Haddaoui M, Raouafi N (2015) Chlortoluron-induced enzymatic activity inhibition in tyrosinase/
ZnO NPs/SPCE biosensor for the detection of ppb levels of herbicide. Sensors Actuators B
Chem 219:171–178
Hansmann T, Sanson B, Stojan J, Weik M, Marty JL, Fournier D (2009) Kinetic insight into the
mechanism of cholinesterasterase inhibition by aflatoxin B1 to develop biosensors. Biosens
Bioelectron 24:2119–2124
Hao H, Cheng G, Iqbal Z, Ai X, Hussain HI, Huang L et al (2014) Benefits and risks of
antimicrobial use in food-producing animals. Front Microbiol 5:288
Hemme T, Garcia O, Saha A (2003) A review of milk production in India with particular emphasis
on small-scale producers. PPLPI working paper No. 2. International Farm Comparison Network, Pro-Poor Livestock Policy Initiative, 2003. Available at: http://www.fao.org/ag/againfo/
programmes/en/pplpi/docarc/wp2.pdf. Accessed May 2009
Horner SR, Mace CR, Rothberg LJ, Miller BL (2006) A proteomic biosensor for Enteropathogenic
E. coli. Biosens Bioelectron 21(8):1659–1663
Huang JL, Yang GJ, Meng WJ, Wu LP, Zhu AP, Jiao XA (2010) An electrochemical impedimetric
immunosensor for label-free detection of C. jejuni in diarrhea patients’ stool based on
O-carboxymethylchitosan surface modified Fe3O4 nanoparticles. Biosens Bioelectron
25:1204–1211
Hubbert WT, Hagstad HV, Spangler E, Hinton MH, Hughes KL (1996) Food safety and quality
assurance (Foods of animal origin), 2nd edn. Iowa State University Press, Ames, pp 171–179,
239–273
Huo DQ, Li Q, Zhang YC, Hou CJ, Lei Y (2014) A highly efficient organophosphorus pesticides
sensor based on CuO nanowires-SWCNTs hybrid nanocomposite. Sensors Actuators B Chem
199:410–417
Ikeda M, Zhang ZW, Moon CS, Imai Y, Watanabe T et al (1996) Background exposure of general
population to cadmium and lead in Tainan city, Taiwan. Arch Environ Contam Toxicol
30:121–126
Iliadis AA, Ali HA (2011) Properties of fast response room temperature ZnO-Si heterojunction gas
nanosensors. IEEE Trans Nanotechnol 10(3):652–656
India in business (2008) Investment and technology promotion and energy security. Ministry of
External Affairs, Government of India, 2008, Delhi
Jain KK (2007) Applications of nanobiotechnology in clinical diagnostics. Clin Chem 53
(11):2002–2009. (Jasson, 2010)
Jensen RG (1995) Handbook of milk composition. Academic, London, pp 887–900
Jiang XS, Wang RH, Wang Y, Su XL, Ying YB, Wang JP, Li YB (2011) Evaluation of different
micro/nanobeads used as amplifiers in QCM immunosensor for more sensitive detection of
E. coli O157:H7. Biosens Bioelectron 29:23–28
Jornet JM, Akyildiz IF (2012a) Joint energy harvesting and communication analysis for perpetual
wireless nanosensor networks in the terahertz band. IEEE Trans Nanotechnol 11(3):570–580
Jornet JM, Akyildiz IF (2012b) The internet of multimedia nano-things. Nano Commun Netw 3
(4):242–251
Jornet JM, Akyildiz IF (2014) Femtosecond-long pulse-based modulation for terahertz band
communication in nanonetworks. IEEE Trans Commun 62(5):1742–1754
Joyner DC, Lindow SE (2000) Heterogeneity of iron bioavailability on plants assessed with a
whole-cell GFP-based bacterial biosensor. Microbiology 146:2435–2445
Kadir MKA, Tothill IE (2010) Development of an electrochemical immunosensor for fumonisins
detection in foods. Toxins 2:382–398
Kangethe E, Langa K (2009) Aflatoxin B1 and M1 contamination of animal feeds and milk from
urban centers in Kenya. Afr Health Sci 9(4):218–226
Karshima NS, Pam VA, Bata SI, Dung PA, Paman ND (2013) Isolation of Salmonella species from
milk and locally processed milk products traded for human consumption and associated risk
