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Physiological Measurement|September 20, 2014
Multiresolution analysis of pathological changes in cerebral venous dynamics in newborn mice with intracranial hemorrhage: adrenorelated vasorelaxationA N Pavlov, O V Semyachkina-Glushkovskaya, Y Zhang, et al.Journal of Biophotonics|January 26, 2026
Heterogeneity and Birefringence of Soft Tissues Probed by the Polarization-Sensitive Terahertz Solid Immersion MicroscopyD R Il'enkova, D D Rybnikov, A I Alekseeva, et al.Biomedical Optics Express|March 16, 2018
Glycerol dehydration of native and diabetic animal tissues studied by THz-TDS and NMR methodsO A Smolyanskaya, I J Schelkanova, M S Kulya, et al.Journal of Biophotonics|March 11, 2024
Influence of optical clearing agents on the scattering properties of human nail bed and blood microrheological properties: In vivo and in vitro studyP A Moldon, P B Ermolinskiy, A E Lugovtsov, et al.Scientific Reports|May 10, 2024
Quantification of attenuation and speckle features from endoscopic OCT images for the diagnosis of human brain gliomaP V Aleksandrova, K I Zaytsev, P V Nikitin, et al.Biomedical Optics Express|September 13, 2021
Terahertz dielectric spectroscopy and solid immersion microscopy of <i>ex vivo</i> glioma model 101.8: brain tissue heterogeneityA S Kucheryavenko, N V Chernomyrdin, A A Gavdush, et al.Biochemistry. Biokhimiia|June 20, 2019
Multimodal Optical Diagnostics of Glycated Biological TissuesO A Smolyanskaya, E N Lazareva, S S Nalegaev, et al.Biomedical Optics Express|March 4, 2021
Terahertz dielectric spectroscopy of human brain gliomas and intact tissues <i>ex vivo</i>: double-Debye and double-overdamped-oscillator models of dielectric responseA A Gavdush, N V Chernomyrdin, G A Komandin, et al.Biomedical Optics Express|December 7, 2020
Capability of physically reasonable OCT-based differentiation between intact brain tissues, human brain gliomas of different WHO grades, and glioma model 101.8 from ratsI N Dolganova, P V Aleksandrova, P V Nikitin, et al.Scientific Reports|October 3, 2023
Quantitative polarization-sensitive super-resolution solid immersion microscopy reveals biological tissues' birefringence in the terahertz rangeN V Chernomyrdin, D R Il'enkova, V A Zhelnov, et al.Pageof 4