2,218 results on '"Deuschl, G."'
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2. Past, present, and future of Parkinson's disease: A special essay on the 200th Anniversary of the Shaking Palsy
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Obeso, JA, Stamelou, M, Goetz, CG, Poewe, W, Lang, AE, Weintraub, D, Burn, D, Halliday, GM, Bezard, E, Przedborski, S, Lehericy, S, Brooks, DJ, Rothwell, JC, Hallett, M, DeLong, MR, Marras, C, Tanner, CM, Ross, GW, Langston, JW, Klein, C, Bonifati, V, Jankovic, J, Lozano, AM, Deuschl, G, Bergman, H, Tolosa, E, Rodriguez‐Violante, M, Fahn, S, Postuma, RB, Berg, D, Marek, K, Standaert, DG, Surmeier, DJ, Olanow, CW, Kordower, JH, Calabresi, P, Schapira, AHV, and Stoessl, AJ
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Biomedical and Clinical Sciences ,Neurosciences ,Clinical Sciences ,Neurodegenerative ,Brain Disorders ,Parkinson's Disease ,Neurological ,Anniversaries and Special Events ,History ,19th Century ,History ,20th Century ,History ,21st Century ,Humans ,Parkinson Disease ,Shaking Palsy ,Parkinson's disease ,years anniversary ,Human Movement and Sports Sciences ,Neurology & Neurosurgery ,Clinical sciences - Abstract
This article reviews and summarizes 200 years of Parkinson's disease. It comprises a relevant history of Dr. James Parkinson's himself and what he described accurately and what he missed from today's perspective. Parkinson's disease today is understood as a multietiological condition with uncertain etiopathogenesis. Many advances have occurred regarding pathophysiology and symptomatic treatments, but critically important issues are still pending resolution. Among the latter, the need to modify disease progression is undoubtedly a priority. In sum, this multiple-author article, prepared to commemorate the bicentenary of the shaking palsy, provides a historical state-of-the-art account of what has been achieved, the current situation, and how to progress toward resolving Parkinson's disease. © 2017 International Parkinson and Movement Disorder Society.
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- 2017
3. Insufficiency of trunk extension and impaired control of muscle force in Parkinson’s disease with camptocormia
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Wolke, R., Kuhtz-Buschbeck, J.P., Deuschl, G., and Margraf, N.G.
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- 2020
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4. Differenzialdiagnose des Tremors
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Raethjen, J. and Deuschl, G.
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- 2020
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5. Programming parameters of subthalamic deep brain stimulators in Parkinson's disease from a controlled trial
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Knudsen, K., Krack, P., Tonder, L., Houeto, J.-L., Rau, J., Schade-Brittinger, C., Hartmann, A., Hälbig, Thomas D., Paschen, Stephen, Barbe, Michael T., Kühn, Andrea, Fraix, Valerie, Brefel-Courbon, Christine, Vesper, Jan, Maltête, David, Sixel-Döring, Friederike, Weiss, Daniel, Witjas, Tatiana, Thobois, Stephane, Agid, Yves, Schnitzler, A., Schuepbach, W.M.M., Timmermann, L., Damier, Philippe, Vidailhet, M., and Deuschl, G.
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- 2019
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6. Bewegungsstörungen – Morbus Parkinson
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Deuschl, G., primary and Daniels, C., additional
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- 2021
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7. Bewegungsstörungen – Syndrom der ruhelosen Beine (Restless-legs-Syndrom)
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Deuschl, G., primary and Daniels, C., additional
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- 2021
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8. Bewegungsstörungen – Essenzieller Tremor
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Deuschl, G., primary and Daniels, C., additional
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- 2021
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9. Autoren
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Andresen, V., primary, Bingel, U., additional, Brandt, T., additional, Brassel, F., additional, Daniels, C., additional, Deuschl, G., additional, Diener, H.-C., additional, Eckstein, H.-H., additional, Elger, C.E., additional, Eyüpoglu, I., additional, Faissner, S., additional, Forsting, M., additional, Gold, R., additional, Heuß, D., additional, Hopf, H.C., additional, Jeup, M., additional, Jordan, B., additional, Kastrup, O., additional, Klein, M., additional, Kleine-Borgmann, J., additional, Kovac, S., additional, Kuramatsu, J.B., additional, Layer, P., additional, Limmroth, V., additional, Nacimiento, W., additional, Nickenig, G., additional, Pfister, H.-W., additional, Schipper, J., additional, Schneider-Gold, C., additional, Scholz, M., additional, Sommer, C.-M., additional, Strupp, M., additional, Sure, U., additional, Toyka, K.V., additional, von Schassen, K.H., additional, Wallesch, C.-W., additional, and Zierz, S., additional
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- 2021
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10. Time delay and partial coherence analyses to identify cortical connectivities
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Govindan, R. B., Raethjen, J., Arning, K., Kopper, F., and Deuschl, G.
