Sergey Alexandrov
Overview
Explore the profile of Sergey Alexandrov including associated specialties, affiliations and a list of published articles.
Author names and details appear as published. Due to indexing inconsistencies, multiple individuals may share a name, and a single author may have variations. MedLuna displays this data as publicly available, without modification or verification
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Articles
21
Citations
148
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Recent Articles
1.
Arangath A, Duffy N, Alexandrov S, James S, Neuhaus K, Murphy M, et al.
Biomed Opt Express
. 2023 Apr;
14(4):1411-1427.
PMID: 37078060
Mesenchymal stromal cells (MSCs) are adult stem cells that have been widely investigated for their potential to regenerate damaged and diseased tissues. Multiple pre-clinical studies and clinical trials have demonstrated...
2.
Dey R, Alexandrov S, Owens P, Kelly J, Phelan S, Leahy M
Biomed Opt Express
. 2023 Feb;
13(11):5654-5666.
PMID: 36733740
Excision biopsy and histology represent the gold standard for morphological investigation of the skin, in particular for cancer diagnostics. Nevertheless, a biopsy may alter the original morphology, usually requires several...
3.
Accessing depth-resolved high spatial frequency content from the optical coherence tomography signal
Alexandrov S, Arangath A, Zhou Y, Murphy M, Duffy N, Neuhaus K, et al.
Sci Rep
. 2021 Aug;
11(1):17123.
PMID: 34429483
Optical coherence tomography (OCT) is a rapidly evolving technology with a broad range of applications, including biomedical imaging and diagnosis. Conventional intensity-based OCT provides depth-resolved imaging with a typical resolution...
4.
Das N, Alexandrov S, Gilligan K, Dwyer R, Saager R, Ghosh N, et al.
J Biomed Opt
. 2021 Jan;
26(1).
PMID: 33517589
An error in the 2nd author's name is corrected.
5.
Das N, Alexandrov S, Gilligan K, Dwyer R, Saager R, Ghosh N, et al.
J Biomed Opt
. 2021 Jan;
26(1).
PMID: 33432788
Significance: Assessment of disease using optical coherence tomography is an actively investigated problem, owing to many unresolved challenges in early disease detection, diagnosis, and treatment response monitoring. The early manifestation...
6.
Lal C, Alexandrov S, Rani S, Zhou Y, Ritter T, Leahy M
Biomed Opt Express
. 2020 Oct;
11(7):3407-3422.
PMID: 33014541
Optical coherence tomography (OCT) is a non-invasive depth resolved optical imaging modality, that enables high resolution, cross-sectional imaging in biological tissues and materials at clinically relevant depths. Though OCT offers...
7.
Zhou Y, Alexandrov S, Nolan A, Das N, Dey R, Leahy M
J Biophotonics
. 2020 Feb;
13(6):e201960234.
PMID: 32067338
Corneal cross-linking (CXL) using ultraviolet-A (UVA) irradiation with a riboflavin photosensitizer has grown from an interesting concept to a practical clinical treatment for corneal ectatic diseases globally, such as keratoconus....
8.
Alexandrov S, Wang Y, Lang L
Materials (Basel)
. 2019 Feb;
12(3).
PMID: 30717211
An efficient analytical/numerical method has been developed and programmed to predict the distribution of residual stresses and springback in plane strain pure bending of functionally graded sheets at large strain,...
9.
OGorman S, Neuhaus K, Alexandrov S, Hogan J, Wilson C, McNamara P, et al.
Appl Opt
. 2018 Sep;
57(25):7377.
PMID: 30182958
This erratum is submitted to correct information regarding Fig. 8 of Appl. Opt.57, E142 (2018)APOPAI0003-693510.1364/AO.57.00E142.
10.
OGorman S, Neuhaus K, Alexandrov S, Hogan J, Wilson C, McNamara P, et al.
Appl Opt
. 2018 Aug;
57(22):E142-E146.
PMID: 30117912
The characterization of an amplified piezoelectric actuator (APA) as a new axial scanning method for multiple-reference optical coherence tomography (MR-OCT) is described. MR-OCT is a compact optical imaging device based...