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49. Liu X, Lillehoj PB (2016) Embroidered electrochemical sensors for biomolecular detection.
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50. Tokuda T, Ishizu T, Nattakarn W, Haruta M, Noda T, Sasagawa K, Sawan M, Ohta J (2018) 1
mm3-sized optical neural stimulator based on CMOS integrated photovoltaic power receiver.
AIP Adv 8:4
51. Mannoor MS et al (2012) Graphene-based wireless bacteria detection on tooth enamel. Nat
Commun 3:763
52. Bandodkar AJ, Jia W, Yardimci C, Wang X, Ramirez J, Wang J (2015) Tattoo-based noninvasive
glucose monitoring: a proof-of-concept study. Anal Chem 87:394–398
53. Guinovart T, Bandodkar AJ, Windmiller JR, Andrade FJ, Wang J (2013) A potentiometric
tattoo sensor for monitoring ammonium in sweat. Analyst 138:7031–7038
54. Jia W, Andodkar J, Valdes-Ramirez G, Windmiller JR, Yang Z, Ramirez J, Chan G, Wang J
(2013) Electrochemical tattoo biosensors for real-time noninvasive lactate monitoring in human
perspiration. Anal Chem 85:6553–6560
55. Nakata S, Arie T, Akita S, Takei K (2017) Wearable, flexible, and multifunctional healthcare device with an ISFET chemical sensor for simultaneous sweat pH and skin temperature
monitoring 3:443–448
56. Ashton K (2009) That ‘internet of things’ thing. RFID J 22:97–114
57. Farhan L. Sweat pH and skin temperature monitoring. ACS Sens. Kharel O, Kaiwartya M,
Quiroz-Castellanos A, Alissa M, Abdulsa A (2018) Concise review on internet of things (IoT)—
problems, challenges and opportunities, Budapest, Hungary. In: Proceedings of IEEE 11th
international symposium on communication systems, networks & digital signal processing
(CSNDSP), 18–20 July 2018
58. Colakovi A, Hadžialic M (2018) Internet of Things (IoT): a review of enabling technologies,
challenges, and open research issues. Comput Netw 144:17–39
59. Farhan L, Alzubaidi L, Abdulsalam M, Abboud AJ, Hammoudeh M, Kharel R (2018) An
efficient data packet scheduling scheme for internet of things networks. In: Proceedings of
IEEE Diyala third scientific conference of engineering sciences and 1st Diyala international
conference of engineering sciences, Diyala, Iraq, 10–11 Jan 2018
60. Tschofenig H, Arkko J, Thaler D, McPherson D (2015) Architectural considerations in smart
object networking. Report in IETF RFC 7452, Mar 2015
61. Global Information Infrastructure (2012) Internet protocol aspects and next-generation
networks. Next generation networks–frameworks and functional architecture models: overview
of the internet of things. 2012 ITU-T Recommendation Y.2060 Series Y
62. Tyagi S, Agarwal A, Maheshwari P (2016) A conceptual framework for IoT-based healthcare
system using cloud computing. In: Proceedings of IEEE 6th international conference—cloud
system and big data engineering (Confluence), Noida, India, 14–15 Jan 2016
63. Pasha M, Shah SMW (2018) Framework for E-health systems in IoT-based environments.
Wirel Commun Mob Comput 2018:11 pages. Article ID 6183732
64. Java Embedded Documentation. https://www.oracle.com/technetwork/java/embedded/javame/
embedme/documentation/index.html
65. Alhussein M, Muhammad G (2019) Automatic voice pathology monitoring using parallel deep
models for smart healthcare. IEEE Access 7:46474–46479
66. Xiao F, Miao Q, Xie X, Sun L, Wang R (2018) Indoor Anti-collision alarm system based on
wearable internet of things for smart healthcare. IEEE Commun Mag 56:53–59
67. Zhang F, Cao J, Khan SU, Li K, Hwang K (2015) A task-level adaptive MapReduce framework
for real-time streaming data in healthcare applications. Futur Gener Comput Syst 43–44:149–
160
68. Arsand E, Muzny M, Bradway M, Muzik J (2015) Performance of the first combined
smartwatch and smartphone diabetes diary application study. J Diabetes 9:556–563
69. Wu T, Redouté J-M, Yuce M (2019) A wearable, low power, real-time ECG monitor for smart
T-shirt and IoT healthcare applications. Advances in body area networks I, pp 165–173
70. Al-Taee MA, Al-Nuaimy W, Al-Ataby A, Muhsin ZJ, Abood SN (2015) Mobile health platform
for diabetes management based on the Internet-of-Things. In: 2015 IEEE Jordan conference
on applied electrical engineering and computing technologies (AEECT)
