American Journal of Analytical Chemistry

American Journal of Analytical Chemistry

ISSN Print: 2156-8251
ISSN Online: 2156-8278
www.scirp.org/journal/ajac
E-mail: ajac@scirp.org
"Determination of Telomere Length by the Quantitative Fluorescence in Situ Hybridization (Q-FISH) Method"
written by Junko Aida, Naotaka Izumiyama-Shimomura, Ken-ichi Nakamura, Naoshi Ishikawa, Masanori Terai, Yoko Matsuda, Shinsuke Aida, Tomio Arai, Kaiyo Takubo,
published by American Journal of Analytical Chemistry, Vol.5 No.12, 2014
has been cited by the following article(s):
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[1] Selected In Situ Hybridization Methods: Principles and Application
2021
[2] Decreased expression of TERT and telomeric proteins as human ovaries age may cause telomere shortening
2020
[3] The altered expression of telomerase components and telomere-linked proteins may associate with ovarian aging in mouse
2020
[4] Telomeres as a molecular marker of male infertility
Human Fertility, 2018
[5] Quantitative fluorescence in situ hybridization for investigation of telomere length dynamics in the pituitary gland using samples from 128 autopsied patients
Tissue and Cell, 2018
[6] Kvantitativna analiza telomera u ljudskim stanicama MJ-90hTERT
2017
[7] Versatility of peptide nucleic acids (PNAs): role in chemical biology, drug discovery, and origins of life
Chemical biology & drug design, 2017
[8] Single Stem Cell Imaging and Analysis Reveals Telomere Length Differences in Diseased Human and Mouse Skeletal Muscles
Stem Cell Reports, 2017
[9] diss_j. strauchmann
Dissertation, 2017
[10] Einflüsse der bariatrischen Chirurgie auf klinische und epigenetische Aspekte bei adipösen Patienten
2017
[11] Versatility of peptide nucleic acids (PNA s): role in chemical biology, drug discovery, and origins of life
Chemical biology & drug design, 2017
[12] Changes of telomere status with aging: An update
Geriatrics & gerontology international, 2016
[13] Telomere Length Measurement by FISH
Fluorescence In Situ Hybridization (FISH),Springer Protocols Handbooks, 2016
[14] Development of software and modification of Q-FISH protocol for estimation of individual telomere length in immunopathology
Journal of bioinformatics and computational biology, 2016
[15] MiNiMUS: a model to predict the formation and numbers of micronuclei in cells.
Thesis, 2015
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