Hyposmia may predict development of freezing of gait in Parkinson’s disease

被引:0
作者
Jae Jung Lee
Jin Yong Hong
Jong Sam Baik
机构
[1] Ilsan Paik Hospital,Department of Neurology
[2] Inje University College of Medicine,Department of Neurology, Wonju Seveance Christian Hospital
[3] Yonsei University Wonju College of Medicine,Department of Neurology
[4] Sanggye Paik Hospital,undefined
[5] Inje University College of Medicine,undefined
来源
Journal of Neural Transmission | 2021年 / 128卷
关键词
Parkinson disease; Smell; Gait; Cohort studies;
D O I
暂无
中图分类号
学科分类号
摘要
To explore the effect of olfactory dysfunction on treatment of motor manifestations in Parkinson’s disease (PD). The current longitudinal retrospective cohort study consecutively recruited 108 de novo PD patients. Of whom 29 were normosmia and 79 were hyposmia, respectively, which was determined by the Korean Version of Sniffin’ Sticks Test II at the time of diagnosis. All the participants underwent serial clinical examinations including Unified Parkinson’s Disease Rating Scale (UPDRS), Mini-Mental State Examination, and Montreal Cognitive Assessment. The normosmic group demonstrated a significantly greater reduction of the UPDRS III score (30.3 ± 5.9 to 21.9 ± 5.1) than that of the hyposmic group (34.5 ± 9.3 to 28.5 ± 8.1) from baseline to 1-year later (p, 0.003; Bonferroni correction for p < 0.0045). Of subdomains in UPDRS III, the axial domain revealed a remarkable decrease in the normosmic group. Further, the hyposmic group exhibited a higher development rate of freezing of gait (FOG) compared to the normosmic group (29/79 (36.7%) vs 2/29 (6.9%); p, 0.002) during 33.9 ± 7.7 months of the mean follow-up period. A Cox proportional hazards model demonstrated the hyposmia to be a significant risk factor for the future development of FOG (HR, 4.23; 95% CI 1.180–17.801; p, 0.05). Our data demonstrated the olfactory dysfunction to be a significant risk factor for the development of the FOG in PD. Hyposmic PD patients should be paid more careful attention to the occurrence of FOG in the clinical practice.
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页码:763 / 770
页数:7
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  • [21] Fukuda H(2018)Decreased olfactory discrimination is associated with impulsivity in healthy volunteers Sci Rep 8 15584-25
  • [22] Aoki M(1999)Development of KVSS Test (Korean Version of Sniffin' Sticks Test) Korean J Otorhinolaryngol-Head Neck Surg 42 855-692
  • [23] Itoyama Y(2011)Relationship between the Korean Version of the Sniffin' Stick Test and the T&T Olfactometer in the Korean Population Clin Exp Otorhinolaryngol 4 184-191
  • [24] Mori E(2015)Apathy and olfactory dysfunction in early Parkinson’s disease JMD 8 21-581
  • [25] Takeda A(2004)A 100% increase of dopaminergic cells in the olfactory bulb may explain hyposmia in Parkinson's disease Mov Disord 19 687-226
  • [26] Berendse HW(2008)Descending command systems for the initiation of locomotion in mammals Brain Res Rev 57 183-76
  • [27] Roos DS(2017)Integration of descending command systems for the generation of context-specific locomotor behaviors Front Neurosci 11 581-14442
  • [28] Raijmakers P(1996)“Sniffin' sticks”: screening of olfactory performance Rhinology 34 222-1275
  • [29] Doty RL(2003)Nucleus-specific alteration of raphe neurons in human neurodegenerative disorders NeuroReport 14 73-461
  • [30] Braak H(2014)Adult neurogenesis restores dopaminergic neuronal loss in the olfactory bulb J Neurosci 34 14430-811