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Physics - Medical Physics ,Physics - Biological Physics - Abstract
Recently it has been demonstrated by Albo that partial coherence analysis is sensitive to signal to noise ratio (SNR) and that it will always identify the signal with the highest SNR among the three signals as the main (driving) influence. We propose to use time delay analysis in parallel to partial coherence analysis to identify the connectivities between the multivariate time series. Both are applied to a theoretical model (used by Albo) to analyse the connections introduced in the model. Time delay analysis identifies the connections correctly. We also apply these analyses to the electroencephalogram (EEG) and electromyogram (EMG) of essential tremor patients and EEG of normal subjects while bimanually tapping their index fingers. Biologically plausible cortico-muscular and cortico-cortical connections are identified by these methods., Comment: Accepted for publication in Biological Cybernetics
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- 2005
11. Life-threatening DBS withdrawal syndrome in Parkinson's disease can be treated with early reimplantation
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Reuter, S., Deuschl, G., Berg, D., Helmers, A., Falk, D., and Witt, K.
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- 2018
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12. Estimation of time delay by coherence analysis
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Govindan, R. B., Raethjen, J., Kopper, F., Claussen, J. C., and Deuschl, G.
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Physics - Data Analysis, Statistics and Probability ,Physics - Medical Physics - Abstract
Using coherence analysis (which is an extensively used method to study the correlations in frequency domain, between two simultaneously measured signals) we estimate the time delay between two signals. This method is suitable for time delay estimation of narrow band coherence signals for which the conventional methods cannot be reliably applied. We show by analysing coupled R\"ossler attractors with a known delay, that the method yields satisfactory results. Then, we apply this method to human pathologic tremor. The delay between simultaneously measured traces of Electroencephalogram (EEG) and Electromyogram (EMG) data of subjects with essential hand tremor is calculated. We find that there is a delay of 11-27 milli-seconds ($ms$) between the tremor correlated parts (cortex) of the brain (EEG) and the trembling hand (EMG) which is in agreement with the experimentally observed delay value of 15 $ms$ for the cortico-muscular conduction time. By surrogate analysis we calculate error-bars of the estimated delay., Comment: 21 pages, 8 figures, elstart.cls file included. Accepted for publication in Physica A
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- 2004
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13. Recruitment gain of spinal motor neuron pools in cat and human
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Nielsen, J. B., Morita, H., Wenzelburger, R., Deuschl, G., Gossard, J.-P., and Hultborn, H.
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- 2019
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14. Internetseiten für Betroffene mit Morbus Parkinson – eine systematische Übersicht
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Schlenstedt, C., Seuthe, J., Grotheer, M., Weisser, B., Deuschl, G., and Berg, D.
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- 2019
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15. Facharzt für Neurologie: Von den historischen Wurzeln zum europäischen Vergleich
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Aschenberg, S., Franke, C., Kleineberg, N., Berlit, P., and Deuschl, G.
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- 2019
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16. Levodopa Response in Patients With Early Parkinson Disease: Further Observations of the LEAP Study
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Frequin, H.L., Schouten, J., Verschuur, C.V., Suwijn, S.R., Boel, J.A., Post, B., Bloem, B.R., Hilten, J.J. van, Laar, T. van, Tissingh, G., Munts, A.G., Dijk, J.M.C. van, Deuschl, G., Lang, A., Dijkgraaf, M.G.W., Haan, R.J. den, and Bie, R.M. de
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All institutes and research themes of the Radboud University Medical Center ,Disorders of movement Donders Center for Medical Neuroscience [Radboudumc 3] - Abstract
Item does not contain fulltext BACKGROUND AND OBJECTIVES: The Levodopa in EArly Parkinson's Disease (LEAP) study enabled us to conduct post hoc analyses concerning the effects of levodopa in patients with early Parkinson disease. METHODS: The LEAP study was a double-blind, placebo-controlled, randomized, delayed-start trial in which patients with early Parkinson disease were randomized to receive levodopa/carbidopa 300/75 mg daily for 80 weeks (early-start group) or to placebo for 40 weeks followed by levodopa/carbidopa 300/75 mg daily for 40 weeks (delayed-start group). We analyzed the effect of levodopa with the Unified Parkinson's Disease Rating Scale on bradykinesia, rigidity, and tremor. At week 80, participants answered 3 questions regarding motor response fluctuations. RESULTS: A total of 222 patients were randomized to the early-start group (mean ± SD age at baseline 64.8 ± 8.7 years; 71% male) and 223 to the delayed-start group (mean ± SD age at baseline 65.5 ± 8.8 years; 69% male). The difference between the