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Published on: June 23, 2023
Diagnostic value of micrographia in Parkinson's disease: a study with [123I]FP-CIT SPECT
Mikael Eklund1,2,3, Simo Nuuttila4,5, Juho Joutsa4,5,6,7
1Clinical Neurosciences, University of Turku, FI-20014, Turku, Finland. mreekl@utu.fi.
Abstract:
Micrographia is a common symptom of Parkinson's disease (PD), and it may precede other motor symptoms. Despite the high prevalence of micrographia in PD, its neurobiological mechanisms are not known. Given that levodopa may alleviate consistent micrographia and that nondopaminergic essential tremor (ET) is not associated with micrographia, micrographia could possibly be used as an ancillary diagnostic method that reflects nigrostriatal dopamine function. We evaluated the usefulness of micrographia as a simple one-sentence writing test in differentiating PD from ET. A total of 146 PD patients, 42 ET patients and 38 healthy controls provided writing samples and were scanned with brain [123I]FP-CIT dopamine transporter (DAT) SPECT imaging with ROI-based and voxelwise analyses. The diagnostic accuracy of micrographia was evaluated and compared to that of DAT binding. Compared to ET and healthy controls, PD patients showed micrographia (consistent, 25.6% smaller area of handwriting sample in PD compared to ET, p = 0.002, and 27.2% smaller area of handwriting compared to healthy controls, p = 0.004). PD patients showed 133% more severe progressive micrographia compared with ET patients (median b = - 0.14 in PD, b = - 0.06 in ET, p = 0.021). In early unmedicated cognitively normal patients, consistent micrographia showed 71.2% specificity and 87.5% sensitivity in PD versus ET differentiation, but micrographia had no correlation with striatal or extrastriatal [123I]FP-CIT binding in patients with PD. The one-sentence micrographia test shows moderately good accuracy in PD versus ET differentiation. The severity of micrographia has no relationship with DAT binding, suggesting nondopaminergic mechanism of micrographia in PD.ClinicalTrials.gov identifier: NCT02650843 (NMDAT study).
Insights
Micrographia, or small handwriting, can help differentiate Parkinson's disease (PD) from essential tremor (ET). This writing test shows moderate accuracy, but micrographia severity doesn't correlate with dopamine transporter levels in PD.
Area of Science:
- Neurology
- Neuroscience
- Medical Diagnostics
Background:
- Micrographia is a common symptom of Parkinson's disease (PD), often preceding other motor deficits.
- The neurobiological underpinnings of micrographia in PD remain largely unknown.
- Levodopa may improve micrographia, while essential tremor (ET) is not associated with it, suggesting potential diagnostic utility.
Purpose of the Study:
- To evaluate the effectiveness of a simple micrographia writing test in distinguishing PD from ET.
- To compare the diagnostic accuracy of micrographia with dopamine transporter (DAT) binding.
- To investigate the relationship between micrographia severity and DAT binding in PD patients.
Main Methods:
- A cohort of 146 PD patients, 42 ET patients, and 38 healthy controls provided handwriting samples.
- Brain [123I]FP-CIT dopamine transporter (DAT) SPECT imaging was performed.
- ROI-based and voxelwise analyses were used to assess DAT binding, and micrographia's diagnostic accuracy was compared to DAT binding.
Main Results:
- PD patients exhibited significantly smaller handwriting areas compared to ET and healthy controls (p < 0.005).
- Progressive micrographia was 133% more severe in PD patients than in ET patients (p = 0.021).
- In early, unmedicated patients, micrographia demonstrated 71.2% specificity and 87.5% sensitivity for PD versus ET differentiation, but showed no correlation with DAT binding.
Conclusions:
- The one-sentence micrographia test offers moderately good accuracy in differentiating PD from ET.
- The lack of correlation between micrographia severity and DAT binding suggests a nondopaminergic mechanism underlying micrographia in PD.
- Micrographia may serve as a valuable ancillary diagnostic marker for Parkinson's disease.

