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    • 95. 发明申请
    • METHOD AND SENSOR FOR SENSING TEMPERATURE OR STRAIN
    • 感测温度或应变的方法和传感器
    • WO2015017936A1
    • 2015-02-12
    • PCT/CA2014/050745
    • 2014-08-08
    • POLYVALOR, LIMITED PARTNERSHIP
    • KASHYAP, RamanLORANGER, SébastienLAMBIN IEZZI, Victor
    • G01K11/32G01B11/16
    • H01S3/302H01S3/06754H01S3/06791H01S3/08013H01S3/094023H01S3/10092H01S3/11H01S3/1698
    • The method for sensing strain or temperature with an optical fiber generally comprises propagating a seed wave in an optical fiber; generating a first wave by stimulated Brillouin scattering of the seed wave in the optical fiber, the first wave having a frequency spectrally shifted from the seed wave and being backscattered from the seed wave; propagating the seed wave and the first wave in a sensing feedback cavity thereby generating waves of higher order, each wave of higher order being cascadely generated by the wave of previous order, each wave of higher order being backscattered and having a frequency spectrally shifted from its corresponding wave of previous order and forming a frequency comb with the seed wave and the first wave; measuring a spectral frequency shift of at least one of the waves of higher order; and sensing the strain or temperature based on the measured spectral frequency shift.
    • 用光纤检测应变或温度的方法通常包括在光纤中传播种子波; 通过光纤中的种子波的受激布里渊散射产生第一波,第一波具有从种子波频谱偏移并从种子波反向散射的频率; 在感测反馈空腔中传播种子波和第一波,从而产生较高阶的波,高阶的每一波由先前次序的波级联地产生,高阶的每一波都被反向散射并且具有频谱从其 先前顺序的相应波形,并与种子波和第一波形成频率梳; 测量高阶波中的至少一个的频谱频移; 并且基于所测量的频谱频移感测应变或温度。
    • 97. 发明申请
    • CYCLIC CONTROLLED DYNAMIC DEVICE FOR THE CORRECTION OF SPINAL DEFORMITIES
    • 用于纠正脊柱畸形的循环控制动态装置
    • WO2014127464A1
    • 2014-08-28
    • PCT/CA2014/000143
    • 2014-02-25
    • POLYVALOR, LIMITED PARTNERSHIPVALORISATION HSJ, LIMITED PARTNERSHIP
    • AUBIN, Carl-EricPARENT, StefanVILLEMURE, IsabelleAMINI, SamiraDRISCOLL, MarkMOLDOVAN, Florina
    • A61B17/70A61B17/56
    • A61B17/7001A61B17/7014A61B17/7022
    • A fusionless instrumentation suited for providing initial and long term correction of spinal deformities through the use of combined controlled dynamic recurrent sequences of compression and distraction and mechanical bone growth modulation, respectively. The device seeks to provide controlled dynamic compression to the targeted growth plate over the convexity of a spinal deformity alone or combined with posterior controlled dynamic distraction to the growth plate over contralateral side of the deformity. In turn, this will retard local growth on the convexity of the curve where compression is applied and will accelerate local growth on the concavity of the curve where distraction is applied, resulting in the reduction, elimination, or reversal of vertebral wedging and, consequently, realignment of the spine, using more physiological (controlled dynamic) loadings that allow improved growth modulation, as compared to current fusionless devices which are based on static/non-cyclic principles.
    • 一种无融合器械,分别适用于通过使用压缩和牵引和机械骨生长调节的组合控制的动态复发序列来提供脊柱畸形的初始和长期矫正。 该装置试图在单独的脊柱畸形的凸起上向目标生长板提供受控的动态压缩,或者与变形的对侧上的生长板的后部控制的动态牵引组合。 反过来,这将阻止在施加压力的曲线的凸度上的局部生长,并且将加速在施加牵引力的曲线的凹部上的局部生长,导致椎体楔入的减小,消除或逆转, 与基于静态/非循环原理的当前无融合设备相比,使用更多的生理(受控动态)负载来重新对准脊柱,允许改进的生长调制。