early- and delayed-start groups in mean change from baseline to week 4, expressed as Hedges g effect size, was -0.33 for bradykinesia, -0.29 for rigidity, and -0.25 for tremor (for all symptoms indicating a small effect in favor of the early-start group); from baseline to week 22, respectively, -0.49, -0.36, and -0.44 (small to medium effect); and from baseline to week 40, respectively, -0.32, -0.19, and -0.27 (small effect). At 80 weeks, fewer patients in the early-start group (46 of 205 patients, 23%) experienced motor response fluctuations than patients in the delayed-start group (81 of 211, 38%; p < 0.01). DISCUSSION: In patients with early Parkinson disease, levodopa improves bradykinesia, rigidity, and tremor to the same order of magnitude. For all 3 symptoms, effects were larger at 22 weeks compared with 4 weeks. At 80 weeks, there were fewer patients with motor response fluctuations in the group that had started levodopa earlier. CLASSIFICATION OF EVIDENCE: This study provides Class II evidence that the effect of levodopa on bradykinesia, rigidity, and tremor is larger after 22 weeks compared with 4 weeks of treatment. TRIAL REGISTRATION INFORMATION: ISRCTN30518857, EudraCT number 2011-000678-72.
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- 2023
17. Cross-spectral analysis of physiological tremor and muscle activity. II. Application to synchronized EMG
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Timmer, J., Lauk, M., Pfleger, W., and Deuschl, G.
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Nonlinear Sciences - Chaotic Dynamics ,Quantitative Biology - Abstract
We investigate the relationship between synchronized muscle activity and tremor time series in (enhanced) physiological tremor by cross-spectral analysis. Special attention is directed to the phase spectrum and its possibilities to clarify the contribution of reflex mechanisms to physiological tremor. The phase spectra are investigated under the assumptions that the EMG synchronization was caused by a reflex, respectively a central oscillator. In comparison of these results to phase spectra of measured data we found a significant contribution of reflexes. But reflexes only modify existing peaks in the power spectrum. The main agents of physiological tremor are an efferent pace and the resonant behavior of the biomechanical system., Comment: 10 pages, 11 figures, to appear in Biological Cybernetics
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- 1998
18. Cross-spectral analysis of physiological tremor and muscle activity. I. Theory and application to unsynchronized EMG
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Timmer, J., Lauk, M., Pfleger, W., and Deuschl, G.
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Nonlinear Sciences - Chaotic Dynamics ,Quantitative Biology - Abstract
We investigate the relationship between the extensor electromyogram (EMG) and tremor time series in physiological hand tremor by cross-spectral analysis. Special attention is directed to the phase spectrum and the effects of observational noise. We calculate the theoretical phase spectrum for a second order linear stochastic process and compare the results to measured tremor data recorded from subjects who did not show a synchronized EMG activity in the corresponding extensor muscle. The results show that physiological tremor is well described by the proposed model and that the measured EMG represents a Newtonian force by which the muscle acts on the hand., Comment: 9 pages, 6 figures, to appear in Biological Cybernetics
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- 1998
19. 38/m mit schwerem Tremor: Vorbereitung auf die Facharztprüfung: Fall 56
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Deuschl, G.
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- 2021
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20. Essenzieller Tremor: State of the Art
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Deuschl, G. and Berg, D.
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- 2018
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21. Seltene Tremorsyndrome
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Becktepe, J. S., Goevert, F., and Deuschl, G.
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- 2018
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22. Die neue Tremorklassifikation der International Parkinson and Movement Disorder Society: Update zu häufigen Tremores
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Gövert, F., Becktepe, J., and Deuschl, G.
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- 2018
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23. Current concepts of essential tremor
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Gövert, F., Becktepe, J.S., and Deuschl, G.
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- 2016
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24. S2k-Leitlinie: Tremor
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Schwingenschuh, P., primary, Becktepe, J., additional, Brancato, A., additional, Buechele, F., additional, Hopfner, F., additional, Kaegi, G., additional, Klingelhoefer, L., additional, Pirker, W., additional, Raethjen, J., additional, Schnitzler, A., additional, Voges, J., additional, Volkmann, J., additional, Zeuner, K., additional, and Deuschl, G., additional
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- 2023
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25. Medikamentöse Therapie des essenziellen Tremors
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Becktepe, J. and Deuschl, G.
