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7篇 您的检索式:作者名="Huriye"
    题名 作者 年代 出处 被引量
1Does the intrathecal propofol have a neuroprotective effect on spinal cord ischemia?显示文摘The neuroprotective effects of propofol have been confirmed. However, it remains unclear whether intrathecal administration of propofol exhibits neuroprotective effects on spinal cord ischemia. At 1 hour prior to spinal cord ischemia, propofol(100 and 300 μg) was intrathecally administered in rats with spinal cord ischemia. Propofol pre-treatment greatly improved rat pathological changes and neurological function deficits at 24 hours after spinal cord ischemia. These results suggest that intrathecal administration of propofol exhibits neuroprotective effects on spinal cord structural and functional damage caused by ischemia.Murat Sahin Huriye Gullu Kemal Peker Ilyas Sayar Orhan Binici Huseyin Yildiz 2015Neural Regeneration Research2015,10,11:3
2The relationship between prolactin (PRL), leptin, nitric oxide (NO), and cytokines in patients with hyperprolactinemia显示文摘Huriye Balci Kadriye Akgun-Dar Nurperi Gazioglu Aysegul Kapucu Murat Bolayirli Buge Oz 2009Pituitary2009,,3:1
3Highly soluble perylene diimide and oligomeric diimide dyes combining perylene and hexa ( ethylene glycol) units: synthesis, characterization, optical and electrochemical properties 显示文摘Jagadeesh B Bodapati Huriye Icil 2008Dyes and Pigments2008,79,:1
4A zoophycos group trace fossil from miocene flysch in Southern Turkey: Evidence for a U-shaped causative burrow显示文摘Alfred Uchman Huriye Demircan 1999Ichnos1999,,4:1
5Quantitation of vitamin B12 by first-derivative absorption,spectroscopy显示文摘Huriye Karsilayan 1996Spectrochimica Acta Part A1996,52,:1
6Universal adaptive optics for microscopy through embedded neural network control显示文摘The resolution and contrast of microscope imaging is often affected by aberrations introduced by imperfect optical systems and inhomogeneous refractive structures in specimens.Adaptive optics(AO)compensates these aberrations and restores diffraction limited performance.A wide range of AO solutions have been introduced,often tailored to a specific microscope type or application.Until now,a universal AO solution-one that can be readily transferred between microscope modalities-has not been deployed.We propose versatile and fast aberration correction using a physics-based machine learning assisted wavefront-sensorless AO control(MLAO)method.Unlike previous ML methods,we used a specially constructed neural network(NN)architecture,designed using physical understanding of the general microscope image formation,that was embedded in the control loop of different microscope systems.The approach means that not only is the resulting NN orders of magnitude simpler than previous NN methods,but the concept is translatable across microscope modalities.We demonstrated the method on a two-photon,a three-photon and a widefield three-dimensional(3D)structured illumination microscope.Results showed that the method outperformed commonly-used modal-based sensorless AO methods.We also showed that our ML-based method was robust in a range of challenging imaging conditions,such as 3D sample structures,specimen motion,low signal to noise ratio and activity-induced fluorescence fluctuations.Moreover,as the bespoke architecture encapsulated physical understanding of the imaging process,the internal NN configuration was no-longer a'black box',but provided physical insights on internal workings,which could influence future designs.Qi Hu Martin Hailstone Jingyu Wang Matthew Wincott Danail Stoychev Huriye Atilgan Dalia Gala Tai Chaiamarit Richard M.Parton Jacopo Antonello Adam M.Packer Ilan Davis Martin J.Booth 2023Light(Science & Applications)2023,12,12:0
7History of Dentistry from the Period of the Ottoman Empire to the Republican Period显示文摘Huriye Colaklar 2014Journal of Pharmacy and Pharmacology2014,2,12:0
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