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  • 1
    In: Optics Express, Optica Publishing Group, Vol. 27, No. 14 ( 2019-07-08), p. 19319-
    Type of Medium: Online Resource
    ISSN: 1094-4087
    Language: English
    Publisher: Optica Publishing Group
    Publication Date: 2019
    detail.hit.zdb_id: 1491859-6
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  • 2
    Online Resource
    Online Resource
    Optica Publishing Group ; 2019
    In:  Optics Express Vol. 27, No. 16 ( 2019-08-05), p. 23529-
    In: Optics Express, Optica Publishing Group, Vol. 27, No. 16 ( 2019-08-05), p. 23529-
    Type of Medium: Online Resource
    ISSN: 1094-4087
    Language: English
    Publisher: Optica Publishing Group
    Publication Date: 2019
    detail.hit.zdb_id: 1491859-6
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  • 3
    Online Resource
    Online Resource
    Wiley ; 2006
    In:  European Journal of Inorganic Chemistry Vol. 2006, No. 3 ( 2006-02), p. 663-670
    In: European Journal of Inorganic Chemistry, Wiley, Vol. 2006, No. 3 ( 2006-02), p. 663-670
    Abstract: The salt elimination reaction between NaCo(CO) 4 and the ruthenium complexes LRu(diphos)Cl and [(Ind)Ru(CO) 2 Cl] afforded the Ru–Co bimetallic complexes [LRu(μ‐CO) 2 (μ‐diphos)Co(CO) 2 ] [L = C 5 Me 5 (Cp*), diphos = Ph 2 P(CH 2 ) n PPh 2 , 3a : n = 1 , or 3b : n = 2; 3 : L = C 9 H 7 (Ind), diphos = Ph 2 PCH 2 PPh 2 ] and [(Ind)Ru(CO) 2 Co(CO) 4 ] ( 3d ), respectively, in high yields. However, the same reaction with the monophosphane analogue, [(Ind)Ru(PPh 3 ) 2 Cl], gave the heterobimetallic complex [(Ind)Ru(PPh 3 )(CO)(μ‐CO)Co(CO) 3 ] ( 3e ) in fair yield, together with redox‐initiated derivatives Ru(PPh 3 ) 2 (CO) 3 ( 4e ) and [(Ind)Co(CO)(PPh 3 )] ( 6e ). A similar redox process in the reaction of the dppf analogue, [(Ind)Ru(dppf)Cl] (dppf = 1,1′‐diphenylphosphanylferrocene) gave [Ru(dppf)(CO) 3 ] ( 4f ) and [(Ind)Co(CO) 2 ] ( 6f ), together with a complex salt [(Ind)Ru(dppf)(CO)][Co(CO 4 )] [ 5f·Co(CO) 4 ]. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2006)
    Type of Medium: Online Resource
    ISSN: 1434-1948 , 1099-0682
    URL: Issue
    RVK:
    Language: English
    Publisher: Wiley
    Publication Date: 2006
    detail.hit.zdb_id: 1475009-0
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  • 4
    In: Frontiers in Medicine, Frontiers Media SA, Vol. 10 ( 2023-7-25)
    Abstract: With the development of arthroscopic technology and equipment, arthroscopy can effectively repair the tear of the subscapular muscle. However, it is difficult to expose the subscapular muscle and operate it under a microscope. In this study, the SwiveLock ® C external row anchor under arthroscopy was applied to repair the tear of the subscapular muscle in a single row, which is relatively easy to operate with reliable suture and fixation, and its efficacy was evaluated. Purpose This study aimed to assess the clinical efficacy and the tendon integrity of patients who had subscapularis tears by adopting the single-row repair technique with a SwiveLock ® C external row anchor. Methods Patients who had the subscapular muscle tear either with or without retraction were included, and their follow-up time was at least 1 year. The degree of tendon injury was examined by magnetic resonance imaging (MRI) and confirmed by arthroscopy. The tendon was repaired in an arthroscopic manner by utilizing the single-row technique at the medial margin of the lesser tuberosity. One double-loaded suture SwiveLock ® C anchor was applied to achieve a strong fixation between the footprint and tendon. The range of motion, pain visual simulation score, American Shoulder and Elbow Surgeons (ASES) score, and Constant score of shoulder joint were evaluated for each patient before the operation, 3 months after the operation, and at least 1 year after the operation. Results In total, 110 patients, including 31 males and 79 females, with an average age of 68.28 ± 8.73 years were included. Arthroscopic repair of the subscapular tendon with SwiveLock ® C external anchor can effectively improve the range of motion of the shoulder joint. At the last follow-up, the forward flexion of the shoulder joint increased from 88.97 ± 26.33° to 138.38 ± 26.48° ( P & lt; 0.05), the abduction range increased from 88.86 ± 25.27° to 137.78 ± 25.64° ( P & lt; 0.05), the external rotation range increased from 46.37 ± 14.48° to 66.49 ± 14.15° ( P & lt; 0.05), and the internal rotation range increased from 40.03 ± 9.01° to 57.55 ± 7.43° ( P & lt; 0.05). The clinical effect is obvious. The constant shoulder joint score increased from 40.14 ± 15.07 to 81.75 ± 11.00 ( P & lt; 0.05), the ASES score increased from 37.88 ± 13.24 to 82.01 ± 9.65 ( P & lt; 0.05), and the visual analog scale score decreased from 5.05 ± 2.11 to 1.01 ± 0.85 ( P & lt; 0.05). In the 6th month after the operation, two cases (1.81%) were confirmed to have re-tears via MRI. Conclusion In this study, we repaired the subscapularis muscle with a single-row technique fixed by SwiveLock ® C anchor and FiberWire ® sutures and evaluated its efficacy. The results showed that the clinical effect of single-row arthroscopic repair was satisfactory and that reliable tendon healing could be achieved.
