Near-infrared stimulation on globus pallidus and subthalamus

Minsu Yoo, Ho Koo, Minsun Kim, Hyoung Ihl Kim, Sohee Kim

Research output: Contribution to journalArticlepeer-review

13 Scopus citations

Abstract

Near-infrared stimulation (NIS) is an emerging technique used to evoke action potentials in nervous systems. Its efficacy of evoking action potentials has been demonstrated in different nerve tissues. However, few studies have been performed using NIS to stimulate the deep brain structures, such as globus pallidus (GP) and subthalamic nucleus (STN). Male Sprague-Dawley rats were randomly divided into GP stimulation group (n = 11) and STN stimulation group (n = 6). After introducing optrodes stereotaxically into the GP or STN, we stimulated neural tissue for 2 min with continuous near-infrared light of 808 nm while varying the radiant exposure from 40 to 10 mW. The effects were investigated with extracellular recordings and the temperature rises at the stimulation site were also measured. NIS was found to elicit excitatory responses in eight out of 11 cases (73%) and inhibitory responses in three cases in the GP stimulation group, whereas it predominantly evoked inhibitory responses in seven out of eight cases (87.5%) and an excitatory response in one case in STN stimulation group. Only radiation above 20 mW, accompanying temperature increases of more than 2°C, elicited a statistically significant neural response (p < 0.05). The responsiveness to NIS was linearly dependent on the power of radiation exposure.

Original languageEnglish
Article number128005
JournalJournal of Biomedical Optics
Volume18
Issue number12
DOIs
StatePublished - Dec 2013

Bibliographical note

Funding Information:
This work was supported by grants from the National Research Foundation (NRF) funded by Ministry of Education, Science & Technology (2011-0016796 and 2010-0026438), a grant from the Korean Health Technology R&D Project funded by Ministry of Health & Welfare (HI09C-1188-030013), and a grant from the Institute of Medical System Engineering (iMSE) in the GIST, Korea.

Keywords

  • Continuous wave
  • Globus pallidus
  • Laser
  • Near-infrared stimulation
  • Optical stimulation
  • Subthalamus

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