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CompletedNCT01922986Updated May 25, 2017Results posted

Repetitive Transcranial Magnetic Stimulation Use in Acute Stroke

An interventional study of active rTMS and sham rTMS in Stroke, sponsored by University of Minnesota. Completed at 1 site in United States. Open to participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2017-05-25.

Sponsored by University of Minnesota · Not applicable, Interventional, and Treatment

Phase
Not applicable
Study type
Interventional
Enrollment
4
Allocation
Randomized
Ages
18 Years and older
Sex
All
01

Study summary

When a certain area of the brain is injured, like in stroke, several events occur. One side of the body may become weak. This weakness is called hemiparesis and it may create difficulty in performing tasks like writing, eating, and walking. The weakness results from two sources:

  1. death of some brain cells in the affected side (hemisphere) of the brain
  2. exaggerated inhibitory signals from the unaffected hemisphere acting on surviving neurons in the affected hemisphere.

Investigators cannot change neurons that have died but they may be able to change the exaggerated inhibition that impairs the surviving neurons in the affected hemisphere.The purpose of this study is to try to decrease the exaggerated inhibition coming from the unaffected hemisphere, which suppresses the affected hemisphere, with transcranial magnetic stimulation (TMS). Investigators hypothesize that, from admission to discharge, active rTMS combined with conventional therapy will produce greater functional gains in the paretic hand compared to sham rTMS combined with conventional therapy, as measured by standard tests.

Read the detailed description

Stroke is the leading cause of long-term disability in the United States and people with stroke deserve our maximum effort to restore in them as much function as possible; yet, mainstream stroke rehabilitation remains mired in traditional treatment approaches that may be suboptimal. However, for the past 5 years we have been endeavoring to advance stroke rehabilitation by including noninvasive brain stimulation. This study will explore whether the safety and functional results from noninvasive brain stimulation in patients with chronic stroke when given by researchers in a laboratory setting can be replicated in acute stroke when given by trained clinicians in the real-world clinical setting.

As background, a phenomenon in stroke is that compensatory overuse of the non-stroke hemisphere can inhibit surviving neurons in the stroke hemisphere. In this way, people with stroke are "doubly disabled" - first, by the stroke itself and, second, by exaggerated interhemispheric inhibition (IHI) arising in the non-stroke hemisphere and acting on surviving neurons in the non-stroke hemisphere. Investigators cannot bring the killed neurons back to life but they can up-regulate the surviving neurons suppressed by IHI. Repetitive transcranial magnetic stimulation (rTMS) is a noninvasive way to do this.

rTMS has not yet entered mainstream clinical use for stroke, likely because it has not been explored in the acute rehabilitation setting with application by clinicians. With prior National Institutes of Health funding, Dr. Carey has considerable experience in using rTMS in the laboratory setting for chronic stroke. He will now take rTMS out of his lab and into the real-world setting of Courage Kenny Rehabilitation Institute (CKRI), the primary referral center for acute stroke rehabilitation in our region, where clinicians will be trained in rTMS. Five daily rTMS treatments (active or sham) will be given to the non-stroke primary motor area (M1). After each treatment, patients will receive their conventional rehabilitation training. This approach is innovative because of the rTMS parameters used and because the application will be given by trained clinicians with oversight by the Principal Investigator, as opposed to laboratory researchers. Expected outcomes are improved hand function with no major adverse effects. Data will serve as a springboard to larger clinical trials.

Specific Aim #1: Determine the safety of 5 treatments of 6-Hz primed low-frequency rTMS combined with conventional therapy in adults with acute stroke.

Adverse effects will be measured through observation for seizures, investigator screening, physician exam, and tests of cognitive function and motor function in the nonparetic hand.

Investigators hypothesize there will be a) no seizures, b) no cognitive decline and c) no motor decline.

Specific Aim #2: Compare the effectiveness of active vs. sham rTMS on functional outcomes in adults with acute stroke.

Adults with acute stroke will be randomized to receive either active rTMS or sham rTMS. Both groups will also receive conventional therapy, consisting of the normal rehabilitation used at this rehabilitation center. Investigators hypothesize that, from admission to discharge, active rTMS will produce greater functional gains in the paretic hand compared to sham rTMS, as measured by standard tests.

02

Conditions studied

  • Stroke

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Keywords

  • stroke
  • rehabilitation
  • hemiplegia
  • repetitive transcranial magnetic stimulation
03

In context

Stroke

7,286 studies on the registry are indexed under Stroke; 2,007 are open to participants now.

This study's enrollment of 4 is below the median of 50 across 5,369 interventional studies indexed under Stroke.

Browse Stroke studies →

Lead sponsor

University of Minnesota is the lead sponsor of 1,184 studies on the registry; 195 are open to participants now.

