Yoshihiko Nagata
Overview
Explore the profile of Yoshihiko Nagata including associated specialties, affiliations and a list of published articles.
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Articles
15
Citations
415
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0
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Recent Articles
1.
Yokoya S, Harada Y, Sumimoto Y, Kikugawa K, Natsu K, Nakamura Y, et al.
J Orthop Sci
. 2024 Jun;
29(5):1335-1336.
PMID: 38926046
No abstract available.
2.
Yokoya S, Harada Y, Sumimoto Y, Kikugawa K, Natsu K, Nakamura Y, et al.
J Orthop Sci
. 2023 Jan;
29(2):521-528.
PMID: 36710212
Background: Stress shielding and osteolysis around the humeral stem after reverse shoulder arthroplasty causes loosening and periprosthetic fractures and reduces bone stock during revision surgery. In Japanese patients, who have...
3.
Ikuta Y, Nagata Y, Iwasaki Y
Injury
. 2019 Jul;
50(11):2014-2021.
PMID: 31327460
Introduction: The aim of this study was to clarify the relationship between the preoperative radiographic classification of trochanteric fractures and the success/failure of closed reduction. Identification of irreducible fractures would...
4.
Kamishina H, Sugawara T, Nakata K, Nishida H, Yada N, Fujioka T, et al.
PLoS One
. 2019 May;
14(5):e0216445.
PMID: 31050689
Atlantoaxial instability (AAI)/subluxation commonly occurs in small breed dogs. Ventral stabilization techniques using screws and/or pins and a plate or, more commonly, polymethylmethacrylate are considered to provide the most favorable...
5.
Shibuya H, Nakasa T, Adachi N, Nagata Y, Ishikawa M, Deie M, et al.
Mod Rheumatol
. 2012 Aug;
23(4):674-85.
PMID: 22903258
Objectives: MicroRNAs, a class of noncoding RNAs, play roles in human diseases. MicroRNA-223 (miR-223) is reported to play critical roles in osteoclastogenesis. The purpose of this study was to analyze...
6.
Yokoya S, Mochizuki Y, Natsu K, Omae H, Nagata Y, Ochi M
Am J Sports Med
. 2012 Apr;
40(6):1259-68.
PMID: 22491821
Background: Rotator cuff regeneration using tissue engineering techniques is a challenging treatment in elderly patients with irreparable rotator cuff tears. Hypothesis: A polyglycolic acid sheet scaffold with seeded mesenchymal stem...
7.
Nakasa T, Shibuya H, Nagata Y, Niimoto T, Ochi M
Arthritis Rheum
. 2011 Mar;
63(6):1582-90.
PMID: 21425254
Objective: MicroRNA, a class of noncoding RNA, play a role in human diseases. MicroRNA-146a (miR-146a) is a negative regulator of immune and inflammatory responses, and is strongly expressed in rheumatoid...
8.
Nakasa T, Nagata Y, Yamasaki K, Ochi M
Physiol Genomics
. 2011 Feb;
43(10):566-70.
PMID: 21325061
MicroRNA (miRNA) is a class of noncoding RNA that exhibits tissue- or developmental stage-specific expression patterns and negatively regulates gene expression. MiRNAs play an important role in human diseases, including...
9.
Nakamae T, Adachi N, Kobayashi T, Nagata Y, Nakasa T, Tanaka N, et al.
Sports Med Arthrosc Rehabil Ther Technol
. 2010 Feb;
2(1):5.
PMID: 20152029
Background: As the strategy for tissue regeneration using mesenchymal stem cells (MSCs) for transplantation, it is necessary that MSCs be accumulated and kept in the target area. To accumulate MSCs...
10.
Nagata Y, Nakasa T, Mochizuki Y, Ishikawa M, Miyaki S, Shibuya H, et al.
Arthritis Rheum
. 2009 Aug;
60(9):2677-83.
PMID: 19714650
Objective: MicroRNA is a family of noncoding RNAs that exhibit tissue-specific or developmental stage-specific expression patterns and are associated with human diseases. MicroRNA-15a (miR-15a) is reported to induce cell apoptosis...