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Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis

We applied terahertz (THz)-pulsed spectroscopy to study ex vivo the refractive index and absorption coefficient of human brain gliomas featuring different grades, as well as perifocal regions containing both intact and edematous tissues. Glioma samples from 26 patients were considered and analyzed a...

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Autores principales: Gavdush, Arseniy A., Chernomyrdin, Nikita V., Malakhov, Kirill M., Beshplav, Sheyh-Islyam T., Dolganova, Irina N., Kosyrkova, Alexandra V., Nikitin, Pavel V., Musina, Guzel R., Katyba, Gleb M., Reshetov, Igor V., Cherkasova, Olga P., Komandin, Gennady A., Karasik, Valery E., Potapov, Alexander A., Tuchin, Valery V., Zaytsev, Kirill I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society of Photo-Optical Instrumentation Engineers 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988181/
https://www.ncbi.nlm.nih.gov/pubmed/30729762
http://dx.doi.org/10.1117/1.JBO.24.2.027001
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author Gavdush, Arseniy A.
Chernomyrdin, Nikita V.
Malakhov, Kirill M.
Beshplav, Sheyh-Islyam T.
Dolganova, Irina N.
Kosyrkova, Alexandra V.
Nikitin, Pavel V.
Musina, Guzel R.
Katyba, Gleb M.
Reshetov, Igor V.
Cherkasova, Olga P.
Komandin, Gennady A.
Karasik, Valery E.
Potapov, Alexander A.
Tuchin, Valery V.
Zaytsev, Kirill I.
author_facet Gavdush, Arseniy A.
Chernomyrdin, Nikita V.
Malakhov, Kirill M.
Beshplav, Sheyh-Islyam T.
Dolganova, Irina N.
Kosyrkova, Alexandra V.
Nikitin, Pavel V.
Musina, Guzel R.
Katyba, Gleb M.
Reshetov, Igor V.
Cherkasova, Olga P.
Komandin, Gennady A.
Karasik, Valery E.
Potapov, Alexander A.
Tuchin, Valery V.
Zaytsev, Kirill I.
author_sort Gavdush, Arseniy A.
collection PubMed
description We applied terahertz (THz)-pulsed spectroscopy to study ex vivo the refractive index and absorption coefficient of human brain gliomas featuring different grades, as well as perifocal regions containing both intact and edematous tissues. Glioma samples from 26 patients were considered and analyzed according to further histological examination. In order to fix tissues for the THz measurements, we applied gelatin embedding, which allows for sustaining their THz response unaltered, as compared to that of the freshly excised tissues. We observed a statistical difference between the THz optical constants of intact tissues and gliomas of grades I to IV, while the response of edema was similar to that of tumor. The results of this paper justify a potential of THz technology in the intraoperative label-free diagnosis of human brain gliomas for ensuring the gross-total resection.
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spelling pubmed-69881812020-02-03 Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis Gavdush, Arseniy A. Chernomyrdin, Nikita V. Malakhov, Kirill M. Beshplav, Sheyh-Islyam T. Dolganova, Irina N. Kosyrkova, Alexandra V. Nikitin, Pavel V. Musina, Guzel R. Katyba, Gleb M. Reshetov, Igor V. Cherkasova, Olga P. Komandin, Gennady A. Karasik, Valery E. Potapov, Alexander A. Tuchin, Valery V. Zaytsev, Kirill I. J Biomed Opt Sensing We applied terahertz (THz)-pulsed spectroscopy to study ex vivo the refractive index and absorption coefficient of human brain gliomas featuring different grades, as well as perifocal regions containing both intact and edematous tissues. Glioma samples from 26 patients were considered and analyzed according to further histological examination. In order to fix tissues for the THz measurements, we applied gelatin embedding, which allows for sustaining their THz response unaltered, as compared to that of the freshly excised tissues. We observed a statistical difference between the THz optical constants of intact tissues and gliomas of grades I to IV, while the response of edema was similar to that of tumor. The results of this paper justify a potential of THz technology in the intraoperative label-free diagnosis of human brain gliomas for ensuring the gross-total resection. Society of Photo-Optical Instrumentation Engineers 2019-02-06 2019-02 /pmc/articles/PMC6988181/ /pubmed/30729762 http://dx.doi.org/10.1117/1.JBO.24.2.027001 Text en © The Authors. Published by SPIE under a Creative Commons Attribution 4.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
spellingShingle Sensing
Gavdush, Arseniy A.
Chernomyrdin, Nikita V.
Malakhov, Kirill M.
Beshplav, Sheyh-Islyam T.
Dolganova, Irina N.
Kosyrkova, Alexandra V.
Nikitin, Pavel V.
Musina, Guzel R.
Katyba, Gleb M.
Reshetov, Igor V.
Cherkasova, Olga P.
Komandin, Gennady A.
Karasik, Valery E.
Potapov, Alexander A.
Tuchin, Valery V.
Zaytsev, Kirill I.
Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis
title Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis
title_full Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis
title_fullStr Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis
title_full_unstemmed Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis
title_short Terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative THz diagnosis
title_sort terahertz spectroscopy of gelatin-embedded human brain gliomas of different grades: a road toward intraoperative thz diagnosis
topic Sensing
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6988181/
https://www.ncbi.nlm.nih.gov/pubmed/30729762
http://dx.doi.org/10.1117/1.JBO.24.2.027001
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