Of its 132 completed or terminated interventional studies of FDA-regulated products, 91 (69%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years and older
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • stroke onset: within past 30 days but rTMS intervention will commence no sooner than 5 days from stroke onset
  • stroke location: cortical or subcortical
  • stroke type: ischemic
  • age: >18 years
  • paretic index finger must show either no or impaired flexion/extension motion at the metacarpophalangeal (MP) joint.
  • Mini-Mental State Examination greater than or equal to 22
  • ability to stand/transfer with no more than moderate assistance

Exclusion criteria

Exclusion Criteria:

  • seizure within past two years
  • metal in head (dental permitted)
  • pregnancy
  • psychiatric disorders
  • receiving tricyclic antidepressants or neuroleptics
  • inability to follow three-step command
  • hemineglect
  • dependent on ventilator, nasogastric tube, or implanted medical device
  • co-morbidities impairing upper extremity function
  • anticipated stay at Courage Kenny Rehabilitation Institute shorter than 7 treatment days
05

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Double (Participant, Outcomes assessor)
Enrollment
4 participants (actual)

Study arms

  • Experimental
    Active rTMS with conventional therapy

    20 minutes of active rTMS followed by conventional stroke therapy

    Device: active rTMS · Behavioral: conventional stroke therapy

  • Sham comparator
    sham rTMS with conventional therapy

    20 minutes of sham rTMS stimulation followed by conventional stroke therapy

    Device: sham rTMS · Behavioral: conventional stroke therapy

Interventions

  • Deviceactive rTMS

    10 minutes of real high-frequency (6-Hz) rTMS priming (total priming pulses = 600) plus 10 minutes of low-rate (1Hz) rTMS (total low-rate pulses = 600).

  • Devicesham rTMS

    20 minutes of sham rTMS stimulation

  • Behavioralconventional stroke therapy

    conventional stroke therapy consisting of exercises and physical training

06

What researchers measure

Primary outcomes

  1. Percent Change From Baseline in Jebsen Taylor Hand Function Test Scores

    This test quantifies the time it takes for the subject to do the following standardized functional tasks with the hand: stack three checkers, turn over cards, turn over empty cans, turn over fluid-filled cans, pick up and place small items like a paper clip, etc into a can, and use a spoon to scoop up a bean and drop the bean into a can. The unit of measure is time and changes that are negative signify reduced time at posttest compared to pretest, which would be an improvement. Total score = sum of times for each subtests

    Time frame: Measured at pretest (day before treatments begin) and posttest (day following last treatment). Thus, 7 days of participation (1 pretest, 5 treatments, 1 posttest).

Secondary outcomes

  1. Change in Finger Tracking Test

    This test involves placing a device on the hand that shows the changing angle of the finger joint on a computer screen as the joint is moved. The computer screen also shows a target line, such as a sine wave. At the start of the test, the computer screen cursor moves horizontally across the target and the subject moves the finger joint into extension or flexion to adjust the vertical position of the cursor to that it traces the target line as accurately as possible. The performance is quantified by calculating the root-mean-square error between the target line and the response line. This is converted into an Accuracy Index, which has a maximum value of 100% (perfect score). Negative values can occur and reach a value of -100%, signifying very poor performance. Typical scores for healthy range from 50-80%. Typical values in stroke range from -100 to +40%. Changes that are positive signify increased tracking accuracy at posttest compared to pretest, which would be an improvement.

    Time frame: Measured at pretest (day before treatments begin) and posttest (day following last treatment). Thus, 7 days of participation (1 pretest, 5 treatments, 1 posttest).

  2. Change in Motricity Index

    Measures strength in finger pinch, elbow flexion and arm abduction. 0 No pinch movement. 11 Slight movement of finger or thumb. 19 Able to grip the cube, but not hold it against gravity. 22 Able to grip and hold the cube against gravity, but not against a weak pull by examiner. The weighted score based on the ordinal 6 point scale 26 Able to grip and hold the cube against a weak pull, but weaker than the other side. 33 Normal pinch grip. For shoulder and elbow scoring is: 0 No movement. 9 Palpable contraction in muscle, but no movement. 14 Visible movement, but not full range and not against gravity. 19 Full range of movement against gravity but not against resistance. 25 Full movement against resistance, but weaker than the other side. 33 Normal power. Maximum total score is 99, minimum is 0. Changes that are positive signify improved strength at postte

    Time frame: Measured at pretest (day before treatments begin) and posttest (day following last treatment). Thus, 7 days of participation (1 pretest, 5 treatments, 1 posttest).

07

Results

Posted Apr 4, 2017
Limitations and caveats
Enrollment of subjects was insufficient.

Participant flow

Participant flow — Overall Study
MilestoneActive rTMS With Conventional TherapySham rTMS With Conventional Therapy
Started22
Completed22
Not completed00

Outcome measures

PrimaryPercent Change From Baseline in Jebsen Taylor Hand Function Test Scores

This test quantifies the time it takes for the subject to do the following standardized functional tasks with the hand: stack three checkers, turn over cards, turn over empty cans, turn over fluid-filled cans, pick up and place small items like a paper clip, etc into a can, and use a spoon to scoop up a bean and drop the bean into a can. The unit of measure is time and changes that are negative signify reduced time at posttest compared to pretest, which would be an improvement. Total score = sum of times for each subtests

