[Purpose] The purpose of this study was to investigate the effects of exercise using a rehabilitational sliding machine and conventional neurological physical therapy on the balance of stroke patients. [Subjects] Forty patients with hemiplegia resulting from stroke were divided into a rehabilitational sliding machine exercise group (ST group, n=20) and a conventional neurological physiotherapy group (C group, n=20). [Methods] The STG underwent training with a rehabilitation sliding machine for 30 minutes per day, five times per week for eight weeks. The CG underwent training with a conventional neurological physiotherapy for 30 minutes per day, five times per week for eight weeks. [Results] The balance ability of both groups significantly improved. Although there were significant differences between the groups, the CG showed weight bearing on the affected side, an anterior range within the stability limits standing, and a posterior range within the stability limits standing. [Conclusion] The results of this study suggest that conventional neurological physiotherapy is a more dedicated, effective intervention than rehabilitational sliding training methods.
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http://dx.doi.org/10.1589/jpts.27.171 | DOI Listing |
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Department of Neurosurgery, University of Texas Health Science Center at San Antonio, San Antonio, TX, USA.
Atlantoaxial rotatory subluxation (AARS) in the adult population is primarily trauma-induced. Conservative and surgical treatments have both been used successfully in treating AARS. In cases where AARS cannot be reduced by conservative measures, open reduction and fusion is the conventional treatment approach.
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Western Institute of Neuroscience, Western University, London, Canada.
Background: Repeat neurological assessment is standard in cases of severe acute brain injury. However, conventional measures rely on overt behavior. Unfortunately, behavioral responses may be difficult or impossible for some patients.
View Article and Find Full Text PDFNat Biotechnol
January 2025
Institute for Intelligent Biotechnologies (iBIO), Helmholtz Center Munich, Neuherberg, Germany.
Efficient and accurate nanocarrier development for targeted drug delivery is hindered by a lack of methods to analyze its cell-level biodistribution across whole organisms. Here we present Single Cell Precision Nanocarrier Identification (SCP-Nano), an integrated experimental and deep learning pipeline to comprehensively quantify the targeting of nanocarriers throughout the whole mouse body at single-cell resolution. SCP-Nano reveals the tissue distribution patterns of lipid nanoparticles (LNPs) after different injection routes at doses as low as 0.
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