000 03041nab a2200409 c 4500
001 vtls000736986
003 RU-ToGU
005 20230319221128.0
007 cr |
008 200930|2018 xxu s a eng d
024 7 _a10.1117/12.2288433
_2doi
035 _ato000736986
040 _aRU-ToGU
_brus
_cRU-ToGU
245 1 0 _aQuantifying the effects of hydration on corneal stiffness with optical coherence elastography
_cM. Singh, J. Li, Z. Han [et al.]
336 _aТекст
337 _aэлектронный
504 _aБиблиогр.: 17 назв.
520 3 _aSeveral methods have been proposed to assess changes in corneal biomechanical properties due to various factors, such as degenerative diseases, intraocular pressure, and therapeutic interventions (e.g. corneal collagen crosslinking). However, the effect of the corneal tissue hydration state on corneal stiffness is not well understood. In this work, we induce low amplitude (< 10 μm) elastic waves with a focused micro air-pulse in fresh in situ rabbit corneas (n = 10) in the whole eye-globe configuration at an artificially controlled intraocular pressure. The waves were then detected with a phase-stabilized swept source optical coherence elastography system. Baseline measurements were taken every 20 minutes for an hour while the corneas were hydrated with 1X PBS. After the measurement at 60 minutes, a 20% dextran solution was topically instilled to dehydrate the corneas. The measurements were repeated every 20 minutes again for an hour. The results showed that the elastic wave velocity decreased as the corneal thickness decreased. Finite element modeling (FEM) was performed using the corneal geometry and elastic wave propagation speed to assess the stiffness of the samples. The results show that the stiffness increased from ~430 kPa during hydration with PBS to ~500 kPa after dehydration with dextran, demonstrating that corneal hydration state, apart from geometry and intraocular pressure, can change the stiffness of the cornea.
653 _aоптическая когерентная эластография
653 _aгидратация
653 _aбиомеханические свойства тканей
653 _aЮнга модуль
653 _aроговица глаза
655 4 _aстатьи в журналах
_9879358
700 1 _aLi, Jiasong
_9153793
700 1 _aHan, Zhaolong
_9153787
700 1 _aVantipalli, Srilatha
_9480029
700 1 _aAglyamov, Salavat R.
_9153789
700 1 _aTwa, Michael D.
_9480030
700 1 _aLarin, Kirill V.
_9153792
700 1 _aSingh, Manmohan
_9153788
773 0 _tProceedings of SPIE
_d2018
_gVol. 10474 : Ophthalmic technologies XXVIII. P. 104740N-1-104740N-4
_x0277-786X
852 4 _aRU-ToGU
856 4 _uhttp://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000736986
908 _aстатья
999 _c470739