Author:
Min Byoung-Kyong,Bystritsky Alexander,Jung Kwang-Ik,Fischer Krisztina,Zhang Yongzhi,Maeng Lee-So,In Park Sang,Chung Yong-An,Jolesz Ferenc A,Yoo Seung-Schik
Abstract
Abstract
Background
Epilepsy is a common neurological disorder, which is attributed to uncontrollable abnormal hyper-excitability of neurons. We investigated the feasibility of using low-intensity, pulsed radiation of focused ultrasound (FUS) to non-invasively suppress epileptic activity in an animal model (rat), which was induced by the intraperitonial injection of pentylenetetrazol (PTZ).
Results
After the onset of induced seizures, FUS was transcranially administered to the brain twice for three minutes each while undergoing electroencephalographic (EEG) monitoring. An air-backed, spherical segment ultrasound transducer (diameter: 6 cm; radius-of-curvature: 7 cm) operating at a fundamental frequency of 690 KHz was used to deliver a train of 0.5 msec-long pulses of sonication at a repetitive rate of 100 Hz to the thalamic areas of the brain. The acoustic intensity (130 mW/cm2) used in the experiment was sufficiently within the range of safety guidelines for the clinical ultrasound imaging. The occurrence of epileptic EEG bursts from epilepsy-induced rats significantly decreased after sonication when it was compared to the pre-sonication epileptic state. The PTZ-induced control group that did not receive any sonication showed a sustained number of epileptic EEG signal bursts. The animals that underwent sonication also showed less severe epileptic behavior, as assessed by the Racine score. Histological analysis confirmed that the sonication did not cause any damage to the brain tissue.
Conclusions
These results revealed that low-intensity, pulsed FUS sonication suppressed the number of epileptic signal bursts using acute epilepsy model in animal. Due to its non-invasiveness and spatial selectivity, FUS may offer new perspectives for a possible non-invasive treatment of epilepsy.
Publisher
Springer Science and Business Media LLC
Subject
Cellular and Molecular Neuroscience,General Neuroscience
Reference76 articles.
1. Banerjee PN, Hauser WA: Incidence and prevalence. Epilepsy: A Comprehensive Textbook. Edited by: Engle J, Pedley TA. 2008, Philadelphia: Lippincott-Raven, 45-56. Second
2. Loscher W: Current status and future directions in the pharmacotherapy of epilepsy. Trends Pharmacol Sci. 2002, 23 (3): 113-118. 10.1016/S0165-6147(00)01974-X.
3. Cascino GD: Surgical treatment for epilepsy. Epilepsy Res. 2004, 60 (2-3): 179-186. 10.1016/j.eplepsyres.2004.07.003.
4. Theodore WH, Fisher R: Brain stimulation for epilepsy. Acta Neurochir Suppl. 2007, 97 (Pt 2): 261-272. full_text.
5. Cascino GD, Sharbrough FW, Trenerry MR, Marsh WR, Kelly PJ, So E: Extratemporal cortical resections and lesionectomies for partial epilepsy: complications of surgical treatment. Epilepsia. 1994, 35 (5): 1085-1090. 10.1111/j.1528-1157.1994.tb02559.x.
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