Best Practices for mitigating BSE (Mad Cow Disease) risk in packing plants; traceability systems implementation; and instrument grading of beef carcasses. Dr. Smith credits his success to colleagues and graduate students (who did the hard work) and the help of cattle feeders, packers, and retailers (who allowed them to use their facilities and products).

Dr. Smith occupied the Ken and Myra Monfort Endowed Shair in Meat Science at CSU beginning in June of 1990. Previously, he served as Professor (1969-1982) and Head (1982-1990) of the Department of Animal Science at Texas A&M where he received many awards.

  • Outstanding Teaching Performance Award,
  • Honor Professor Award
  • College of Agriculture Teaching Award
  • University Distinguished Teaching award
  • Deputy Chancellor’s Award for Team Research

Other awards and honors include:

  • International Stockmen’s Hall of Fame Induction
  • National Cattlemen’s Foundation Vision Award
  • USMEF Distinguished Service Award
  • AMSA R.C Pollock Award
  • Beefmaster Breeders United, Commitment to Excellence Award
  • Honored Researcher of the CSU Research Foundation
  • ISI Thomson Scientific’s Highly Cited Researcher
  • Beef Magazine’s top 40 Most Influential People in the US Beef Industry
  • American Hereford Association Hall of Merit Induction
  • Meat Industry Hall of Fame Induction
  • AMSA Mentor Award
  • Cattle Feeder’s Hall of Fame Award
  • College of the Sequoias, California State University-Fresno and WSU Distinguished Alumni Award
  • Certified Angus Beef Industry Achievement Award

Below are resources from Dr. Smith:



Ensuring high-quality ingredients and finished botanical products requires a precise and reliable analytical method. This webinar introduces a fundamental approach to botanical analysis: High Performance Thin Layer Chromatography (HPTLC), a powerful tool for maintaining accuracy and consistency in botanical raw materials and final formulations. Originally Aired on April 21, 2025


Olive growers need to accurately measure polyphenol concentrations in their raw products for downstream processing. Watch our case study video below to learn how Eurofins effectively analyzed both the complex matrix of raw olives and the simpler matrix of olive-based refined products.


When it comes to raw material testing, choosing the right method isn't just a box to check. It's the foundation of your quality control program. So, when should monograph tests be used? And why do they matter? Read our blog to learn more.


Testing complex botanical matrices using HPTLC goes beyond simply running a sample through a machine—it requires a deep understanding of both the plant material’s unique properties and the strengths and limitations of HPTLC. In this article, we’ll explore the intricacies of testing complex botanical samples using HPTLC, highlighting the challenges involved and how this technique can effectively overcome them—even in the most complex matrices.


(HPTLC) has established itself as the preferred analytical tool for identification of botanical samples. As with any analytical method, validating the HPTLC method is crucial to ensure that it produces reliable, accurate, and reproducible results. In this article, we will explore the process of HPTLC method validation, why it is necessary, and the critical parameters to consider.


Advanced analytical methods play a crucial role in identifying emerging contaminants, unexpected adulterants, food contact material migrants, and other unanticipated chemicals that may compromise regulatory compliance and consumer safety for dietary supplements. Read our white paper to learn about suspect screening and non-target analysis workflows.


As winter melts away and the promise of spring invites renewal, it's the perfect time to think about new beginnings, especially when it comes to nurturing our bodies. Join us as we embark on a journey exploring plants that promote women’s health and well-being.


October 2024 - Eurofins Botanicals is proud to announce the first-of-its-kind partnership with LeafWorks to launch the industry’s first Mushroom DNA Species Identification Tests. The first DNA ID tests will focus on Shiitake and Cordyceps species, with additional mushroom tests being released in 2025.


This blog explores botanical fraud, differences between fraud and adulteration, and the use of mitigation plans to prevent fraudulent ingredients and products. Learn about the common types of fraud and steps to take to ensure safe and accurately labeled products.


Phytochemicals are chemicals derived from plants used to test the purity, composition, adulteration, and potency of botanical products. Discover how plant chemistry shapes and motivates botanical product authentication.


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