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- 2018
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26. Morbus Parkinson und verwandte Demenzen
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Witt, K., Deuschl, G., Bartsch, Thorsten, editor, and Falkai, Peter, editor
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- 2013
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27. Klinische Differenzialdiagnostik Klinische Differenzialdiagnostik bei akuten Bewusstseinsstörungen
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Hansen, H.-C., Bartsch, T., Deuschl, G., and Hansen, Hans-Christian, editor
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- 2013
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28. A Neural Network Approach to Distinguish Parkinsonian Tremor from Advanced Essential Tremor
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Hossen, A., Muthuraman, M., Raethjen, J., Deuschl, G., Heute, U., Deep, Kusum, editor, Nagar, Atulya, editor, Pant, Millie, editor, and Bansal, Jagdish Chand, editor
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- 2012
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29. Störungsspezifische Therapie der Handfunktion
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Allert, N., Altenmöller, E., Blank, R., Burgunder, J.M., Conrad, A., Deuschl, G., Eberhardt, O., Felgentreu, M., Goldenberg, G., Herrmann, C., Himmelbach, M., Keil, J., Maihöfner, C., Müller, F., Raethjen, J., Roelandt, F., Scheele, M., Schubert, Y., Timmann, D., Nowak, D.A., and Nowak, Dennis A.
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- 2011
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30. Störungsspezifische Diagnostik der Handfunktion
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Blank, R., Platz, T., Eickhof, C., Eberhardt, O., Burgunder, J.M., Jung, B., Hermsdörfer, J., Altenmüller, E., Dafotakis, M., Nowak, D.A., Raethjen, J., Deuschl, G., Brandauer, B., Müller, F., Timmann, D., Goldenberg, G., Himmelbach, M., Conrad, A., Herrmann, C., Maihöfner, C., and Nowak, Dennis A.
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- 2011
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31. Is essential tremor a single entity?
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Hopfner, F. and Deuschl, G.
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- 2018
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32. Primary Orthostatic Tremor☆
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Deuschl, G., primary, Sarva, H., additional, and Jacoby, N., additional
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- 2017
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33. Effective Connectivity of Cortical Sensorimotor Networks During Finger Movement Tasks: A Simultaneous fNIRS, fMRI, EEG Study
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Anwar, A. R., Muthalib, M., Perrey, S., Galka, A., Granert, O., Wolff, S., Heute, U., Deuschl, G., Raethjen, J., and Muthuraman, Muthuraman
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- 2016
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34. Deep brain stimulation for idiopathic or secondary movement disorders
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Mehdorn, H. M., Pinsker, M. O., Volkmann, J., Hamel, W., Schrader, B., Stiller, U., Herzog, J., Deuschl, G., Steiger, H. -J., editor, and von Wild, Klaus R. H., editor
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- 2005
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35. Parkinson’s Disease I: Degeneration and Dysfunction of Dopaminergic Neurons
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Wilms, H., Deuschl, G., Herdegen, T., editor, and Delgado-García, J., editor
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- 2004
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36. Global Burden of Cardiovascular Diseases and Risk Factors, 1990–2019: Update From the GBD 2019 Study
