Research map: Application of Low-Intensity Focused Ultrasound in Parkinson’s Disease
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Papers in this map
α-Synuclein in Lewy bodies
· Maria Grazia Spillantini · 1997 · 8546 citations · Cited by this paper
A Coarse-to-Fine DoubleUNet Framework with Synergistic Loss for Accurate Fetal Head Circumference Measurement
· 2026 · Related
Parkinson's disease
· Lorraine V. Kalia · 2015 · 6269 citations · Cited by this paper
Risk of low-frequency ultrasound stimulation: Response to “Brain injury during focused ultrasound neuromodulation for substance use disorder”
· 2026 · Related
Analysis of Tissue and Arterial Blood Temperatures in the Resting Human Forearm
· Harry H. Pennes · 1998 · 4000 citations · Cited by this paper
Ultrasound Shear-wave Elastography Reveals Biomechanical Heterogeneity Following Acute Spinal Cord Injury
· 2026 · Related
Piezo1 and Piezo2 Are Essential Components of Distinct Mechanically Activated Cation Channels
· Bertrand Coste · 2010 · 3417 citations · Cited by this paper
Editorial Advisory Board
· 2026 · Related
Reactive microglia are positive for HLA‐DR in the substantia nigra of Parkinson's and Alzheimer's disease brains
· Patrick L. McGeer · 1988 · 3041 citations · Cited by this paper
Lymphatic and Vascular Dual-System Super-Resolution Ultrasound for Diagnosing Sentinel Lymph Node Metastasis in Breast Cancer: A Prospective Study
· 2026 · Related
A Randomized Trial of Deep-Brain Stimulation for Parkinson's Disease
· Günther Deuschl · 2006 · 2993 citations · Cited by this paper
Temporal Changes in Shear Wave Elastography and Doppler Ultrasound Parameters for Assessing Erectile Dysfunction
· 2026 · Related
Non-motor symptoms of Parkinson's disease: diagnosis and management
· К. Ray Chaudhuri · 2006 · 2814 citations · Cited by this paper
Value of Testicular Shear Wave Dispersion Imaging in Predicting Semen Improvement After Varicocelectomy
· 2026 · Related
Evidence-based guidelines on the therapeutic use of repetitive transcranial magnetic stimulation (rTMS): An update (2014–2018)
· Jean‐Pascal Lefaucheur · 2019 · 2422 citations · Cited by this paper
A Multimodal Multitask Deep Learning Model Based on Ultrasound RF Signals for Joint Assessment of Breast Masses and Axillary Lymph Nodes Status
· 2026 · Related
The prevalence of Parkinson's disease: A systematic review and meta‐analysis
· Tamara Milka Pringsheim · 2014 · 2220 citations · Cited by this paper
Evaluation of the Efficacy of Combined Treatment of Liver Cancer With Losartan and Ultrasound‑Stimulated Microbubble Cavitation
· 2026 · Related
A polarizing question: do M1 and M2 microglia exist?
· Richard M. Ransohoff · 2016 · 1625 citations · Cited by this paper
A Synthetic Data-Augmented Deep Learning Framework for Robust Segmentation and Quantification of the Carotid Artery in Ultrasound Images
· 2026 · Related
Noninvasive MR Imaging–guided Focal Opening of the Blood-Brain Barrier in Rabbits
· Kullervo H. Hynynen · 2001 · 1483 citations · Cited by this paper
Transcranial focused ultrasound modulates the activity of primary somatosensory cortex in humans
· Wynn Legon · 2014 · 1030 citations · Cited by this paper
Transcranial Pulsed Ultrasound Stimulates Intact Brain Circuits
· Yusuf Tufail · 2010 · 1016 citations · Cited by this paper
Expectation and Dopamine Release: Mechanism of the Placebo Effect in Parkinson's Disease
· Raúl de la Fuente‐Fernández · 2001 · 998 citations · Cited by this paper
Blood–brain barrier opening in Alzheimer’s disease using MR-guided focused ultrasound
· Nir Lipsman · 2018 · 972 citations · Cited by this paper
Neuroinflammation in Parkinson’s disease and its potential as therapeutic target
· Qinqin Wang · 2015 · 900 citations · Cited by this paper
Microglial activation and dopamine terminal loss in early Parkinson's disease
· Yasuomi Ouchi · 2005 · 847 citations · Cited by this paper
Remote Excitation of Neuronal Circuits Using Low-Intensity, Low-Frequency Ultrasound
· William J. C. Tyler · 2008 · 731 citations · Cited by this paper
Gauging the likelihood of cavitation from short-pulse, low-duty cycle diagnostic ultrasound
· Robert E. Apfel · 1991 · 693 citations · Cited by this paper
Animal models of neurodegenerative diseases
· Ted M. Dawson · 2018 · 598 citations · Cited by this paper
Ultrasound Neuromodulation: A Review of Results, Mechanisms and Safety
· Joseph Blackmore · 2019 · 585 citations · Cited by this paper
Applications of focused ultrasound in the brain: from thermoablation to drug delivery
· Ying Meng · 2020 · 520 citations · Cited by this paper
Effect of Focused Ultrasound Applied With an Ultrasound Contrast Agent on the Tight Junctional Integrity of the Brain Microvascular Endothelium
· Nickolai A. Sheikov · 2008 · 504 citations · Cited by this paper
Disrupting the blood–brain barrier by focused ultrasound induces sterile inflammation
· Zsofia Kovacs‐Balint · 2016 · 481 citations · Cited by this paper
Ultrasound-mediated blood–brain barrier disruption for targeted drug delivery in the central nervous system
· Muna Aryal · 2014 · 458 citations · Cited by this paper
Targeted disruption of the blood–brain barrier with focused ultrasound: association with cavitation activity
· Nathan Judson McDannold · 2006 · 456 citations · Cited by this paper
Blood-Brain Barrier: Real-time Feedback-controlled Focused Ultrasound Disruption by Using an Acoustic Emissions–based Controller
· Meaghan A. O’Reilly · 2012 · 408 citations · Cited by this paper
Microglia Mediated Neuroinflammation in Parkinson’s Disease
· Sevim Işık · 2023 · 379 citations · Cited by this paper
Offline impact of transcranial focused ultrasound on cortical activation in primates
· Lennart Verhagen · 2019 · 358 citations · Cited by this paper
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