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Neuroscience

D-Index
44
Citations
6569
World Ranking
7224
National Ranking
604

Overview

Wolf-Julian Neumann is affiliated with Charité - University Medicine Berlin in Germany. Their research primarily focuses on the fields of Medicine and Neuroscience, with significant contributions in subfields such as Neurology, Cellular and Molecular Neuroscience, Cognitive Neuroscience, Radiology, Nuclear Medicine and Imaging, and Psychiatry and Mental Health.

The scientist's work centers on topics including:

  • Neurological disorders and treatments
  • Parkinson's Disease Mechanisms and Treatments
  • Neuroscience and Neural Engineering
  • EEG and Brain-Computer Interfaces
  • Genetic Neurodegenerative Diseases
  • Functional Brain Connectivity Studies
  • Neural dynamics and brain function

Wolf-Julian Neumann has published extensively in various venues. The most frequent publication venues include:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Brain stimulation
  • Movement Disorders
  • Nature Communications
  • Experimental Neurology

Their recent significant papers include:

  • "Neural signatures of hyperdirect pathway activity in Parkinson's disease," 2021, Nature Communications
  • "Adaptive Deep Brain Stimulation: From Experimental Evidence Toward Practical Implementation," 2023, Movement Disorders
  • "Deep brain stimulation: Imaging on a group level," 2020, NeuroImage
  • "Toward therapeutic electrophysiology: beta-band suppression as a biomarker in chronic local field potential recordings," 2022, npj Parkinson's Disease
  • "Local field potentials in Parkinson's disease: A frequency-based review," 2021, Neurobiology of Disease

Wolf-Julian Neumann frequently collaborates with several researchers, including:

  • Andrea A. Kühn
  • Andreas Horn
  • Gerd-Helge Schneider
  • Timon Merk
  • Katharina Faust

Best Publications

  • Lead-DBS v2: Towards a comprehensive pipeline for deep brain stimulation imaging.

    Andreas Horn;Ningfei Li;Till Anselm Dembek;Ari Kappel

  • Subthalamic synchronized oscillatory activity correlates with motor impairment in patients with Parkinson's disease

    Wolf-Julian Neumann;Katharina Degen;Gerd-Helge Schneider;Christof Brücke

  • Toward an electrophysiological "sweet spot" for deep brain stimulation in the subthalamic nucleus.

    Andreas Horn;Andreas Horn;Wolf-Julian Neumann;Katharina Degen;Gerd-Helge Schneider

  • Deep brain stimulation suppresses pallidal low frequency activity in patients with phasic dystonic movements

    Ewgenia Barow;Wolf-Julian Neumann;Christof Brücke;Julius Huebl

  • Long term correlation of subthalamic beta band activity with motor impairment in patients with Parkinson's disease.

    Wolf-Julian Neumann;Franziska Staub-Bartelt;Andreas Horn;Julia Schanda

  • A localized pallidal physiomarker in cervical dystonia.

    Wolf‐Julian Neumann;Andreas Horn;Siobhan Ewert;Julius Huebl

  • Neural signatures of hyperdirect pathway activity in Parkinson's disease.

    Ashwini Oswal;Ashwini Oswal;Chunyan Cao;Chien-Hung Yeh;Chien-Hung Yeh;Wolf-Julian Neumann

  • Cortico-pallidal oscillatory connectivity in patients with dystonia

    Wolf-Julian Neumann;Wolf-Julian Neumann;Ashwani Jha;Antje Bock;Julius Huebl

  • Toward therapeutic electrophysiology: beta-band suppression as a biomarker in chronic local field potential recordings

    Unknown

  • Dopamine-dependent scaling of subthalamic gamma bursts with movement velocity in patients with Parkinson's disease.

    Roxanne Lofredi;Wolf-Julian Neumann;Antje Bock;Andreas Horn

  • Adaptive Deep Brain Stimulation: From Experimental Evidence Toward Practical Implementation

    Unknown

  • Deep brain stimulation induced normalization of the human functional connectome in Parkinson's disease

    Andreas Horn;Gregor Wenzel;Friederike Irmen;Friederike Irmen;Julius Huebl

  • Beta bursts during continuous movements accompany the velocity decrement in Parkinson's disease patients.

    Roxanne Lofredi;Huiling Tan;Wolf-Julian Neumann;Chien-Hung Yeh

  • Toward Electrophysiology-Based Intelligent Adaptive Deep Brain Stimulation for Movement Disorders

    Wolf-Julian Neumann;Robert S. Turner;Benjamin Blankertz;Tom Mitchell

  • Different patterns of local field potentials from limbic DBS targets in patients with major depressive and obsessive compulsive disorder

    W J Neumann;J Huebl;C Brücke;L Gabriëls

  • Deep brain stimulation: Imaging on a group level.

    Svenja Treu;Svenja Treu;Bryan Strange;Simon Oxenford;Wolf-Julian Neumann

  • Scaling of Movement Is Related to Pallidal γ Oscillations in Patients with Dystonia

    Christof Brücke;Julius Huebl;Thomas Schönecker;Wolf-Julian Neumann

  • Machine learning based brain signal decoding for intelligent adaptive deep brain stimulation

    Unknown

  • Functional segregation of basal ganglia pathways in Parkinson’s disease

    Wolf-Julian Neumann;Henning Schroll;Ana Luisa de Almeida Marcelino;Andreas Horn

  • Local field potentials in Parkinson's disease: A frequency-based review

    Zixiao Yin;Guanyu Zhu;Baotian Zhao;Yutong Bai

  • Deep Brain Recordings Using an Implanted Pulse Generator in Parkinson's Disease

    Wolf-Julian Neumann;Franziska Staub;Andreas Horn;Julia Schanda

  • Cerebral serotonin 4 receptors and amyloid-β in early Alzheimer's disease.

    Karine Madsen;Wolf-Julian Neumann;Klaus Holst;Klaus Holst;Lisbeth Marner

  • Pallidal and thalamic neural oscillatory patterns in tourette's syndrome.

    Wolf-Julian Neumann;Julius Huebl;Christof Brücke;Roxanne Lofredi

Frequent Co-Authors

Andrea A. Kühn
Andrea A. Kühn Charité - University Medicine Berlin
Andreas Horn
Andreas Horn Harvard University
Gerd-Helge Schneider
Gerd-Helge Schneider Charité - University Medicine Berlin
Peter Brown
Peter Brown University of Oxford
Robert Turner
Robert Turner Max Planck Society
Joachim K. Krauss
Joachim K. Krauss Hannover Medical School
Vladimir Litvak
Vladimir Litvak University College London
R. Mark Richardson
R. Mark Richardson Harvard University
Huiling Tan
Huiling Tan University of Oxford
Robert Jech
Robert Jech Czech Education and Scientific Net work

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