    Type of Medium: Online Resource
    ISSN: 2296-858X
    Language: Unknown
    Publisher: Frontiers Media SA
    Publication Date: 2023
    detail.hit.zdb_id: 2775999-4
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  • 5
    Online Resource
    Online Resource
    Cambridge University Press (CUP) ; 2019
    In:  High Power Laser Science and Engineering Vol. 7 ( 2019)
    In: High Power Laser Science and Engineering, Cambridge University Press (CUP), Vol. 7 ( 2019)
    Abstract: Absolute instability modes due to secondary scattering of stimulated Raman scattering (SRS) in a large nonuniform plasma are studied theoretically and numerically. The backscattered light of convective SRS can be considered as a pump light with a finite bandwidth. The different frequency components of the backscattered light can be coupled to develop absolute SRS instability near their quarter-critical densities via rescattering process. The absolute SRS mode develops a Langmuir wave with a high phase velocity of about $c/\sqrt{3}$ with $c$ the light speed in vacuum. Given that most electrons are at low velocities in the linear stage, the absolute SRS mode grows with very weak Landau damping. When the interaction evolves into the nonlinear regime, the Langmuir wave can heat abundant electrons up to a few hundred keV via the SRS rescattering. Our theoretical model is validated by particle-in-cell simulations. The absolute instabilities may play a considerable role in the experiments of inertial confinement fusion.
    Type of Medium: Online Resource
    ISSN: 2095-4719 , 2052-3289
    Language: English
    Publisher: Cambridge University Press (CUP)
    Publication Date: 2019
    detail.hit.zdb_id: 2723155-0
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  • 6
    Online Resource
    Online Resource
    Cambridge University Press (CUP) ; 2022
    In:  High Power Laser Science and Engineering Vol. 10 ( 2022)
    In: High Power Laser Science and Engineering, Cambridge University Press (CUP), Vol. 10 ( 2022)
    Abstract: The influence of second-order dispersion (SOD) on stimulated Raman scattering (SRS) in the interaction of an ultrashort intense laser with plasma was investigated. More significant backward SRS was observed with the increase of the absolute value of SOD ( $\mid \kern-1pt\!{\psi}_2\!\kern-1pt\mid$ ). The integrated intensity of the scattered light is positively correlated to the driver laser pulse duration. Accompanied by the side SRS, filaments with different angles along the laser propagation direction were observed in the transverse shadowgraph. A model incorporating Landau damping and above-threshold ionization was developed to explain the SOD-dependent angular distribution of the filaments.
    Type of Medium: Online Resource
    ISSN: 2095-4719 , 2052-3289
    Language: English
    Publisher: Cambridge University Press (CUP)
    Publication Date: 2022
    detail.hit.zdb_id: 2723155-0
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  • 7
    Online Resource
    Online Resource
    Hindawi Limited ; 2013
    In:  Laser and Particle Beams Vol. 31, No. 4 ( 2013-12), p. 589-595
    In: Laser and Particle Beams, Hindawi Limited, Vol. 31, No. 4 ( 2013-12), p. 589-595
    Abstract: Laser light trapping in cavities in near-critical density plasmas is studied by two-dimensional particle-in-cell simulation. The laser ponderomotive force can create in the plasma a vacuum cavity bounded by a thin overcritical-density wall. The laser light is self-consistently trapped as a half-cycle electromagnetic wave in the form of an oscillon-caviton structure until it is slowly depleted through interaction with the cavity wall. When the near-critical density plasma contains a preformed cavity, laser light can become a standing wave in the latter. The trapped light is characterized as multi-peak structure. The overdense plasma wall around the self-generated and preformed cavities induced by the laser ponderomotive force is found to be crucial for pulse trapping. Once this wall forms, the trapped pulse can hardly penetrate.
