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Biomedical subjects

G Whiteley

Publications and source records attributed to G Whiteley.

7 recordsLinked to original sources

Recognition of multiple classes of hepatitis C antibodies increases detection sensitivity in oral fluid.

Paired serum-oral fluid samples from 127 hepatitis C virus (HCV)-positive and 31 HCV-negative patients were tested for the presence of anti-HCV using the Ortho HCV 3.0 ELISA. Using the immunoglobulin G (IgG)-specific detection antibody provided with the HCV 3.0 ELISA we attained 100% sensitivity and specificity with serum samples; however, sensitivity in oral fluid samples was only 81%. By modifying the HCV 3.0 ELISA to utilize a secondary antibody cocktail that recognizes not only IgG but IgA and IgM as well, we attained 100% specificity and sensitivity with oral fluid samples.

Antibody Specificity↗

Laparoscopic gastrointestinal surgery.

The growth and scope of laparoscopic gastrointestinal surgery are outstripping the ability of medical journals to print series and reports of experience, and much data remain anectodal and preliminary. Laparoscopic cholecystectomy has become established, although, unfortunately, peroperative cholangiography has not yet become normal practice, despite convincing published evidence that it is likely to reduce the increased number of bile ducts that are damaged by laparoscopic surgeons. Imaging the bile ducts and the overall management of choledocholithiasis need re-evaluation, and the approach will change as more surgeons explore the bile ducts laparoscopically. Laparoscopic hiatal anti-reflux surgery will soon be routine, and a whole range of laparoscopically assisted operations on the oesophagus, colon, and rectum will become commonplace. Operations on the liver remain anecdotal. Throughout this rapid progress, surgeons must not forget the principles of (open) surgical practice, whilst carefully kept registers and regular audit of operations will provide new surgical standards.

Cholecystectomy, Laparoscopic↗

Using practice led design research to develop an articulated mechanical analogy of the human hand.

Contemporary prostheses have developed from small iterations on moderately successful archetypes. This has resulted in modern designs that can either be termed cosmetic or functional, with neither attribute being fully satisfied. A new strategy is needed to develop a generation of upper-limb prostheses that will integrate both cosmetic and functional requirements in a single device. It is hypothesized that design principles applicable to a new generation of prostheses will result from exploring close analogies to the human upper limb. A method of practice led design research has been adopted to explore appropriate analogies, using the production of physical models to elucidate the design problem to the design team and other interested parties. This method uses a consciously iterative approach whereby criticisms and lessons learnt in the development of early models are embodied in subsequent models. This paper describes the first iterative cycle. It includes a critical review of the devices currently available and a study of mechanical analogies to original anatomy which form two of the inputs to the development of a skeletal model hand. It details the lessons learnt from this study and concludes on the wider application of practice led design research in medical engineering.

Artificial Limbs↗