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Cerebellum (London, England)|January 27, 2022
Thymidine Kinase 2 and Mitochondrial Protein COX I in the Cerebellum of Patients with Spinocerebellar Ataxia Type 31 Caused by Penta-nucleotide Repeats (TTCCA)nHanako Aoki, Miwa Higashi, Michi Okita, et al.Journal of Clinical Ultrasound : JCU|June 15, 2011
Can ultrasonography of the placenta previa predict antenatal bleeding?Junichi Hasegawa, Miwa Higashi, Shoko Takahashi, et al.Internal Medicine (Tokyo, Japan)|September 14, 2022
Spinocerebellar Ataxia Type 31 Exacerbated by Anti-amino Terminal of Alpha-enolase AutoantibodiesSatoshi Zeniya, Nobuo Sanjo, Hiroya Kuwahara, et al.Journal of the Neurological Sciences|March 25, 2018
A diagnostic decision tree for adult cerebellar ataxia based on pontine magnetic resonance imagingMiwa Higashi, Kokoro Ozaki, Takaaki Hattori, et al.Neuropathology : Official Journal of the Japanese Society of Neuropathology|April 24, 2013
Abnormal RNA structures (RNA foci) containing a penta-nucleotide repeat (UGGAA)n in the Purkinje cell nucleus is associated with spinocerebellar ataxia type 31 pathogenesisYusuke Niimi, Makoto Takahashi, Emiko Sugawara, et al.Parkinsonism & Related Disorders|May 21, 2019
Prevalence and clinicoradiological features of spinocerebellar ataxia type 34 in a Japanese ataxia cohortKokoro Ozaki, Ayaka Ansai, Kouji Nobuhara, et al.Journal of the Neurological Sciences|November 8, 2017
Sequence configuration of spinocerebellar ataxia type 8 repeat expansions in a Japanese cohort of 797 ataxia subjectsYajun Hu, Yuji Hashimoto, Takashi Ishii, et al.JAMA Neurology|May 27, 2015
A Novel Mutation in ELOVL4 Leading to Spinocerebellar Ataxia (SCA) With the Hot Cross Bun Sign but Lacking Erythrokeratodermia: A Broadened Spectrum of SCA34Kokoro Ozaki, Hiroshi Doi, Jun Mitsui, et al.Pageof 1