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Roth, G, Mensah, G, Johnson, C, Addolorato, G, Ammirati, E, Baddour, L, Barengo, N, Beaton, A, Benjamin, E, Benziger, C, Bonny, A, Brauer, M, Brodmann, M, Cahill, T, Carapetis, J, Catapano, A, Chugh, S, Cooper, L, Coresh, J, Criqui, M, Decleene, N, Eagle, K, Emmons-Bell, S, Feigin, V, Fernandez-Sola, J, Fowkes, G, Gakidou, E, Grundy, S, He, F, Howard, G, Hu, F, Inker, L, Karthikeyan, G, Kassebaum, N, Koroshetz, W, Lavie, C, Lloyd-Jones, D, Lu, H, Mirijello, A, Temesgen, A, Mokdad, A, Moran, A, Muntner, P, Narula, J, Neal, B, Ntsekhe, M, Moraes de Oliveira, G, Otto, C, Owolabi, M, Pratt, M, Rajagopalan, S, Reitsma, M, Ribeiro, A, Rigotti, N, Rodgers, A, Sable, C, Shakil, S, Sliwa-Hahnle, K, Stark, B, Sundstrom, J, Timpel, P, Tleyjeh, I, Valgimigli, M, Vos, T, Whelton, P, Yacoub, M, Zuhlke, L, Murray, C, Fuster, V, Fowkes, F, Misganaw, A, Oliveira, G, Sliwa, K, Abbasi-Kangevari, M, Abdi, A, Abedi, A, Aboyans, V, Abrha, W, Abu-Gharbieh, E, Abushouk, A, Acharya, D, Adair, T, Adebayo, O, Ademi, Z, Advani, S, Afshari, K, Afshin, A, Agarwal, G, Agasthi, P, Ahmad, S, Ahmadi, S, Ahmed, M, Aji, B, Akalu, Y, Akande-Sholabi, W, Aklilu, A, Akunna, C, Alahdab, F, Al-Eyadhy, A, Alhabib, K, Alif, S, Alipour, V, Aljunid, S, Alla, F, Almasi-Hashiani, A, Almustanyir, S, Al-Raddadi, R, Amegah, A, Amini, S, Aminorroaya, A, Amu, H, Amugsi, D, Ancuceanu, R, Anderlini, D, Andrei, T, Andrei, C, Ansari-Moghaddam, A, Anteneh, Z, Antonazzo, I, Antony, B, Anwer, R, Appiah, L, Arabloo, J, Arnlov, J, Artanti, K, Ataro, Z, Ausloos, M, Avila-Burgos, L, Awan, A, Awoke, M, Ayele, H, Ayza, M, Azari, S, B, D, Baheiraei, N, Baig, A, Bakhtiari, A, Banach, M, Banik, P, Baptista, E, Barboza, M, Barua, L, Basu, S, Bedi, N, Bejot, Y, Bennett, D, Bensenor, I, Berman, A, Bezabih, Y, Bhagavathula, A, Bhaskar, S, Bhattacharyya, K, Bijani, A, Bikbov, B, Birhanu, M, Boloor, A, Brant, L, Brenner, H, Briko, N, Butt, Z, Caetano dos Santos, F, Cahill, L, Cahuana-Hurtado, L, Camera, L, Campos-Nonato, I, Cantu-Brito, C, Car, J, Carrero, J, Carvalho, F, Castaneda-Orjuela, C, Catala-Lopez, F, Cerin, E, Charan, J, Chattu, V, Chen, S, Chin, K, Choi, J, Chu, D, Chung, S, Cirillo, M, Coffey, S, Conti, S, Costa, V, Cundiff, D, Dadras, O, Dagnew, B, Dai, X, Damasceno, A, Dandona, L, Dandona, R, Davletov, K, De la Cruz-Gongora, V, De la Hoz, F, De Neve, J, Denova-Gutierrez, E, Derbew Molla, M, Derseh, B, Desai, R, Deuschl, G, Dharmaratne, S, Dhimal, M, Dhungana, R, Dianatinasab, M, Diaz, D, Djalalinia, S, Dokova, K, Douiri, A, Duncan, B, Duraes, A, Eagan, A, Ebtehaj, S, Eftekhari, A, Eftekharzadeh, S, Ekholuenetale, M, El Nahas, N, Elgendy, I, Elhadi, M, El-Jaafary, S, Esteghamati, S, Etisso, A, Eyawo, O, Fadhil, I, Faraon, E, Faris, P, Farwati, M, Farzadfar, F, Fernandes, E, Fernandez Prendes, C, Ferrara, P, Filip, I, Fischer, F, Flood, D, Fukumoto, T, Gad, M, Gaidhane, S, Ganji, M, Garg, J, Gebre, A, Gebregiorgis, B, Gebregzabiher, K, Gebremeskel, G, Getacher, L, Obsa, A, Ghajar, A, Ghashghaee, A, Ghith, N, Giampaoli, S, Gilani, S, Gill, P, Gillum, R, Glushkova, E, Gnedovskaya, E, Golechha, M, Gonfa, K, Goudarzian, A, Goulart, A, Guadamuz, J, Guha, A, Guo, Y, Gupta, R, Hachinski, V, Hafezi-Nejad, N, Haile, T, Hamadeh, R, Hamidi, S, Hankey, G, Hargono, A, Hartono, R, Hashemian, M, Hashi, A, Hassan, S, Hassen, H, Havmoeller, R, Hay, S, Hayat, K, Heidari, G, Herteliu, C, Holla, R, Hosseini, M, Hosseinzadeh, M, Hostiuc, M, Hostiuc, S, Househ, M, Huang, J, Humayun, A, Iavicoli, I, Ibeneme, C, Ibitoye, S, Ilesanmi, O, Ilic, I, Ilic, M, Iqbal, U, Irvani, S, Islam, S, Islam, R, Iso, H, Iwagami, M, Jain, V, Javaheri, T, Jayapal, S, Jayaram, S, Jayawardena, R, Jeemon, P, Jha, R, Jonas, J, Jonnagaddala, J, Joukar, F, Jozwiak, J, Jurisson, M, Kabir, A, Kahlon, T, Kalani, R, Kalhor, R, Kamath, A, Kamel, I, Kandel, H, Kandel, A, Karch, A, Kasa, A, Katoto, P, Kayode, G, Khader, Y, Khammarnia, M, Khan, M, Khan, E, Khatab, K, Kibria, G, Kim, Y, Kim, G, Kimokoti, R, Kisa, S, Kisa, A, Kivimaki, M, Kolte, D, Koolivand, A, Korshunov, V, Koulmane Laxminarayana, S, Koyanagi, A, Krishan, K, Krishnamoorthy, V, Kuate Defo, B, Kucuk Bicer, B, Kulkarni, V, Kumar, G, Kumar, N, Kurmi, O, Kusuma, D, Kwan, G, La