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2篇 您的检索式:作者名="Guru Gopalakrishnan"
    题名 作者 年代 出处 被引量
1WiGig and IEEE 802.11ad for Multi-Gigabyte-Per-Second WPAN and WLAN显示文摘The Wireless Gigabit Alliance (WiGig) and IEEE 802.11ad are developing a multigigabit wireless personal and local area network (WPAN/WLAN) specification in the 60 GHz millimeter wave band. Chipset manufacturers, original equipment manufacturers (OEMs), and telecom companies are also assisting in this development. 60 GHz millimeter wave transmission will scale the speed of WLANs and WPANs to 6.75 Gbit/s over distances less than 10 meters. This technology is the first of its kind and will eliminate the need for cable around personal computers, docking stations, and other consumer electronic devices. High-definition multimedia interface (HDMI), display port, USB 3.0, and peripheral component interconnect express (PCIe) 3.0 cables will all be eliminated. Fast downloads and uploads, wireless sync, and multi-gigabit-per-second WLANs will be possible over shorter distances. 60 GHz millimeter wave supports fast session transfer (FST) protocol, which makes it backward compatible with 5 GHz or 2.4 GHz WLAN so that end users experience the same range as in today's WLANs. IEEE 802.11ad specifies the physical (PHY) sublayer and medium access control (MAC) sublayer of the protocol stack. The MAC protocol is based on time-division multiple access (TDMA), and the PHY layer uses single carrier (SC) and orthogonal frequency division multiplexing (OFDM) to simultaneously enable low-power, high-performance applications.Sai Shankar N Debashis Dash Hassan El Madi Guru Gopalakrishnan 2012ZTE Communications2012,10,4:4
2Anticancer activity of the ethanolic extract of Crateva nurvala bark against testosterone and MNU-induced prostate cancer in rats显示文摘AIM: In the present study the anticancer activity of the ethanolic extract of Crateva nurvala bark was evaluated against testosterone and N-methyl-N-nitrosourea (MNU)-induced prostate cancer in male Wistar rats. METHODS: Prostate cancer was induced in rats by the injection of testosterone for 3 d followed by injection of the chemical carcinogen MNU for 1 week. The prostate cancer-induced rats were treated with the ethanolic extract of C. nurvala bark, and testosterone injection was also continued through the experimental period of 4 months. Biochemical estimations including prostatic acid phosphatase, lipid peroxidation, enzymic antioxidants and non-enzymic antioxidants activity were done in the prostate and seminal vesicle tissue homogenate. RESULTS: There was a significant increase in the level of acid phosphatase and lipid peroxidation in prostate cancer-induced rats, and after treatment with C. nurvala extract a significant decrease in the level of acid phosphatase lipid peroxidation were observed. The enzymic and non-enzymic antioxidants were decreased in the prostate cancer induced group and after treatment they were restored to near normal values. Histopathological examination showed significant changes such as hyperplastic prostatic acini and malignant proliferation of ductal epithelial cells in the prostate and seminal vesicle of carcinogen induced rats. After treatment with C. nurvala extract normal and flow-dilated ducts and acini with regular epithelial lining were observed in the prostate and partially hyperplastic and partially flattered epithelium were observed in seminal vesicles. CONCLUSION: The ethanolic extract of C. nurvala has significant anticancer activity evaluated by in an in vivo model.Dugganaboyana GURU KUMAR Vijayakumar PARVATHI Periasamy MEENAKSHI Muthaiyan Ahalliya RATHI Velliyur Kanniappan GOPALAKRISHNAN 2012中国天然药物2012,10,5:1
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