factors in Kanam, Plateau State, Nigeria. J Anim Prod Adv 3(3):69–74
124
H. V. Raghu et al.
ZnO NPs/SPCE biosensor for the detection of ppb levels of herbicide. Sensors Actuators B
Chem 219:171–178
Hansmann T, Sanson B, Stojan J, Weik M, Marty JL, Fournier D (2009) Kinetic insight into the
mechanism of cholinesterasterase inhibition by aflatoxin B1 to develop biosensors. Biosens
Bioelectron 24:2119–2124
Hao H, Cheng G, Iqbal Z, Ai X, Hussain HI, Huang L et al (2014) Benefits and risks of
antimicrobial use in food-producing animals. Front Microbiol 5:288
Hemme T, Garcia O, Saha A (2003) A review of milk production in India with particular emphasis
on small-scale producers. PPLPI working paper No. 2. International Farm Comparison Network, Pro-Poor Livestock Policy Initiative, 2003. Available at: http://www.fao.org/ag/againfo/
programmes/en/pplpi/docarc/wp2.pdf. Accessed May 2009
Horner SR, Mace CR, Rothberg LJ, Miller BL (2006) A proteomic biosensor for Enteropathogenic
E. coli. Biosens Bioelectron 21(8):1659–1663
Huang JL, Yang GJ, Meng WJ, Wu LP, Zhu AP, Jiao XA (2010) An electrochemical impedimetric
immunosensor for label-free detection of C. jejuni in diarrhea patients’ stool based on
O-carboxymethylchitosan surface modified Fe3O4 nanoparticles. Biosens Bioelectron
25:1204–1211
Hubbert WT, Hagstad HV, Spangler E, Hinton MH, Hughes KL (1996) Food safety and quality
assurance (Foods of animal origin), 2nd edn. Iowa State University Press, Ames, pp 171–179,
239–273
Huo DQ, Li Q, Zhang YC, Hou CJ, Lei Y (2014) A highly efficient organophosphorus pesticides
sensor based on CuO nanowires-SWCNTs hybrid nanocomposite. Sensors Actuators B Chem
199:410–417
Ikeda M, Zhang ZW, Moon CS, Imai Y, Watanabe T et al (1996) Background exposure of general
population to cadmium and lead in Tainan city, Taiwan. Arch Environ Contam Toxicol
30:121–126
Iliadis AA, Ali HA (2011) Properties of fast response room temperature ZnO-Si heterojunction gas
nanosensors. IEEE Trans Nanotechnol 10(3):652–656
India in business (2008) Investment and technology promotion and energy security. Ministry of
External Affairs, Government of India, 2008, Delhi
Jain KK (2007) Applications of nanobiotechnology in clinical diagnostics. Clin Chem 53
(11):2002–2009. (Jasson, 2010)
Jensen RG (1995) Handbook of milk composition. Academic, London, pp 887–900
Jiang XS, Wang RH, Wang Y, Su XL, Ying YB, Wang JP, Li YB (2011) Evaluation of different
micro/nanobeads used as amplifiers in QCM immunosensor for more sensitive detection of
E. coli O157:H7. Biosens Bioelectron 29:23–28
Jornet JM, Akyildiz IF (2012a) Joint energy harvesting and communication analysis for perpetual
wireless nanosensor networks in the terahertz band. IEEE Trans Nanotechnol 11(3):570–580
Jornet JM, Akyildiz IF (2012b) The internet of multimedia nano-things. Nano Commun Netw 3
(4):242–251
Jornet JM, Akyildiz IF (2014) Femtosecond-long pulse-based modulation for terahertz band
communication in nanonetworks. IEEE Trans Commun 62(5):1742–1754
Joyner DC, Lindow SE (2000) Heterogeneity of iron bioavailability on plants assessed with a
whole-cell GFP-based bacterial biosensor. Microbiology 146:2435–2445
Kadir MKA, Tothill IE (2010) Development of an electrochemical immunosensor for fumonisins
detection in foods. Toxins 2:382–398
Kangethe E, Langa K (2009) Aflatoxin B1 and M1 contamination of animal feeds and milk from
urban centers in Kenya. Afr Health Sci 9(4):218–226
Karshima NS, Pam VA, Bata SI, Dung PA, Paman ND (2013) Isolation of Salmonella species from
milk and locally processed milk products traded for human consumption and associated risk
factors in Kanam, Plateau State, Nigeria. J Anim Prod Adv 3(3):69–74
124
H. V. Raghu et al.
