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6篇 您的检索式:作者名="Mickael Martin"
    题名 作者 年代 出处 被引量
1Hip joint center localisation: A biomechanical application to hip arthroplasty population显示文摘AIM: To determine hip joint center(HJC) location on hip arthroplasty population comparing predictive and functional approaches with radiographic measurements.METHODS: The distance between the HJC and the mid-pelvis was calculated and compared between the three approaches. The localisation error between the predictive and functional approach was compared using the radiographic measurements as the reference. The operated leg was compared to the non-operated leg.RESULTS: A significant difference was found for the distance between the HJC and the mid-pelvis when comparing the predictive and functional method. The functional method leads to fewer errors. A statistical difference was found for the localization error between the predictive and functional method. The functional method is twice more precise.CONCLUSION: Although being more individualized, the functional method improves HJC localization and should be used in three-dimensional gait analysis.Vicky Bouffard Mickael Begon Annick Champagne Payam Farhadnia Pascal-André Vendittoli Martin Lavigne Franois Prince 2012World Journal of Orthopedics2012,3,8:3
2Chemotherapy induces ATP release from tumor cells显示文摘Isabelle Martins Antoine Tesniere Oliver Kepp Mickael Michaud Frederic Schlemmer Laura Senovilla Claire Séror Didier Métivier Jean-Luc Perfettini Laurence Zitvogel Guido Kroemer 2009Cell Cycle2009,,:1
3Schmallenberg virus experimental infection of sheep显示文摘Kerstin Wernike Bernd Hoffmann Emmanuel Bréard Anette B?tner Claire Ponsart Stéphan Zientara Louise Lohse Nathalie Pozzi Cyril Viarouge Pierre Sarradin Céline Leroux-Barc Mickael Riou Angele Breithaupt Martin Beer 2013Veterinary Microbiology2013,,:1
4High-speed identification of suspended carbon nanotubes using Raman spectroscopy and deep learning显示文摘The identification of nanomaterials with the properties required for energy-efficient electronic systems is usually a tedious human task.A workflow to rapidly localize and characterize nanomaterials at the various stages of their integration into large-scale fabrication processes is essential for quality control and,ultimately,their industrial adoption.In this work,we develop a high-throughput approach to rapidly identify suspended carbon nanotubes(CNTs)by using high-speed Raman imaging and deep learning analysis.Even for Raman spectra with extremely low signal-to-noise ratios(SNRs)of 0.9,we achieve a classification accuracy that exceeds 90%,while it reaches 98%for an SNR of 2.2.By applying a threshold on the output of the softmax layer of an optimized convolutional neural network(CNN),we further increase the accuracy of the classification.Moreover,we propose an optimized Raman scanning strategy to minimize the acquisition time while simultaneously identifying the position,amount,and metallicity of CNTs on each sample.Our approach can readily be extended to other types of nanomaterials and has the potential to be integrated into a production line to monitor the quality and properties of nanomaterials during fabrication.Jian Zhang Mickael L.Perrin Luis Barba Jan Overbeck Seoho Jung Brock Grassy Aryan Agal Rico Muff Rolf Brönnimann Miroslav Haluska Cosmin Roman Christofer Hierold Martin Jaggi Michel Calame 2022Microsystems & Nanoengineering2022,8,1:1
5Highly integrated photonic crystal bandedge lasers monolithically grown on Si substrates显示文摘Monolithic integration of Ⅲ-Ⅴ lasers with small footprint, good coherence, and low power consumption based on a CMOS-compatible Si substrate have been known as an efficient route towards high-density optical interconnects in the photonic integrated circuits. However, the material dissimilarities between Si and Ⅲ-Ⅴ materials limit the performance of monolithic microlasers. Here, under the pumping condition of a continuous-wave 632.8 nm He–Ne gas laser at room temperature, we achieved an InAs/GaAs quantum dot photonic crystal bandedge laser, which is directly grown on an on-axis Si(001) substrate, which provides a feasible route towards a low-cost and large-scale integration method for light sources on the Si platform.黄要然 周陶杰 唐明初 项国洪 李浩川 Mickael Martin Thierry Baron 陈思铭 刘会赟 张昭宇 2022Chinese Optics Letters2022,20,4:0
6Room-temperature continuous-wave topological Dirac-vortex microcavity lasers on silicon显示文摘Robust laser sources are a fundamental building block for contemporary information technologies.Originating from condensed-matter physics,the concept of topology has recently entered the realm of optics,offering fundamentally new design principles for lasers with enhanced robustness.In analogy to the well-known Majorana fermions in topological superconductors,Dirac-vortex states have recently been investigated in passive photonic systems and are now considered as a promising candidate for robust lasers.Here,we experimentally realize the topological Diracvortex microcavity lasers in InAs/InGaAs quantum-dot materials monolithically grown on a silicon substrate.We observe room-temperature continuous-wave linearly polarized vertical laser emission at a telecom wavelength.We confirm that the wavelength of the Dirac-vortex laser is topologically robust against variations in the cavity size,and its free spectral range defies the universal inverse scaling law with the cavity size.These lasers will play an important role in CMOS-compatible photonic and optoelectronic systems on a chip.Jingwen Ma Taojie Zhou Mingchu Tang Haochuan Li Zhan Zhang Xiang Xi Mickael Martin Thierry Baron Huiyun Liu Zhaoyu Zhang Siming Chen Xiankai Sun 2023Light(Science & Applications)2023,12,11:0
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