Healthcare electronics-A step closer to future smart cities

Healthcare electronics-A step closer to future smart cities
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DOI:
10.1016/j.icte.2018.01.009
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发表时间:
2019-12-01
期刊:
影响因子:
5.4
通讯作者:
Ghani, Arfan
Ghani, Arfan
中科院分区:
计算机科学3区
文献类型:
--
作者:
Ghani, Arfan

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随着信息和通信技术将传统城市转变为智慧城市,物联网(IoT)使智慧城市变得高效和响应迅速。回顾过去,对于医疗技术人员来说,要进入新的医疗保健行业并建立自己的地位,我们必须超越传统形式的技术创新。因此,物联网是一个考虑的途径。人们希望基于物联网的医疗设备能够早期发现潜在的病情加重,并告知患者和医疗专业人员,以便他们能够及时得到治疗。针对智慧城市中的智慧医疗,本文提出了一项研究,设计了一种光电控制器芯片来控制视网膜假体中使用的微型发光二极管(LED)矩阵。设计了一种可单独寻址的低功耗微型LED阵列,并报告了结果。该芯片是使用德国代工厂X-FAB 0.35 μ m互补金属氧化物半导体(CMOS)技术和总芯片面积为4毫米(2)。可以设想,所提出的设计和技术可以潜在地用于医疗保健和消费电子产品中的许多应用。(C)2019年韩国通信与信息科学研究所(KICS)。出版社:Elsevier B. V.
As information and communication technologies are transforming traditional cities into smart cities, the Internet of Things (IoT) makes smart cities efficient and responsive. In retrospect, for medical technologists to enter and establish themselves in the new healthcare industry, it is imperative that we look beyond traditional forms of technological innovations. Hence, IoT is an avenue for consideration. It is hoped that IoT-based healthcare devices will be able to provide the early detection of potential exacerbations and inform patients and medical professionals such that they can be treated promptly. In regard to smart healthcare within smart cities, this paper presents a study where an optoelectronic controller chip was designed to control the micro light emitting diode (LED) matrix used in retinal prosthesis. An individually addressable low-power micro LED array is designed and the results are reported. The chip is fabricated using the German foundry X-FAB 0.35-mu m complementary metal oxide semiconductor (CMOS) technology and the total die area is 4 mm(2). It is envisaged that the presented design and technology could potentially be used for a number of applications in healthcare and consumer electronics. (C) 2019 The Korean Institute of Communications and Information Sciences (KICS). Publishing services by Elsevier B.V.