Urakov, Aleksandr,
Urakova, Natalya,
Samorodov, Aleksandr,
Shabanov, Petr,
Yagudin, Ilnur,
Stolyarenko, Anastasia,
Suntsova, Darya,
Muhutdinov, Nikita (2024) temperature can assess inflammation. Infrared monitoring of local skin
temperature dynamics at subcutaneous
in massive blood loss. Methods: The
temperature change in the fingertips before and after the application
KALINICHEV, A.A.,
KUROCHKIN, M.A.,
KOLOMYTSEV, A.Y.,
KOLESNIKOV, I.E.,
KHASBIEVA, R.S.,
KOLESNIKOV, E.Y.,
LÄHDERANTA, E. (2019) The contactless real-time
temperature sensing technique with high temporal and spatial resolution
YB 3+ /ER 3+− CODOPED GEO 2 –PBO–PBF 2 GLASS CERAMICS FOR RATIOMETRIC UPCONVERSION TEMPERATURE SENSING BASED ON THERMALLY AND NON-THERMALLY COUPLED LEVELSKalinichev, A.A.,
Kurochkin, M.A.,
Kolomytsev, A.Y.,
Khasbieva, R.S.,
Kolesnikov, E.Y.,
Lähderanta, E.,
Kolesnikov, I.E. (2019) The contactless real-time
temperature sensing technique with high temporal and spatial resolution
expansion. The coefficient of thermal expansion is practically constant up to a
temperature of 1500 K
Sharapova, Yu. R.,
Kazakov, A.M.,
Babicheva, R.I.,
Semenov, A.S.,
Izosimov, A.A.,
Korznikova, E.A. (2024) particles at various
temperatures and cell sizes to observe the effects on critical shear stress. Results