Vecchia, C, Lacey, B, Lallukka, T, Lan, Q, Lasrado, S, Lassi, Z, Lauriola, P, Lawrence, W, Laxmaiah, A, Legrand, K, Li, M, Li, B, Li, S, Lim, S, Lim, L, Lin, H, Lin, Z, Lin, R, Liu, X, Lopez, A, Lorkowski, S, Lotufo, P, Lugo, A, M, N, Madotto, F, Mahmoudi, M, Majeed, A, Malekzadeh, R, Malik, A, Mamun, A, Manafi, N, Mansournia, M, Mantovani, L, Martini, S, Mathur, M, Mazzaglia, G, Mehata, S, Mehndiratta, M, Meier, T, Menezes, R, Meretoja, A, Mestrovic, T, Miazgowski, B, Miazgowski, T, Michalek, I, Miller, T, Mirrakhimov, E, Mirzaei, H, Moazen, B, Moghadaszadeh, M, Mohammad, Y, Mohammad, D, Mohammed, S, Mohammed, M, Mokhayeri, Y, Molokhia, M, Montasir, A, Moradi, G, Moradzadeh, R, Moraga, P, Morawska, L, Moreno Velasquez, I, Morze, J, Mubarik, S, Muruet, W, Musa, K, Nagarajan, A, Nalini, M, Nangia, V, Naqvi, A, Narasimha Swamy, S, Nascimento, B, Nayak, V, Nazari, J, Nazarzadeh, M, Negoi, R, Neupane Kandel, S, Nguyen, H, Nixon, M, Norrving, B, Noubiap, J, Nouthe, B, Nowak, C, Odukoya, O, Ogbo, F, Olagunju, A, Orru, H, Ortiz, A, Ostroff, S, Padubidri, J, Palladino, R, Pana, A, Panda-Jonas, S, Parekh, U, Park, E, Parvizi, M, Pashazadeh Kan, F, Patel, U, Pathak, M, Paudel, R, Pepito, V, Perianayagam, A, Perico, N, Pham, H, Pilgrim, T, Piradov, M, Pishgar, F, Podder, V, Polibin, R, Pourshams, A, Pribadi, D, Rabiee, N, Rabiee, M, Radfar, A, Rafiei, A, Rahim, F, Rahimi-Movaghar, V, Ur Rahman, M, Rahman, M, Rahmani, A, Rakovac, I, Ram, P, Ramalingam, S, Rana, J, Ranasinghe, P, Rao, S, Rathi, P, Rawal, L, Rawasia, W, Rawassizadeh, R, Remuzzi, G, Renzaho, A, Rezapour, A, Riahi, S, Roberts-Thomson, R, Roever, L, Rohloff, P, Romoli, M, Roshandel, G, Rwegerera, G, Saadatagah, S, Saber-Ayad, M, Sabour, S, Sacco, S, Sadeghi, M, Saeedi Moghaddam, S, Safari, S, Sahebkar, A, Salehi, S, 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- Abstract
Cardiovascular diseases (CVDs), principally ischemic heart disease (IHD) and stroke, are the leading cause of global mortality and a major contributor to disability. This paper reviews the magnitude of total CVD burden, including 13 underlying causes of cardiovascular death and 9 related risk factors, using estimates from the Global Burden of Disease (GBD) Study 2019. GBD, an ongoing multinational collaboration to provide comparable and consistent estimates of population health over time, used all available population-level data sources on incidence, prevalence, case fatality, mortality, and health risks to produce estimates for 204 countries and territories from 1990 to 2019. Prevalent cases of total CVD nearly doubled from 271 million (95% uncertainty interval [UI]: 257 to 285 million) in 1990 to 523 million (95% UI: 497 to 550 million) in 2019, and the number of CVD deaths steadily increased from 12.1 million (95% UI:11.4 to 12.6 million) in 1990, reaching 18.6 million (95% UI: 17.1 to 19.7 million) in 2019. The global trends for disability-adjusted life years (DALYs) and years of life lost also increased significantly, and years lived with disability doubled from 17.7 million (95% UI: 12.9 to 22.5 million) to 34.4 million (95% UI:24.9 to 43.6 million) over that period. The total number of DALYs due to IHD has risen steadily since 1990, reaching 182 million (95% UI: 170 to 194 million) DALYs, 9.14 million (95% UI: 8.40 to 9.74 million) deaths in the year 2019, and 197 million (95% UI: 178 to 220 million) prevalent cases of IHD in 2019. The total number of DALYs due to stroke has risen steadily since 1990, reaching 143 million (95% UI: 133 to 153 million) DALYs, 6.55 million (95% UI: 6.00 to 7.02 million) deaths in the year 2019, and 101 million (95% UI: 93.2 to 111 million) prevalent cases of stroke in 2019. Cardiovascular diseases remain the leading cause of disease burden in the world. CVD burden continues its decades-long rise for almost all countries outside
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- 2020
37. Kinematic effects of subthalamic stimulation on reach-to-grasp movements in Parkinson's disease
- Author
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Pötter-Nerger, M., Habben, A., Herzog, J., Falk, D., Mehdorn, M.H., Deuschl, G., and Volkmann, J.
