Uberveillance, Standards, and Anticipation: A Case Study on Nanobiosensors in U.S. Cattle

Uberveillance, Standards, and Anticipation: A Case Study on Nanobiosensors in U.S. Cattle

Kyle Powys Whyte, Monica List, John V. Stone, Daniel Grooms, Stephen Gasteyer, Paul B. Thompson, Lawrence Busch, Daniel Buskirk, Erica Giorda, Hilda Bouri
ISBN13: 9781522531586|ISBN10: 1522531580|EISBN13: 9781522531593
DOI: 10.4018/978-1-5225-3158-6.ch025
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MLA

Whyte, Kyle Powys, et al. "Uberveillance, Standards, and Anticipation: A Case Study on Nanobiosensors in U.S. Cattle." Biomedical Engineering: Concepts, Methodologies, Tools, and Applications, edited by Information Resources Management Association, IGI Global, 2018, pp. 577-596. https://doi.org/10.4018/978-1-5225-3158-6.ch025

APA

Whyte, K. P., List, M., Stone, J. V., Grooms, D., Gasteyer, S., Thompson, P. B., Busch, L., Buskirk, D., Giorda, E., & Bouri, H. (2018). Uberveillance, Standards, and Anticipation: A Case Study on Nanobiosensors in U.S. Cattle. In I. Management Association (Ed.), Biomedical Engineering: Concepts, Methodologies, Tools, and Applications (pp. 577-596). IGI Global. https://doi.org/10.4018/978-1-5225-3158-6.ch025

Chicago

Whyte, Kyle Powys, et al. "Uberveillance, Standards, and Anticipation: A Case Study on Nanobiosensors in U.S. Cattle." In Biomedical Engineering: Concepts, Methodologies, Tools, and Applications, edited by Information Resources Management Association, 577-596. Hershey, PA: IGI Global, 2018. https://doi.org/10.4018/978-1-5225-3158-6.ch025

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Abstract

Uberveillance of humans will emerge through embedding chips within nonhumans in order to monitor humans. The case explored in this chapter involves the development of nanotechnology and biosensors for the real-time tracking of the identity, location, and properties of livestock in the U.S. agrifood system. The primary method for research on this case was an expert forum. Developers of biosensors see the tracking capabilities as empowering users to control some aspects of a situation that they face. Such control promises to improve public health, animal welfare, and/or economic gains. However, the ways in which social and ethical frameworks are built into standards for the privacy/access, organization, adaptability, and transferability of data are crucial in determining whether the diverse actors in the supply chain will embrace nanobiosensors and advance the ideals of the developers. Further research should be done that explores the possibilities of tripartite standards regimes and sousveillance in relation to nanobiosensors in agrifood.

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