In which year first biosensor was invented?a.1956b.1960c.1970d.none of these
Question
In which year first biosensor was invented?a.1956b.1960c.1970d.none of these
Solution
The first biosensor was invented in the year 1962 by Leland C. Clark and Champ Lyons. So, the correct answer is d. none of these.
Similar Questions
Who is the father of biosensor?a.Leeland Clarkb.George Mendelc.Rudolf virchowd.M.schleidan
Which of the following are the applications of Biosensor? Biomedicine Bio-technology Both a and b Automobiles
Which of the following statements is not true for biosensors?1 pointBiosensors convert a biological signal into an electrical signalBiosensors are used to determine the concentration of substances and other parameters of biological interest even where they do not utilize a biological system directlyBiosensors utilize the different biological systems such as enzymes, whole cell metabolism, ligand binding and the antibody-antigen reactionBiosensor consists of a vessel, or series of vessels, used to perform a desired conversion by enzymic means
Which of following is application of biosensor?a.Screening for diseaseb.Health care monitoringc.Diagnosis of diseased.all of these
Thus, biosensors could be significantly effectivein the prevention, timely diagnosis, control, and treatment of diseases.This is evident in the increasing development of wearable biosensor pro-totypes such as monitoring of patients, athletes, premature infants, chil-dren, psychiatric patients, people who need long-term care, the elderly,and people in impassable regions. For instance, sensor-based smart hel-mets were deployed in New Zealand and Denmark to improve treatmentof patients with posttraumatic stress disorder living far from health-care services.27 Sensor-based smart clothing was developed to monitorwomen’s menopause transition by collecting and monitoring blood flow,body temperature,28 electroencephalogram, oxygen, myocardium, andelectrocardiogram.27 Among other sensor-based smart wearable tech-nologies, smart socks, smart disinfection tunnels, smart clothes, smarthelmets, smart shoes, smart boots, smart vests, smart face shields, smartbands, and smart watches have been used for various purposes includ-ing disease screening and detecting symptoms of diseases automati-cally from the thermal image with less human interaction.29 In addi-tion, sensor-based smart devices are also used to check temperature andpulse rate, disinfect contaminated objects and surfaces, maintain socialdistancing and contact tracing, prevent and monitor psychological com-plications,28 sports activities, injuries, physical status at work and insleep, and correct motion abnormalities and reform people’s walkingpatterns
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