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| ID | Type | Description | Link |
|---|---|---|---|
| NHSi2005-iCPAPAPNEASTROKE-001 | |||
| UKM-SL-70234 |
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| Name | Class |
|---|---|
| New Health Sciences, Inc. | INDUSTRY |
| Rubel GmbH, Heiligenhaus, Germany | UNKNOWN |
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More than half of all stroke patients have sleep apneas in the acute phase after stroke. Sleep apneas may be associated with higher degrees of disability three months after stroke due to numerous factors associated with sleep apneas such as persistent hypertension, cardiac arrhythmias, and clotting disorders.
Non-invasive CPAP (continuous positive airway pressure)-therapy may reverse a number of these effects very shortly after initiation. The aim of the study is to test the feasibility of early non-invasive CPAP treatment starting in the first night after stroke onset, and to test its efficacy in a randomized clinical trial.
50 patients with acute ischemic stroke will be enrolled and randomly assigned to standard care PLUS CPAP treatment or standard care only. All patients randomized to the intervention group will receive CPAP therapy for the first three nights after stroke. In the fourth night, a cardiorespiratory polygraphy will be performed in patients and controls. Patients assigned to the intervention group with a respiratory distress index > 10/h will be treated further on. On admission, day 4, and day 10 after stroke, diffusion weighted MRI imaging will be performed to determine the size of the infarction. The NIHSS score will be used to assess clinical short-term outcome on day 4 and day 10. After three months, the outcome will be determined using the modified Rankin scale.
As CPAP therapy may be more laborious for the provider, the additional work-load will be documented using pre-specified scales.
Primary hypothesis of the study is, that CPAP therapy is feasible in acute stroke patients and that the additional work load will not outweigh the benefits.
Secondary hypothesis is that patients assigned to the treatment group have smaller infarctions on MRI and less neurological deficits at 3 months after stroke.
Patients entering the study will be investigated by transcranial Doppler ultrasound in case they have sufficient temporal bone windows for insonation and no stenosis or occlusions of major brain supplying arteries by the time of investigation that disturb the intracerebral blood flow.
All intracranial arteries will be assessed before treatment, after treatment and on day 8 after the insult.
Screen shots will be taken and will be analysed by dynamic vascular ultrasound (DVA), a new software algorithm developed by NHSi, to investigate microcirculatory information from the flow spectra of the major intracranial arteries.
The data from this post-hoc analysis are compared with the data of the polysomnography and with treatment.
Primary hypothesis in this substudy is that DVA reliably identifies patients with sleep apnea on days one and four after stroke. Secondary hypothesis is that DVA can distinguish between treated patients and controls.
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| Label | Type | Description | Intervention Names |
|---|---|---|---|
| A | Experimental | treatment with three nights of CPAP ventilation starting the first night of admission |
|
| B | No Intervention | usual Stroke Unit care |
|
| Name | Type | Description | Arm Group Labels | Other Names |
|---|---|---|---|---|
| non-invasive continuous positive airway pressure ventilation | Device |
| ||
| CPAP-treatment |
| Measure | Description | Time Frame |
|---|---|---|
| Primary endpoint is to test the feasibility of early non-invasive CPAP ventilation in acute stroke patients |
| Measure | Description | Time Frame |
|---|---|---|
| Size of brain infarction on diffusion weighted MRI imaging at day 10 after symptom onset | ||
| Disability measured by the modified Rankin scale after three months |
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Inclusion criteria:
Exclusion criteria:
for the ultrasound sub-study
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| Name | Affiliation | Role |
|---|---|---|
| Darius G Nabavi, MD | University Hospital Muenster | Principal Investigator |
| Facility | Status | City | State | ZIP | Country | Contacts |
|---|---|---|---|---|---|---|
| University_Hospital_Muenster | Münster | 48129 | Germany |
| PubMed Identifier | Type | Citation | Retractions |
|---|---|---|---|
| 12154259 | Background | Turkington PM, Bamford J, Wanklyn P, Elliott MW. Prevalence and predictors of upper airway obstruction in the first 24 hours after acute stroke. Stroke. 2002 Aug;33(8):2037-42. doi: 10.1161/01.str.0000023576.94311.27. | |
| 9303023 | Background | Bassetti C, Aldrich MS, Quint D. Sleep-disordered breathing in patients with acute supra- and infratentorial strokes. A prospective study of 39 patients. Stroke. 1997 Sep;28(9):1765-72. doi: 10.1161/01.str.28.9.1765. |
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| ID | Term |
|---|---|
| D020520 | Brain Infarction |
| D000083242 | Ischemic Stroke |
| ID | Term |
|---|---|
| D002545 | Brain Ischemia |
| D002561 | Cerebrovascular Disorders |
| D001927 | Brain Diseases |
| D002493 | Central Nervous System Diseases |
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| ID | Term |
|---|---|
| D045422 | Continuous Positive Airway Pressure |
| ID | Term |
|---|---|
| D011175 | Positive-Pressure Respiration |
| D012121 | Respiration, Artificial |
| D058109 | Airway Management |
| D013812 | Therapeutics |
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| Device |
night time CPAP-mask ventilation |
|
| 11914407 | Background | Iranzo A, Santamaria J, Berenguer J, Sanchez M, Chamorro A. Prevalence and clinical importance of sleep apnea in the first night after cerebral infarction. Neurology. 2002 Mar 26;58(6):911-6. doi: 10.1212/wnl.58.6.911. |
| 22198979 | Derived | Minnerup J, Ritter MA, Wersching H, Kemmling A, Okegwo A, Schmidt A, Schilling M, Ringelstein EB, Schabitz WR, Young P, Dziewas R. Continuous positive airway pressure ventilation for acute ischemic stroke: a randomized feasibility study. Stroke. 2012 Apr;43(4):1137-9. doi: 10.1161/STROKEAHA.111.637611. Epub 2011 Dec 22. |
| D009422 | Nervous System Diseases |
| D020521 | Stroke |
| D014652 | Vascular Diseases |
| D002318 | Cardiovascular Diseases |
| D007238 | Infarction |
| D007511 | Ischemia |
| D010335 | Pathologic Processes |
| D013568 | Pathological Conditions, Signs and Symptoms |
| D009336 | Necrosis |
| D012138 |
| Respiratory Therapy |