The Experts below are selected from a list of 222 Experts worldwide ranked by ideXlab platform
J.f. Hare - One of the best experts on this subject based on the ideXlab platform.
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Role Of The Biomedical Engineer In The Pharmaceutical Industry
[1990] Proceedings of the Twelfth Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 1Co-Authors: S.a. O'connor, J.f. HareAbstract:The role of the Biomedical Engineer in the multi-disciplina ry environment of the pharmaceutical industry is described with specific examples to illustrate the support to scientific colleagues at all stages of the drug discovery and development process.
Gustavo Ramirez-gonzalez - One of the best experts on this subject based on the ideXlab platform.
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Exploring DNS, HTTP, and ICMP Response Time Computations on Brain Signal/Image Databases using a Packet Sniffer Tool
IEEE Access, 2018Co-Authors: V. Elamaran, G. Venkat Babu, V. S. Balaji, Cristhian Figueroa, Nivethitha Arunkumar, Jorge Gomez, Gustavo Ramirez-gonzalezAbstract:Neurological signal processing is of significance not only the physiologist doing research and the clinician investigating patients but also to the Biomedical Engineer who is needed to collect, process, and interpret the physiological signals by prototyping systems and algorithms for their manipulations. While it is a fact that there does hold immense stuff (material) on the subject of digital neurological signal processing, however, it is dispersed in various scientific, technological, and physiological journals, databases also in various international conference proceedings. Consequently, it is a quite hard, more time-consuming, and often tiresome job, especially to the stranger to the domain. Hence, this study concentrates on how much time would require to access the databases belong to the brain signal/image collections, neurological signals, etc. The sixteen US-based Servers, ten UK-based Servers, and the five Servers from other countries are included in this study. Mainly, the domain name system, hyper text transfer protocol, and the Internet control message protocol query/response times are analyzed using a popular packet sniffer called Wireshark.
V. Elamaran - One of the best experts on this subject based on the ideXlab platform.
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Revisiting computer networking protocols by wireless sniffing on brain signal/image portals
Neural Computing and Applications, 2020Co-Authors: B. R. Sathishkumar, V. Elamaran, V. S. Balaji, B. Sundaravadivazhagan, Betty Martin, G. Sasi, M. Chandrasekar, S. Rakesh Kumar, N. ArunkumarAbstract:Brain signal/image processing is of significant attention not only the physiologist carrying out analysis and probe and the clinician investigating patients but further to the Biomedical Engineer who is vital for acquisition, processing, and interpreting the electroencephalogram signals by designing systems and algorithms for their control. The precious, abundant materials or information in the field of brain signal/image processing is distributed in the diverse scientific, technological and physiological periodicals, magazines, journals, international conference proceedings, and also in various portals/databases. Security threats or attacks may happen for a portal using data interruption, information interception, content modification and fabrication with new data. This study interprets the protocol layering information for the captured packets, image reconstruction after sniffing the packets, and the DNS/rDNS response times for a given portal/IP address using a Wireshark open source tool. Also, the security assessment results such as OS fingerprinting and port sweeping on the remote machines are performed using Nmap open source tool. Results are analyzed on specific brain signal/image processing portals around the globe located in USA, UK, and other countries.
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Exploring DNS, HTTP, and ICMP Response Time Computations on Brain Signal/Image Databases using a Packet Sniffer Tool
IEEE Access, 2018Co-Authors: V. Elamaran, G. Venkat Babu, V. S. Balaji, Cristhian Figueroa, Nivethitha Arunkumar, Jorge Gomez, Gustavo Ramirez-gonzalezAbstract:Neurological signal processing is of significance not only the physiologist doing research and the clinician investigating patients but also to the Biomedical Engineer who is needed to collect, process, and interpret the physiological signals by prototyping systems and algorithms for their manipulations. While it is a fact that there does hold immense stuff (material) on the subject of digital neurological signal processing, however, it is dispersed in various scientific, technological, and physiological journals, databases also in various international conference proceedings. Consequently, it is a quite hard, more time-consuming, and often tiresome job, especially to the stranger to the domain. Hence, this study concentrates on how much time would require to access the databases belong to the brain signal/image collections, neurological signals, etc. The sixteen US-based Servers, ten UK-based Servers, and the five Servers from other countries are included in this study. Mainly, the domain name system, hyper text transfer protocol, and the Internet control message protocol query/response times are analyzed using a popular packet sniffer called Wireshark.
S.a. O'connor - One of the best experts on this subject based on the ideXlab platform.
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Role Of The Biomedical Engineer In The Pharmaceutical Industry
[1990] Proceedings of the Twelfth Annual International Conference of the IEEE Engineering in Medicine and Biology Society, 1Co-Authors: S.a. O'connor, J.f. HareAbstract:The role of the Biomedical Engineer in the multi-disciplina ry environment of the pharmaceutical industry is described with specific examples to illustrate the support to scientific colleagues at all stages of the drug discovery and development process.
F Nebeker - One of the best experts on this subject based on the ideXlab platform.
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thelma estrin Biomedical Engineer a pioneer of applied computing
Proceedings of the IEEE, 1993Co-Authors: F NebekerAbstract:An account is given of the career of Thelma Estrin. Estrin entered Engineering because of the urgent need for workers in the defense industries during World War II. After earning a Ph.D degree in electrical Engineering in 1951, she worked in medical electronics (mainly electroencephalography) and on the design and construction of a digital computer (the WEIZAC). In 1960 she began a long association with UCLA's Brain Research Institute, where she organized and directed the Data Processing Laboratory. Estrin pioneered in the application of computers to Biomedical research-especially in the areas of data acquisition and graphic display-and health-care delivery. In addition, she has done much to increase the number of women in Engineering, both by direct efforts to assist others and by providing a role model. >