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- 2013
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38. The clinical and electrophysiological investigation of tremor
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Deuschl, G., Becktepe, J.S., Dirkx, M.F.M., Haubenberger, D., Hassan, A., Helmich, R.C.G., Muthuraman, M., Panyakaew, P., Schwingenschuh, P., Zeuner, K.E., Elble, R.J., Deuschl, G., Becktepe, J.S., Dirkx, M.F.M., Haubenberger, D., Hassan, A., Helmich, R.C.G., Muthuraman, M., Panyakaew, P., Schwingenschuh, P., Zeuner, K.E., and Elble, R.J.
- Abstract
Contains fulltext : 252111.pdf (Publisher’s version ) (Open Access), The various forms of tremor are now classified in two axes: clinical characteristics (axis 1) and etiology (axis 2). Electrophysiology is an extension of the clinical exam. Electrophysiologic tests are diagnostic of physiologic tremor, primary orthostatic tremor, and functional tremor, but they are valuable in the clinical characterization of all forms of tremor. Electrophysiology will likely play an increasing role in axis 1 tremor classification because many features of tremor are not reliably assessed by clinical examination alone. In particular, electrophysiology may be needed to distinguish tremor from tremor mimics, assess tremor frequency, assess tremor rhythmicity or regularity, distinguish mechanical-reflex oscillation from central neurogenic oscillation, determine if tremors in different body parts, muscles, or brain regions are strongly correlated, document tremor suppression or entrainment by voluntary movements of contralateral body parts, and document the effects of voluntary movement on rest tremor. In addition, electrophysiologic brain mapping has been crucial in our understanding of tremor pathophysiology. The electrophysiologic methods of tremor analysis are reviewed in the context of physiologic tremor and pathologic tremors, with a focus on clinical characterization and pathophysiology. Electrophysiology is instrumental in elucidating tremor mechanisms, and the pathophysiology of the different forms of tremor is summarized in this review.
