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Published Online: 31 May 2017

Low-Frequency rTMS Ameliorates Akathisia During Pregnancy

Publication: The Journal of Neuropsychiatry and Clinical Neurosciences
Akathisia, a drug-induced extrapyramidal syndrome, is a common side effect of psychotropic medications, including antidepressants, and is usually a subjective discomfort described by patients, with a wide range of symptoms that may involve the entire body and be more prominent in specific body regions. It has even been reported as hemiakathisia.1,2
The pathophysiology of akathisia remains unclear. A mechanism in which compensatory increased noradrenergic activity is triggered by dopamine reduction has been recently proposed.1 Because there are no biomarkers, the diagnosis is made by clinical observation using the Barnes Akathisia Rating Scale (BARS) for assessment and follow-up.2,3 There is no specific treatment other than reducing the dosage or switching medication. However, introducing new medications is not recommended during pregnancy.2 Repetitive transcranial magnetic stimulation (rTMS) is a noninvasive brain stimulation technique that uses magnetic pulses to induce changes when a series of trains are applied. It is successfully used in different movement and psychiatric disorders, but, to our knowledge, its use has not been previously reported in akathisia.

Case Report

A 34-year-old woman in her first pregnancy at 20 weeks of gestation, with a history of major depressive disorder that achieved remission after a 6-week course of rTMS, experienced chronic akathisia that started after introduction of fluoxetine and worsened with pregnancy. The patient presented with mild to moderate akathisia from head to toe, with more severe symptoms in the left extremities, determined to be marked akathisia using BARS criteria.3
Cortical excitability was assessed on both sides, using a Carefusion Viking Quest EMG (Pleasanton, Calif., Natus Medical, Inc.) system in sync with a Magstim Rapid 2 transcranial magnetic stimulator (Morrisville, N.C., Magstim, Inc.), with a figure-of-eight coil, by cortical silent period (CSP) and resting motor threshold (RMT) targeting the first dorsal interosseous muscle, with an RMT 7% difference, being lower on the right cortex (35% versus 42%), and no differences on the CSP.4 Because of the RMT difference and left-sided akathisia, we decided to apply a single session of 1-Hz rTMS over the right M1, at 90% of RMT, using a figure-of-eight coil, with the handle at approximately 45° to the parasagittal plane with the coil handle pointing postero-laterally, since low-frequency stimulation over primary motor cortex (M1) has been shown to reduce dopaminergic activity and cortical excitability.5,6 After delivering 600 pulses, no changes were observed in the patient or in RMT and CSP. A total of 600 more pulses were applied, and the right RMT increased 7% and decreased 2% over the left cortex. No significant differences were observed in the CSP. The patient reported feeling an improvement in symptoms, and her BARS rating improved from marked to mild akathisia. The patient maintained this clinical improvement during the remainder of her pregnancy (for details, see Table 1).
TABLE 1. Clinical and Neurophysiological Assessments
ItemBarnes Akathisia Rating Scale (BARS)
Resting Motor Threshold SubjectiveaGlobal Clinical Assessment of Akathisia
Left CortexRight CortexObjectivebAwareness of RestlessnessDistress Related to Restlessness
Before rTMSc42%35%2334
After rTMSd40%42%0122
End of pregnancye0122
a
Subjective items of the BARS.
b
Objective items of the BARS.
c
Data refer to baseline assessment.
d
Data refer to assessment following administration of 1200, 1 Hz, 90% of the resting motor threshold rTMS pulses.
e
39.5 weeks of gestation.
At the time the rTMS single session was administered, the patient was in her 20th week of gestation, and, similar to previous reports of rTMS in preganacy,7 no adverse pregnancy or fetal outcomes were observed. The offspring was male, born via cesarean section at week 39 of gestation. No congenital malformations or side effects were observed in the infant. The mother and infant were discharged after 1-, 5-, and 10-minute Apgar assessments, with scores of 9/10, 10/10, and 10/10, respectively.

