vercise dbs lead Search Results


86
Boston Scientific Corporation stn dbs implantation surgery
Stn Dbs Implantation Surgery, supplied by Boston Scientific Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Boston Scientific Corporation dbs leads
Dbs Leads, supplied by Boston Scientific Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Boston Scientific Corporation single dbs lead
Single Dbs Lead, supplied by Boston Scientific Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Boston Scientific Corporation vercise pc pulse generator
Vercise Pc Pulse Generator, supplied by Boston Scientific Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Abbott Laboratories dbs electrodes
a) Circuit diagram of deep brain stimulation in the subthalamic nucleus and adjacent structures. Blue: implanted deep brain stimulation lead. Green: anatomical outline of the subthalamic nucleus. IC: internal capsule. Red sphere: hypothetical volume of tissue activated by the <t>DBS-generated</t> electric field, partially overlapping with the internal capsule. Bottom red shell: activated muscle tissue. b) Diagram of EMG bipolar <t>electrode</t> placement for commonly recorded muscles in this study. ECR: extensor carpi radialis. FCR: flexor carpi radialis (transparent marker indicating placement underneath the anatomical structure). FDI: first dorsal interosseus. c) Example pulse-averaged EMG recordings displaying a motor evoked potential response in nasalis (top) at 10 ms latency and ECR (bottom) at 18 ms latency.
Dbs Electrodes, supplied by Abbott Laboratories, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Medtronic inc dbs lead 3389
a) Circuit diagram of deep brain stimulation in the subthalamic nucleus and adjacent structures. Blue: implanted deep brain stimulation lead. Green: anatomical outline of the subthalamic nucleus. IC: internal capsule. Red sphere: hypothetical volume of tissue activated by the <t>DBS-generated</t> electric field, partially overlapping with the internal capsule. Bottom red shell: activated muscle tissue. b) Diagram of EMG bipolar <t>electrode</t> placement for commonly recorded muscles in this study. ECR: extensor carpi radialis. FCR: flexor carpi radialis (transparent marker indicating placement underneath the anatomical structure). FDI: first dorsal interosseus. c) Example pulse-averaged EMG recordings displaying a motor evoked potential response in nasalis (top) at 10 ms latency and ECR (bottom) at 18 ms latency.
Dbs Lead 3389, supplied by Medtronic inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Boston Scientific Corporation directional dbs leads
Polar histograms and distribution plots of <t>directional</t> <t>DBS</t> lead orientations estimated via the Iron Sight method from postoperative rotational fluoroscopy at Jaslok Hospital, Mumbai (2022-2024). A-D: Observer-specific orientation estimates (n=70 leads). E: Histogram of interobserver angular differences with Gaussian Fit. F: Polar histogram of interobserver angular differences fitted with von Mises distribution.
Directional Dbs Leads, supplied by Boston Scientific Corporation, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


a) Circuit diagram of deep brain stimulation in the subthalamic nucleus and adjacent structures. Blue: implanted deep brain stimulation lead. Green: anatomical outline of the subthalamic nucleus. IC: internal capsule. Red sphere: hypothetical volume of tissue activated by the DBS-generated electric field, partially overlapping with the internal capsule. Bottom red shell: activated muscle tissue. b) Diagram of EMG bipolar electrode placement for commonly recorded muscles in this study. ECR: extensor carpi radialis. FCR: flexor carpi radialis (transparent marker indicating placement underneath the anatomical structure). FDI: first dorsal interosseus. c) Example pulse-averaged EMG recordings displaying a motor evoked potential response in nasalis (top) at 10 ms latency and ECR (bottom) at 18 ms latency.

Journal: medRxiv

Article Title: An algorithmic procedure for measuring deep brain stimulation-induced capsular activation using motor evoked potentials

doi: 10.1101/2025.08.26.25334489

Figure Lengend Snippet: a) Circuit diagram of deep brain stimulation in the subthalamic nucleus and adjacent structures. Blue: implanted deep brain stimulation lead. Green: anatomical outline of the subthalamic nucleus. IC: internal capsule. Red sphere: hypothetical volume of tissue activated by the DBS-generated electric field, partially overlapping with the internal capsule. Bottom red shell: activated muscle tissue. b) Diagram of EMG bipolar electrode placement for commonly recorded muscles in this study. ECR: extensor carpi radialis. FCR: flexor carpi radialis (transparent marker indicating placement underneath the anatomical structure). FDI: first dorsal interosseus. c) Example pulse-averaged EMG recordings displaying a motor evoked potential response in nasalis (top) at 10 ms latency and ECR (bottom) at 18 ms latency.

Article Snippet: DBS electrodes (both quadripolar and directional leads: Medtronic 3389, Medtronic B33005, Boston Scientific Vercise Cartesia Directional Lead 2202, and Abbott Infinity 6172) were implanted using microelectrode guidance and standard clinical procedures.

Techniques: Generated, Muscles, Marker

Polar histograms and distribution plots of directional DBS lead orientations estimated via the Iron Sight method from postoperative rotational fluoroscopy at Jaslok Hospital, Mumbai (2022-2024). A-D: Observer-specific orientation estimates (n=70 leads). E: Histogram of interobserver angular differences with Gaussian Fit. F: Polar histogram of interobserver angular differences fitted with von Mises distribution.

Journal: medRxiv

Article Title: Postoperative Determination of Directional Deep Brain Stimulation (DBS) Lead Orientation Using Rotational Fluoroscopy: Interobserver Agreement and Comparison with CT-Based Software

doi: 10.1101/2025.08.24.25334315

Figure Lengend Snippet: Polar histograms and distribution plots of directional DBS lead orientations estimated via the Iron Sight method from postoperative rotational fluoroscopy at Jaslok Hospital, Mumbai (2022-2024). A-D: Observer-specific orientation estimates (n=70 leads). E: Histogram of interobserver angular differences with Gaussian Fit. F: Polar histogram of interobserver angular differences fitted with von Mises distribution.

Article Snippet: Implantation of directional DBS leads (Vercise CartesiaTM, Boston Scientific) for movement disorders.

Techniques:

Agreement between rotational fluoroscopy (Iron Sight method) and Brainlab Elements™ software in determining orientation of directional DBS leads (67 leads, Jaslok Hospital, Mumbai, 2022-2024). A: Bland-Altman plot. B: Preiss-Fisher test for agreement. C: ICC (3,1) for inter-method reliability.

Journal: medRxiv

Article Title: Postoperative Determination of Directional Deep Brain Stimulation (DBS) Lead Orientation Using Rotational Fluoroscopy: Interobserver Agreement and Comparison with CT-Based Software

doi: 10.1101/2025.08.24.25334315

Figure Lengend Snippet: Agreement between rotational fluoroscopy (Iron Sight method) and Brainlab Elements™ software in determining orientation of directional DBS leads (67 leads, Jaslok Hospital, Mumbai, 2022-2024). A: Bland-Altman plot. B: Preiss-Fisher test for agreement. C: ICC (3,1) for inter-method reliability.

Article Snippet: Implantation of directional DBS leads (Vercise CartesiaTM, Boston Scientific) for movement disorders.

Techniques: Software