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Clinical Trials/NCT01703598
NCT01703598CompletedNot Applicable

Clinical Outcomes of Deep Brain Stimulator Electrodes Placed Using Intraoperative Computed Tomography and Frameless Stereotaxis Versus Microelectrode Recording and Frame-based Stereotaxis

Oregon Health and Science University1 site in 1 country69 target enrollmentStarted: September 1, 2011Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
69
Locations
1
Primary Endpoint
Change in Motor OFF Ldopa UPDRS

Study Overview

Brief Summary

The purpose of this study is to determine whether performing deep brain stimulation surgery for Parkinson's disease using intraoperative imaging and frameless stereotaxis is noninferior to using frame-based stereotaxy and microelectrode recording.

Detailed Description

Background: Frame-based stereotaxis and microelectrode recording (MER) with mapping of target structures has been the gold standard for deep brain stimulator (DBS) implantation. Though supported by historical considerations, no Class I or II evidence exists that MER adds significant value to the DBS implant procedure. With the advent of advanced magnetic resonance imaging (MRI) and computed tomography (CT) imaging, particularly intra-operative imaging, the argument for the continued use of MER during DBS implantation has been substantially weakened. One rationale for pursuing CT-guided intraoperative imaging is due to presumed increase in patient comfort with this method. DBS implantation with MER requires that the patient remain awake during the entire procedure. , MER with frame-based stereotaxis requires the patient to keep their head in a fixed position for a prolonged period of time during which time they remain awake, causing significant patient discomfort. Furthermore, Parkinson's disease patients must withhold their PD meds for a minimum of 12 hours prior to the procedure adding a sometimes significant degree of discomfort and anxiety to the procedure.

Objective: The goal of this study is to compare the clinical outcomes of DBS electrodes placed using intraoperative CT and frameless stereotaxis with those placed using MER and frame-based stereotaxis.

Design: The proposed study will be a prospective non-interventional data collection study.

Setting and Subjects: Subjects for this study will be idiopathic Parkinson's disease patients identified from the Oregon Health & Science University movement disorder clinic as candidates for deep brain stimulation therapy. Enrollment will continue until fifty subjects have been implanted with electrodes using frameless stereotaxis and intraoperative CT. Data regarding quality of life, motor control, and amount of time during the day without levodopa side effects will be collected pre-operatively and post-operatively. This data will be compared to historical controls who have been implanted with DBS electrodes using MER and frame-based stereotaxis. All surgical procedures will involve only Federal Drug Administration (FDA) approved stereotactic equipment, used in the manner for which they have been approved. All clinic procedures are standard of care for movement disorders patients in the deep brain stimulation program.

Intervention: This study will be a non-interventional data collection study.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Treatment
Masking
None

Eligibility Criteria

Ages
18 Years to — (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •Idiopathic Parkinson's disease patients identified by OHSU movement disorders neurologists as deep brain stimulation surgical candidates

Exclusion Criteria

  • •Subjects who have already undergone implantation of DBS electrodes 2.Age < - - 18 years
  • •Surgical target site other than subthalamic nucleus or globus pallidus pars interna
  • •Subjects who choose to undergo MER and frame-based stereotaxis for the placement of electrodes.
  • •Patients who will receive follow up neurology care and DBS programming at centers other than OHSU.

Arms & Interventions

DBS surgery

Experimental

Single arm

Intervention: Deep Brain Stimulation (Device)

DBS surgery

Experimental

Single arm

Intervention: DBS surgery (Procedure)

Outcomes

Primary Outcomes

Change in Motor OFF Ldopa UPDRS

Time Frame: Baseline and 6 months

Change in motor UPDRS in OFF Levodopa state. The range of this outcome is from 0 to 108, a higher number indicated a worse clinical state. The number represents units on this scale.

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

Matthew Brodsky

Principal Investigator

Oregon Health and Science University

Study Sites (1)

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