Nobuo Adachi
Hiroshima University
461 Papers
1.8K Citations
Nobuo Adachi is an academic researcher from Hiroshima University. The author has contributed to research in topics: Medicine & Cartilage. The author has an hindex of 48, co-authored 364 publications. Previous affiliations of Nobuo Adachi include University of Pittsburgh & Shimane University.
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Papers
Reconstruction of the anterior cruciate ligament: SINGLE- VERSUS DOUBLE-BUNDLE MULTISTRANDED HAMSTRING TENDONS
TL;DR: A total of 108 patients with unilateral instability of the knee, associated with rupture of the anterior cruciate ligament, was prospectively randomised for arthroscopic single- or double-bundle reconstruction of the ligament using hamstring tendons to determine whether both bundles in the double- bundle reconstruction contributed to the stability of the joint and proprioception.
390
Mechanoreceptors in the anterior cruciate ligament contribute to the joint position sense
TL;DR: A positive correlation between the number of mechanoreceptors and accuracy of the joint position sense is found, suggesting that proprioceptive function of the ACL is related to the number, therefore, preserving ACL remnants during ACL reconstruction.
337
Mobilization of bone marrow-derived mesenchymal stem cells into the injured tissues after intraarticular injection and their contribution to tissue regeneration.
Muhammad Agung,Mitsuo Ochi,Shinobu Yanada,Nobuo Adachi,Yasunori Izuta,Takuma Yamasaki,Katsuhiro Toda +6 more
TL;DR: Intraarticular injection of MSCs for the treatment of intraarticular tissue injuries including ACL, meniscus, or cartilage can be minimally invasive compared to conventional surgeries for these tissues if this treatment option is established.
A long-term follow-up study after medial patellofemoral ligament reconstruction using the transferred semitendinosus tendon for patellar dislocation
TL;DR: It is concluded that the MPFL reconstruction method with the advancement of the vastus medialis or with Insall’s procedure might be recommended for the treatment of habitual, recurrent, and indeed any other type of patellar dislocation, as well as for unstable patellae.
233
Acceleration of muscle regeneration by local injection of muscle-specific microRNAs in rat skeletal muscle injury model.
TL;DR: It is demonstrated that a local injection of double‐stranded miR-1, miR‐133 and 206 can accelerate muscle regeneration in a rat skeletal muscle injury model and could be a novel therapeutic strategy in the treatment of skeletal muscle injuries.
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