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- 2022
39. Common Variants Near ZIC1 and ZIC4 in Autopsy-Confirmed Multiple System Atrophy.
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Hopfner, F, Tietz, AK, Ruf, VC, Ross, OA, Koga, S, Dickson, D, Aguzzi, A, Attems, J, Beach, T, Beller, A, Cheshire, WP, van Deerlin, V, Desplats, P, Deuschl, G, Duyckaerts, C, Ellinghaus, D, Evsyukov, V, Flanagan, ME, Franke, A, Frosch, MP, Gearing, M, Gelpi, E, van Gerpen, JA, Ghetti, B, Glass, JD, Grinberg, LT, Halliday, G, Helbig, I, Höllerhage, M, Huitinga, I, Irwin, DJ, Keene, DC, Kovacs, GG, Lee, EB, Levin, J, Martí, MJ, Mackenzie, I, McKeith, I, Mclean, C, Mollenhauer, B, Neumann, M, Newell, KL, Pantelyat, A, Pendziwiat, M, Peters, A, Molina Porcel, L, Rabano, A, Matěj, R, Rajput, A, Reimann, R, Scott, WK, Seeley, W, Selvackadunco, S, Simuni, T, Stadelmann, C, Svenningsson, P, Thomas, A, Trenkwalder, C, Troakes, C, Trojanowski, JQ, Uitti, RJ, White, CL, Wszolek, ZK, Xie, T, Ximelis, T, Yebenes, J, Alzheimer's Disease Genetics Consortium, Müller, U, Schellenberg, GD, Herms, J, Kuhlenbäumer, G, Höglinger, G, Hopfner, F, Tietz, AK, Ruf, VC, Ross, OA, Koga, S, Dickson, D, Aguzzi, A, Attems, J, Beach, T, Beller, A, Cheshire, WP, van Deerlin, V, Desplats, P, Deuschl, G, Duyckaerts, C, Ellinghaus, D, Evsyukov, V, Flanagan, ME, Franke, A, Frosch, MP, Gearing, M, Gelpi, E, van Gerpen, JA, Ghetti, B, Glass, JD, Grinberg, LT, Halliday, G, Helbig, I, Höllerhage, M, Huitinga, I, Irwin, DJ, Keene, DC, Kovacs, GG, Lee, EB, Levin, J, Martí, MJ, Mackenzie, I, McKeith, I, Mclean, C, Mollenhauer, B, Neumann, M, Newell, KL, Pantelyat, A, Pendziwiat, M, Peters, A, Molina Porcel, L, Rabano, A, Matěj, R, Rajput, A, Reimann, R, Scott, WK, Seeley, W, Selvackadunco, S, Simuni, T, Stadelmann, C, Svenningsson, P, Thomas, A, Trenkwalder, C, Troakes, C, Trojanowski, JQ, Uitti, RJ, White, CL, Wszolek, ZK, Xie, T, Ximelis, T, Yebenes, J, Alzheimer's Disease Genetics Consortium, Müller, U, Schellenberg, GD, Herms, J, Kuhlenbäumer, G, and Höglinger, G
- Published
- 2022
40. Effect of high‐frequency subthalamic neurostimulation on gait and freezing of gait in Parkinsonʼs disease: a systematic review and meta‐analysis
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Schlenstedt, C., Shalash, A., Muthuraman, M., Falk, D., Witt, K., and Deuschl, G.
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- 2017
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41. Diagnose und Therapie des Parkinson-Tremors
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Deuschl, G., Riederer, Peter, editor, Laux, Gerd, editor, and Pöldinger, Walter, editor
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- 1999
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42. Einfluss des Lebensstils auf neurodegenerative Erkrankungen
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Schulz, J.B. and Deuschl, G.
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- 2015
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43. MRI of lumbar trunk muscles in patients with Parkinson’s disease and camptocormia
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Margraf, N. G., Rohr, A., Granert, O., Hampel, J., Drews, A., and Deuschl, G.
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- 2015
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44. Oscillating central motor networks in pathological tremors and voluntary movements. What makes the difference?
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Muthuraman, M., Heute, U., Arning, K., Anwar, A.R., Elble, R., Deuschl, G., and Raethjen, J.
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- 2012
- Full Text
- View/download PDF
45. P 22 Effects of multisensory feedback on tremor severity in essential tremor
- Author
-
Welzel, J., primary, Deuschl, G., additional, Guethe, M., additional, Maetzler, W., additional, Keil, J., additional, and Becktepe, J.S., additional
- Published
- 2022
- Full Text
- View/download PDF
46. Functional tremor
- Author
-
Schwingenschuh, P., primary and Deuschl, G., additional
- Published
- 2016
- Full Text
- View/download PDF
47. Focal Lesions of Human Hippocampal CA1 Neurons in Transient Global Amnesia Impair Place Memory
- Author
-
Bartsch, T., Schönfeld, R., Müller, F. J., Alfke, K., Leplow, B., Aldenhoff, J., Deuschl, G., and Koch, J. M.
- Published
- 2010
48. Bereitschaftspotentiale bei Schreibkrampf
- Author
-
Deuschl, G., Toro, C., Hallett, M., Lang, Wilfried, editor, Deecke, Lüder, editor, and Hopf, Hanns Christian, editor
- Published
- 1995
- Full Text
- View/download PDF
49. Frequency, Amplitude, and Waveform Characteristics of Physiologic and Pathologic Tremors
- Author
-
Deuschl, G., Timmer, J., Genger, H., Gantert, C., Lücking, C. H., Honerkamp, J., Przuntek, Horst, editor, Kraus, Peter H., editor, Klotz, P., editor, and Korczyn, Amos D., editor
- Published
- 1995
- Full Text
- View/download PDF
50. Neurologische Beurteilung reanimierter Patienten
- Author
-
Deuschl, G., Meuret, Gerhard Hans, and Löllgen, Herbert
- Published
- 1994
- Full Text
- View/download PDF
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