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Event

Killam Seminar Series: Deep brain stimulation: new targets, new techniques, new indications

Tuesday, April 26, 2022 16:00to17:00

The Killam Seminar Series presents听Deep brain stimulation: new targets, new techniques, new indications.

The seminar will be taking placed in person at The Neuro (Jeanne Timmins Ampitheatre)

To attend in person, register

To attend virtually, register听.

厂辫别补办别谤:听Pepijn van den Munckhof, PhD

Department of Neurosurgery, Amsterdam University Medical Center, Amsterdam, The Netherlands

Abstract:听Since the introduction of permanently implantable deep brain stimulation (DBS) systems in the 1980s, hundreds of thousands of patients throughout the world have undergone DBS surgery. In the beginning the majority were patients with Parkinson鈥檚 disease or tremor undergoing DBS of the thalamus, but DBS is currently applied in many different diseases. Also, the preferred brain target for many indications evolved over the years due to improved brain imaging techniques. During my medicine study, PhD and neurosurgical residency I became fascinated by basal ganglia functioning and DBS. My research interests focus on improving the outcome of DBS surgery in established indications and the application of experimental DBS in new indications. In the Killam Seminar, I will overview several DBS developments in the field of obsessive-compulsive disorder, Parkinson鈥檚 disease, and disorders of consciousness & arousal.

叠颈辞:听Pepijn van den Munckhof (born in 1973 in Nijmegen, the Netherlands) studied Medicine at the University of Groningen from 1991-1999. In 1996-1997, he spent a research year with Leo Verhagen Metman and Thomas Chase at the Experimental Therapeutics Branch of the National Institute of Neurological Diseases and Stroke (NIH, Bethesda, USA), studying levodopa response fluctuations in Parkinson鈥檚 disease. From 1999-2002, he went to Montreal for a Master鈥檚 in Molecular Biology at the Universit茅 de Montr茅al. During these years, he studied basal ganglia development in the naturally occurring aphakia mouse model of Parkinson鈥檚 disease in the Molecular Genetics Research Unit of Jacques Drouin at the Instituts de Recherches Cliniques de Montr茅al and in the Cone Laboratory of Abbas Sadikot at the Montreal Neurological Institute. After returning to the Netherlands for his training in Neurosurgery at the Academic Medical Center in Amsterdam, he continued studying the aphakia mouse model in both the Cone Laboratory and the department of Anatomy and Neurosciences of Henk Groenewegen and Pieter Voorn at the Free University of Amsterdam. He obtained his PhD at the University of Amsterdam in 2011. During neurosurgical training, he was trained in deep brain stimulation (DBS) by Andries Bosch and Rick Schuurman. His research interests focus on improving the outcome of DBS surgery in established indications (such as Parkinson's disease and essential tremor) and the application of experimental DBS in new indications. Since 2009, he acted as a co-investigator on clinical trials studying subthalamic nucleus versus globus pallidus DBS in Parkinson's disease, nucleus accumbens DBS in obsessive-compulsive disorder, internal capsule DBS in depression and anorexia nervosa, and general anesthesia versus local anesthesia in DBS for Parkinson's disease. He initiated several research projects to improve the radiological and neurophysiological targeting of DBS surgery. Since 2017, he acts as principal investigator of a clinical trial studying the effects of DBS of the central thalamus in patients with disorders of consciousness, for which he created a multidisciplinary national research alliance.


Supported by the generosity of the Killam Trusts , The Neuro鈥檚 Killam Seminar series hosts outstanding guest speakers.

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The Neuro (Montreal Neurological Institute-Hospital)听is a bilingual academic healthcare institution. We are a听六合彩开奖结果 research and teaching institute; delivering high-quality patient care, as part of the Neuroscience Mission of the 六合彩开奖结果 Health Centre.听We are听proud to be a Killam Institution, supported by the Killam Trusts.

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