Discussion

To our knowledge, this is the first study in which rTMS was used to ameliorate akathisia. The clinical improvement and the increased RMT achieved by using low-frequency rTMS over M1 does not support the compensatory increased noradrenergic activity theory, since a reduction in dopaminergic activity has been reported when 1-Hz rTMS is applied.6 We suggest that low rTMS may be an alternative tool that needs to be explored to confirm these results for akathisia patients for whom switching medications is not effective or is not an option.

Footnotes

Previously presented as a poster at the Annual Meeting of the Clinical Transcranial Magnetic Stimulation (TMS) Society, San Diego, May 19, 2017.
Collaborators: Julio Ignacio Prieto Montalvo, M.D., Ph.D., Hospital General Universitario Gregorio Marañón, Madrid, Spain; Giovana Femat Roldán, M.D., Braincare TMS Center, Monterrey, N.L., México; Alejandro Marfil Rivera, M.D., Ph.D., Department of Neurology, Hospital General Universitario José Eleuterio Gonzalez, Monterrey, N.L., Mexico.

References

1.
Stahl SM, Lonnen AJM: The mechanism of drug-induced akathsia. CNS Spectr (Epub ahead of print, January 15, 2011)
2.
Lohr JB, Eidt CA, Abdulrazzaq Alfaraj A, et al: The clinical challenges of akathisia. CNS Spectr 2015; 20(suppl 1):1–14, quiz 15–16
3.
Barnes TRE: A rating scale for drug-induced akathisia. Br J Psychiatry 1989; 154:672–676
4.
Groppa S, Oliviero A, Eisen A, et al: A practical guide to diagnostic transcranial magnetic stimulation: report of an IFCN committee. Clin Neurophysiol 2012; 123:858–882
5.
Fitzgerald PB, Fountain S, Daskalakis ZJ: A comprehensive review of the effects of rTMS on motor cortical excitability and inhibition. Clin Neurophysiol 2006; 117:2584–2596
6.
Chervyakov AV, Chernyavsky AY, Sinitsyn DO, et al: Possible mechanisms underlying the therapeutic effects of transcranial magnetic stimulation. Front Hum Neurosci 2015; 9:303
7.
Kim DR, Epperson N, Paré E, et al: An open label pilot study of transcranial magnetic stimulation for pregnant women with major depressive disorder. J Womens Health (Larchmt) 2011; 20:255–261

Information & Authors

Information

Published In

Go to The Journal of Neuropsychiatry and Clinical Neurosciences
Go to The Journal of Neuropsychiatry and Clinical Neurosciences
The Journal of Neuropsychiatry and Clinical Neurosciences
Pages: 409 - 410
PubMed: 28558482

History

Received: 6 March 2017
Revision received: 22 March 2017
Accepted: 4 April 2017
Published online: 31 May 2017
Published in print: Fall 2017

Keywords

  1. akathisia
  2. extrapyramidal syndrome
  3. TMS
  4. Transcranial Magnetic Stimulation

Authors

Affiliations

José Luis Guerrero Solano, M.D. [email protected]
From the Department of Clinical Neurophysiology, Hospital Angeles Valle Oriente, Monterrey, N.L., México (JLGS); the Braincare TMS Center, Monterrey, N.L., México (JLGS); and the Department of Internal Medicine, Hospital General Universitario de Albacete, Albacete, Spain (EMP).
Elena Molina Pacheco, M.D.
From the Department of Clinical Neurophysiology, Hospital Angeles Valle Oriente, Monterrey, N.L., México (JLGS); the Braincare TMS Center, Monterrey, N.L., México (JLGS); and the Department of Internal Medicine, Hospital General Universitario de Albacete, Albacete, Spain (EMP).

Notes

Send correspondence to Dr. Guerrero Solano; e-mail: [email protected]

Funding Information

The authors report no financial relationships with commercial interests.

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