The Experts below are selected from a list of 273 Experts worldwide ranked by ideXlab platform
Zhou Li - One of the best experts on this subject based on the ideXlab platform.
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a 25 year bibliometric study of implantable energy harvesters and self powered implantable Medical Electronics researches
Materials Today Energy, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhanming Chen, Zhou LiAbstract:Abstract Organisms and surrounding environment are filled with energy that can be converted into electricity by implantable energy harvesters (IEHs). More and more implantable Medical Electronics (IMEs) are evolving into self-powered devices with the support of the IEHs to break the limitation of service life of batteries used in them. Numerous researches aim to achieve the final goal of self-powered implantable Medical Electronics (SIMEs). After around one quarter century of research, it is an appropriate time to review the trend and prospect the future of related studies about IEHs and SIMEs. Based on the publications extracted from Web of Science (WOS) over the past 25 years (1995–2019), IEHs and SIMEs are analyzed and summarized based on bibliometric and visualization methods. Evolution trends and research characteristics of five types of IEHs and several highly representative SIMEs are discussed in depth. The findings show that implantable nanogenerator is the most concerned research topic and its research scale is expected to develop rapidly in the future. In addition, the publications of the promising SIMEs for clinical applications have also been highlighted and reviewed.
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emerging implantable energy harvesters and self powered implantable Medical Electronics
ACS Nano, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhou LiAbstract:Implantable energy harvesters (IEHs) are the crucial component for self-powered devices. By harvesting energy from organisms such as heartbeat, respiration, and chemical energy from the redox react...
Zhong Lin Wang - One of the best experts on this subject based on the ideXlab platform.
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a 25 year bibliometric study of implantable energy harvesters and self powered implantable Medical Electronics researches
Materials Today Energy, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhanming Chen, Zhou LiAbstract:Abstract Organisms and surrounding environment are filled with energy that can be converted into electricity by implantable energy harvesters (IEHs). More and more implantable Medical Electronics (IMEs) are evolving into self-powered devices with the support of the IEHs to break the limitation of service life of batteries used in them. Numerous researches aim to achieve the final goal of self-powered implantable Medical Electronics (SIMEs). After around one quarter century of research, it is an appropriate time to review the trend and prospect the future of related studies about IEHs and SIMEs. Based on the publications extracted from Web of Science (WOS) over the past 25 years (1995–2019), IEHs and SIMEs are analyzed and summarized based on bibliometric and visualization methods. Evolution trends and research characteristics of five types of IEHs and several highly representative SIMEs are discussed in depth. The findings show that implantable nanogenerator is the most concerned research topic and its research scale is expected to develop rapidly in the future. In addition, the publications of the promising SIMEs for clinical applications have also been highlighted and reviewed.
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emerging implantable energy harvesters and self powered implantable Medical Electronics
ACS Nano, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhou LiAbstract:Implantable energy harvesters (IEHs) are the crucial component for self-powered devices. By harvesting energy from organisms such as heartbeat, respiration, and chemical energy from the redox react...
Jonathan Jacky - One of the best experts on this subject based on the ideXlab platform.
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inside risks risks in Medical Electronics
Communications of The ACM, 1990Co-Authors: Jonathan JackyAbstract:The RISKS Forum has had many accounts of annoying errors, expensive breakdowns, privacy abuses, security breaches, and potential safety hazards. However, postings describing documented serious injuries or deaths that scan be unequivocally attributed to deficiencies in the design or implementation of computer-controlled systems are very rare. A tragic exception was a series of accidents which occurred between 1985 and 1987 involving a computer-controlled radiation therapy machine.
Dongjie Jiang - One of the best experts on this subject based on the ideXlab platform.
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a 25 year bibliometric study of implantable energy harvesters and self powered implantable Medical Electronics researches
Materials Today Energy, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhanming Chen, Zhou LiAbstract:Abstract Organisms and surrounding environment are filled with energy that can be converted into electricity by implantable energy harvesters (IEHs). More and more implantable Medical Electronics (IMEs) are evolving into self-powered devices with the support of the IEHs to break the limitation of service life of batteries used in them. Numerous researches aim to achieve the final goal of self-powered implantable Medical Electronics (SIMEs). After around one quarter century of research, it is an appropriate time to review the trend and prospect the future of related studies about IEHs and SIMEs. Based on the publications extracted from Web of Science (WOS) over the past 25 years (1995–2019), IEHs and SIMEs are analyzed and summarized based on bibliometric and visualization methods. Evolution trends and research characteristics of five types of IEHs and several highly representative SIMEs are discussed in depth. The findings show that implantable nanogenerator is the most concerned research topic and its research scale is expected to develop rapidly in the future. In addition, the publications of the promising SIMEs for clinical applications have also been highlighted and reviewed.
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emerging implantable energy harvesters and self powered implantable Medical Electronics
ACS Nano, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhou LiAbstract:Implantable energy harvesters (IEHs) are the crucial component for self-powered devices. By harvesting energy from organisms such as heartbeat, respiration, and chemical energy from the redox react...
Han Ouyang - One of the best experts on this subject based on the ideXlab platform.
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a 25 year bibliometric study of implantable energy harvesters and self powered implantable Medical Electronics researches
Materials Today Energy, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhanming Chen, Zhou LiAbstract:Abstract Organisms and surrounding environment are filled with energy that can be converted into electricity by implantable energy harvesters (IEHs). More and more implantable Medical Electronics (IMEs) are evolving into self-powered devices with the support of the IEHs to break the limitation of service life of batteries used in them. Numerous researches aim to achieve the final goal of self-powered implantable Medical Electronics (SIMEs). After around one quarter century of research, it is an appropriate time to review the trend and prospect the future of related studies about IEHs and SIMEs. Based on the publications extracted from Web of Science (WOS) over the past 25 years (1995–2019), IEHs and SIMEs are analyzed and summarized based on bibliometric and visualization methods. Evolution trends and research characteristics of five types of IEHs and several highly representative SIMEs are discussed in depth. The findings show that implantable nanogenerator is the most concerned research topic and its research scale is expected to develop rapidly in the future. In addition, the publications of the promising SIMEs for clinical applications have also been highlighted and reviewed.
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emerging implantable energy harvesters and self powered implantable Medical Electronics
ACS Nano, 2020Co-Authors: Dongjie Jiang, Han Ouyang, Zhong Lin Wang, Zhou LiAbstract:Implantable energy harvesters (IEHs) are the crucial component for self-powered devices. By harvesting energy from organisms such as heartbeat, respiration, and chemical energy from the redox react...