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        Thermal stability of titanium nitride coatings prepared by the mixing technology with laser and plasma

        Hanjiang Yu,Tianya Tan,Wei Wu,Chao Tian,Ying An,Fengjiu Sun 한국물리학회 2012 Current Applied Physics Vol.12 No.1

        Titanium samples were treated by the mixing technology with laser and plasma (LPN) using different laser power densities. These nitrided samples were then annealed at 473 K, 673 K, 873 K, and 1073 K for 2 h in vacuum, respectively. The samples before and after annealing were characterized at room temperature and compared in terms of microstructure. X-ray diffraction and cross-sectional optical microscopy studies showed that the layer structure of the titanium nitride coating is preserved after annealing at 1073 K when the coating is formed using a laser power density of 8.0 105 W/cm2. Therefore, titanium nitride coatings produced by LPN demonstrate excellent thermal stability and are potential candidates for high temperature tribological applications. Titanium samples were treated by the mixing technology with laser and plasma (LPN) using different laser power densities. These nitrided samples were then annealed at 473 K, 673 K, 873 K, and 1073 K for 2 h in vacuum, respectively. The samples before and after annealing were characterized at room temperature and compared in terms of microstructure. X-ray diffraction and cross-sectional optical microscopy studies showed that the layer structure of the titanium nitride coating is preserved after annealing at 1073 K when the coating is formed using a laser power density of 8.0 105 W/cm2. Therefore, titanium nitride coatings produced by LPN demonstrate excellent thermal stability and are potential candidates for high temperature tribological applications.

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        Assessment of Anteroposterior Subpedicular Approach and Oblique Scotty Dog Subpedicular Approach for Selective Nerve Root Block

        Arun-Kumar Kaliya-Perumal,Yu-Cheng Yeh,Chi-An Luo,Kit-Yang Joey-Tan 대한정형외과학회 2017 Clinics in Orthopedic Surgery Vol.9 No.1

        Background: The technique used to administer a selective nerve root block (SNRB) varies depending on individual expertise. Both the anteroposterior (AP) subpedicular approach and oblique Scotty dog subpedicular approach are widely practiced. However, the literature does not provide a clear consensus regarding which approach is more suitable. Hence, we decided to analyse the procedural parameters and clinical outcomes following SNRBs using these two approaches. Methods: Patients diagnosed with a single lumbar herniated intervertebral disc (HIVD) refractory to conservative management but not willing for immediate surgery were selected for a prospective nonrandomized comparative study. An SNRB was administered as a therapeutic alternative using the AP subpedicular approach in one group (n = 25; mean age, 45 ± 5.4 years) and the oblique Scotty dog subpedicular approach in the other group (n = 22; mean age, 43.8 ± 4.7 years). Results were compared in terms of the duration of the procedure, the number of C-arm exposures, accuracy, pain relief, functional outcome and the duration of relief. Results: Our results suggest that the oblique Scotty dog subpedicular approach took a significantly longer duration (p = 0.02) and a greater number of C-arm exposures (p = 0.001). But, its accuracy of needle placement was 95.5% compared to only 72% using the AP subpedicular approach (p = 0.03). There was no significant difference in terms of clinical outcomes between these approaches. Conclusions: The AP subpedicular approach was simple and facile, but the oblique Scotty dog subpedicular approach was more accurate. However, a brief window period of pain relief was achieved irrespective of the approaching technique used.

      • Inter-domain Alliance Authentication Protocol Based on Blind Signature

        Zhang Jie,Zhang Qi-kun,Gan Yong,Yin Yifeng,Tan Yu-an 보안공학연구지원센터 2015 International Journal of Security and Its Applicat Vol.9 No.12

        In large distributed networks, many computers must be mutual coordination to complete some works under the certain conditions, these computers may come from different domains. For ensuring secure cross domains to access resources among these computers in different domains, this paper proposes a multi-domain union authentication protocol. The protocol adopts blind signature to achieve mutual authentication among entities in different domains. This scheme overcomes the complexity of certificate transmission and the network bottlenecks in the scheme of PKI-based. It can trace the entity identity and supports two-way entities anonymous authentication, which avoid the authority counterfeiting its member to access other domain’s resources. Analysis shows that its advantages on security and communication-consumption.

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