Time frame:
Measured at pretest (day before treatments begin) and posttest (day following last treatment). Thus, 7 days of participation (1 pretest, 5 treatments, 1 posttest).
Reported as:
Mean · percentage of change from baseline
Percent Change From Baseline in Jebsen Taylor Hand Function Test Scores
percentage of change from baselineActive rTMS With Conventional TherapySham rTMS With Conventional Therapy
Percent Change From Baseline in Jebsen Taylor Hand Function Test Scores-23.0 ± 32.50 ± 0
SecondaryChange in Finger Tracking Test

This test involves placing a device on the hand that shows the changing angle of the finger joint on a computer screen as the joint is moved. The computer screen also shows a target line, such as a sine wave. At the start of the test, the computer screen cursor moves horizontally across the target and the subject moves the finger joint into extension or flexion to adjust the vertical position of the cursor to that it traces the target line as accurately as possible. The performance is quantified by calculating the root-mean-square error between the target line and the response line. This is converted into an Accuracy Index, which has a maximum value of 100% (perfect score). Negative values can occur and reach a value of -100%, signifying very poor performance. Typical scores for healthy range from 50-80%. Typical values in stroke range from -100 to +40%. Changes that are positive signify increased tracking accuracy at posttest compared to pretest, which would be an improvement.

Time frame:
Measured at pretest (day before treatments begin) and posttest (day following last treatment). Thus, 7 days of participation (1 pretest, 5 treatments, 1 posttest).
Reported as:
Mean · units on a scale
Change in Finger Tracking Test
units on a scaleActive rTMS With Conventional TherapySham rTMS With Conventional Therapy
Change in Finger Tracking Test24.5 ± 25.2-13.8 ± 41.8
SecondaryChange in Motricity Index

Measures strength in finger pinch, elbow flexion and arm abduction. 0 No pinch movement. 11 Slight movement of finger or thumb. 19 Able to grip the cube, but not hold it against gravity. 22 Able to grip and hold the cube against gravity, but not against a weak pull by examiner. The weighted score based on the ordinal 6 point scale 26 Able to grip and hold the cube against a weak pull, but weaker than the other side. 33 Normal pinch grip. For shoulder and elbow scoring is: 0 No movement. 9 Palpable contraction in muscle, but no movement. 14 Visible movement, but not full range and not against gravity. 19 Full range of movement against gravity but not against resistance. 25 Full movement against resistance, but weaker than the other side. 33 Normal power. Maximum total score is 99, minimum is 0. Changes that are positive signify improved strength at postte

Time frame:
Measured at pretest (day before treatments begin) and posttest (day following last treatment). Thus, 7 days of participation (1 pretest, 5 treatments, 1 posttest).
Reported as:
Mean · units on a scale
Change in Motricity Index
units on a scaleActive rTMS With Conventional TherapySham rTMS With Conventional Therapy
Change in Motricity Index4 ± 5.711 ± 0

Adverse events

Collected over 1 year. Non-serious events are listed at a 0% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Active rTMS With Conventional Therapy—0/2 (0%)0/2 (0%)
Sham rTMS With Conventional Therapy—0/2 (0%)0/2 (0%)

Baseline characteristics

Four people with acute stroke were enrolled. All four completed the study

Age, Categorical
Age, Categorical(Participants)Active rTMS With Conventional TherapySham rTMS With Conventional TherapyTotal
<=18 years000
Between 18 and 65 years112
>=65 years112
Age, Continuous
Age, Continuous(years)Active rTMS With Conventional TherapySham rTMS With Conventional TherapyTotal
Mean73.5 ± 19.152.5 ± 23.363.0 ± 21.2
Sex: Female, Male
Sex: Female, Male(Participants)Active rTMS With Conventional TherapySham rTMS With Conventional TherapyTotal
Female101
Male123
Ethnicity (NIH/OMB)
Ethnicity (NIH/OMB)(Participants)Active rTMS With Conventional TherapySham rTMS With Conventional TherapyTotal
Hispanic or Latino000
Not Hispanic or Latino224
Unknown or Not Reported000
Race (NIH/OMB)
Race (NIH/OMB)(Participants)Active rTMS With Conventional TherapySham rTMS With Conventional TherapyTotal
American Indian or Alaska Native000
Asian000
Native Hawaiian or Other Pacific Islander000
Black or African American000
White224
More than one race000
Unknown or Not Reported000
Region of Enrollment
Region of Enrollment(participants)Active rTMS With Conventional TherapySham rTMS With Conventional TherapyTotal
United States224
08

Study locations

1 site
  • Courage Kenny Rehabilitation Institute
    Minneapolis, Minnesota 55407, United States
09

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

10

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on May 25, 2017, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
11

Registry details

Key details

Study ID
NCT01922986
Lead sponsor
University of Minnesota
Responsible party
Sponsor
First posted
Aug 14, 2013
Start date
Sep 2013
Primary completion
Mar 2015
Completion
Mar 2015
Results posted
Apr 4, 2017
Last update
May 25, 2017

Study contacts

James R Carey, PhD, PT
principal investigator · University of Minnesota

Oversight

Data monitoring committee
Yes
View the source record on ClinicalTrials.gov ↗

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