    Type of Medium: Online Resource
    ISSN: 0263-0346 , 1469-803X
    Language: English
    Publisher: Hindawi Limited
    Publication Date: 2013
    detail.hit.zdb_id: 2021816-3
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  • 8
    Online Resource
    Online Resource
    AIP Publishing ; 2022
    In:  Matter and Radiation at Extremes Vol. 7, No. 4 ( 2022-07-01)
    In: Matter and Radiation at Extremes, AIP Publishing, Vol. 7, No. 4 ( 2022-07-01)
    Abstract: Nonlocal thermal transport in magnetized plasmas is studied theoretically and numerically with the Vlasov–Fokker–Planck (VFP) model, in which the magnetic field has nonzero components both perpendicular to and along the temperature gradient. Nonlocal heat transport is found in both the longitudinal and transverse directions, provided the temperature gradients are sufficiently large. The magnetic field tends to reduce the nonlocality of the thermal transport in the direction perpendicular to the magnetic field, i.e., the difference between the heat fluxes predicted by the Braginskii theory and the VFP simulation decreases with increasing magnetic field strength. When the initial temperature gradient is steep, the nonlocal heat flux depends not only on the present temperature profile, but also on its time history. Moreover, the contribution of high-order terms in the spherical harmonic expansion of the electron distribution function becomes important for a magnetized plasma, in particular for thermal transport in the direction perpendicular to the temperature gradient.
    Type of Medium: Online Resource
    ISSN: 2468-2047 , 2468-080X
    Language: English
    Publisher: AIP Publishing
    Publication Date: 2022
    detail.hit.zdb_id: 2858469-7
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  • 9
    In: Physics of Plasmas, AIP Publishing, Vol. 29, No. 12 ( 2022-12-01)
    Abstract: The origin of He+ ions in picosecond intense laser–gas interaction was experimentally and numerically investigated. A nanosecond laser pulse was used to modulate the plasma condition, which helps to distinguish the origin of the helium ions with different charge states. By comparing the energy spectra of He2+ and He+ ions in the experiments with/without plasma shaping, we found neither ion–atom nor electron–ion recombination is responsible for the He+ generation, which is supported by two-dimensional hydrodynamic simulations and theoretical calculations.
    Type of Medium: Online Resource
    ISSN: 1070-664X , 1089-7674
    Language: English
    Publisher: AIP Publishing
    Publication Date: 2022
    detail.hit.zdb_id: 1472746-8
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  • 10
    In: Physics of Plasmas, AIP Publishing, Vol. 29, No. 10 ( 2022-10-01)
    Abstract: Fusion reactions in a plasma environment are fundamental issues with general interest in high energy density sciences. The reaction rate in an astro-system, which may differ from cold matter, is an important subject in the ambiguous problems of elemental abundance. In addition, the stopping of charged particle in plasma has a considerable impact on the design of nuclear fusion reactors as it is related to the α-particle heating process and ion-driven fast ignition, but still needs better understanding. In this research, an experiment on laser-driven D–D fusion reactions (D + D → 3He + n) has been carried out to investigate the effects of ion stopping power in plasma on fusion reactivities. The neutron yields, plasma density, and deuteron energy loss in the plasma have been measured simultaneously, and the plasma temperature has been analyzed from simulations. It is experimentally demonstrated that the fusion reaction yield is closely correlated with ion beam transportation in the plasma. As a cold target heated to plasma, the reaction probabilities from a deuteron beam and deuterated target interactions can be enhanced or suppressed, which is ascribed to the deuteron stopping power variation in the plasma. The results show the importance of considering the temperature adjusted ion stopping power to correctly model the fusion reaction yields. This work has an impact on understanding the fusion reactions in plasma environment, which is also likely to help achieve higher neutron yields.
    Type of Medium: Online Resource
    ISSN: 1070-664X , 1089-7674
    Language: English
    Publisher: AIP Publishing
    Publication Date: 2022
    detail.hit.zdb_id: 1472746-8
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