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Biomedical subjects

John Innes

Publications and source records attributed to John Innes.

6 recordsLinked to original sources

Diet and disease: exploring the link through nutrigenomics.

he success of the Human Genome Project and the powerful tools of molecular biology have ushered in a new era of medicine and nutrition. An emerging discipline, known as nutrigenomics, which allows the relationship between diet, genetics and disease to be delineated, looks set to transform clinical pet nutrition. In this article, Professor John Innes, from the University of Liverpool, evaluates the implications of nutrigenomics on pet health and takes a closer look at how this exciting technology is already being used to alleviate some of the symptoms of canine osteoarthritis (OA).

Animal Diseases↗

Ultrasound imaging of the intervertebral disc.

STUDY DESIGN: In vitro ultrasound imaging of dog intervertebral discs was performed. OBJECTIVE: To determine the reliability of ultrasound imaging in the detection of structural changes associated with disc pathology. SUMMARY OF BACKGROUND DATA: Little work has been done to evaluate the potential applications of ultrasound in the imaging of intervertebral discs. Initial in vitro studies, however, have indicated that ultrasound imaging is capable of producing images of the disc that contain a high degree of structural information. METHODS: Explanted lumbosacral discs from 13 nonchondrodystrophic dogs, mean age 5 years and 8 months, were stripped of all surrounding tissues and scanned using ultrasound before being sectioned and photographed. The ultrasound images were graded according to criteria chosen to reflect progressive stages of disc degeneration, allowing correlation with the grading scale used to assess the photographic images of the discs. Grades assigned to each disc were compared using Cronbach's alpha to determine the reliability of the images obtained using ultrasound. RESULTS: The results for the anterior anulus fibrosus produced an alpha value of 0.924; those for the nucleus pulposus produced a value of 0.821; whereas those for the posterior anulus fibrosus produced a value of 0.882. Where the grade given to the ultrasound image did not match those given in visual assessment, the disparity was never greater than one grade. Ultrasound images of several discs demonstrated echo patterns that matched, in both location and appearance, real structural defects identifiable on the sectioned discs. CONCLUSIONS: Ultrasound images of intervertebral discs relate well to their pathologic condition. In addition, ultrasound is able to locate specific pathologic defects.

Animals↗