Microcirculation Clinical Trial
Official title:
Evaluation of Cerebral Microcirculation Using Non-invasive Contrast-enhanced Ultrasound and Microbubbles Sonovue Administration After Clinical Cardiorespiratory Arrest
Brain microcirculation alterations may be involved in comatose patients and non-survivors after cardiorespiratory arrest. For a three day-period, we investigate brain microcirculation using contrast-enhanced ultrasound with contrast Sonovue injection in patients with successful resuscitation after out-hospital or in-hospital cardiorespiratory arrest.
Status | Recruiting |
Enrollment | 100 |
Est. completion date | December 31, 2022 |
Est. primary completion date | December 31, 2022 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years to 85 Years |
Eligibility |
Inclusion Criteria: - ICU patients with successful resuscitation after out-hospital or in-hospital cardiorespiratory arrest Exclusion Criteria: - Younger than 18 years old - Pregnancy - Acute or history of neurological disorder: stroke, bleeding, trauma, post-neurosurgery, tumor, meningitis. - Severe dementia, psychiatric or neuromuscular disability - Untreated Acute coronary syndrome - Acute Respiratory Distress Syndrome (ARDS) with the ratio of arterial oxygen partial pressure (mmHg) to fractional inspired oxygen (PaO2/ FiO2) less than 150 - Severe systolic pulmonary hypertension above 90 mmHg - Advanced liver cirrhosis with hyperammonemia - Uremia > 200mmol/L - Acute drug intoxications with coma - Acute alcohol intoxication or withdrawal syndrome. - Advanced malign diseases. - History of allergy to the microbubble contrast SONOVUE. - Insufficient echogenicity to ultrasound and incomplete insonation of the intracerebral arteries and brain parenchyma. - Significant intracerebral and extracerebral arteries stenosis (= 70%) or vertebral artery hypoplasia (3mm). |
Country | Name | City | State |
---|---|---|---|
Belgium | Universitair ziekenhuis Brussel | Brussels |
Lead Sponsor | Collaborator |
---|---|
Universitair Ziekenhuis Brussel |
Belgium,
Geeraerts T, Merceron S, Benhamou D, Vigué B, Duranteau J. Non-invasive assessment of intracranial pressure using ocular sonography in neurocritical care patients. Intensive Care Med. 2008 Nov;34(11):2062-7. doi: 10.1007/s00134-008-1149-x. Epub 2008 May 29. — View Citation
Harrois A, Duranteau J. Contrast-enhanced ultrasound: a new vision of microcirculation in the intensive care unit. Crit Care. 2013 Aug 23;17(4):449. doi: 10.1186/cc12860. — View Citation
Piscaglia F, Nolsøe C, Dietrich CF, Cosgrove DO, Gilja OH, Bachmann Nielsen M, Albrecht T, Barozzi L, Bertolotto M, Catalano O, Claudon M, Clevert DA, Correas JM, D'Onofrio M, Drudi FM, Eyding J, Giovannini M, Hocke M, Ignee A, Jung EM, Klauser AS, Lassau N, Leen E, Mathis G, Saftoiu A, Seidel G, Sidhu PS, ter Haar G, Timmerman D, Weskott HP. The EFSUMB Guidelines and Recommendations on the Clinical Practice of Contrast Enhanced Ultrasound (CEUS): update 2011 on non-hepatic applications. Ultraschall Med. 2012 Feb;33(1):33-59. doi: 10.1055/s-0031-1281676. Epub 2011 Aug 26. — View Citation
Robba C, Goffi A, Geeraerts T, Cardim D, Via G, Czosnyka M, Park S, Sarwal A, Padayachy L, Rasulo F, Citerio G. Brain ultrasonography: methodology, basic and advanced principles and clinical applications. A narrative review. Intensive Care Med. 2019 Jul;45(7):913-927. doi: 10.1007/s00134-019-05610-4. Epub 2019 Apr 25. — View Citation
Seidel G, Meairs S. Ultrasound contrast agents in ischemic stroke. Cerebrovasc Dis. 2009;27 Suppl 2:25-39. doi: 10.1159/000203124. Epub 2009 Apr 16. Review. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Mean change of the Mean transit time from baseline (seconds) | Qualitative evaluation of brain microcirculation using the variables of the time-intensity curve after Sonovue administration: a prolonged of Mean transit time is expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Primary | Mean change of the Peak intensity from baseline (dB). | Qualitative evaluation of brain microcirculation using the variables of the time-intensity curve after Sonovue administration: a reduction of Peak intensity is expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Primary | Mean change of the time to Peak intensity from baseline (seconds). | Qualitative evaluation of brain microcirculation using the variables of the time-intensity curve after Sonovue administration: a reduction of the time to peak intensity is expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Primary | Mean change of the Area under the curve from baseline (percentage). | Qualitative evaluation of brain microcirculation using the variables of the time-intensity curve after Sonovue administration: a reduction of the area under the curve is expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Primary | Testing cerebral autoregulation: Transient Hyperemic test- Absence or presence from baseline | Absence of cerebral autoregulation is considered if there is no change in flow velocities of the middle cerebral arteries after short compression of the common carotid arteries occur comparing with the value prior to compression. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Primary | Mean change of the optic nerve sheath diameter from baseline (mm) | Qualitative estimation of intracranial pressure using ocular ultrasound to measure the optic nerve sheath diameter. Elevation of intracranial pressure with increase of this diameter above 0.55 mm is expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Secondary | Mean change of the mean velocities of the middle cerebral arteries from baseline (cm/second) | Qualitative evaluation of brain macrocirculation using brain ultrasound to measure the velocities of the middle cerebral arteries. Unchanged or elevation of these velocities are expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Secondary | Mean change of global cerebral blood flow from baseline (L/minute) | Qualitative evaluation of brain macrocirculation: using extracranial echo-color duplex to measure the velocities of both carotid and vertebral arteries to estimate global cerebral blood flow. Unchanged or elevation of cerebral blood flow is expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours | |
Secondary | Mean change of cardiac output from baseline (L/minute) | Qualitative evaluation of brain macrocirculation: using transthoracic echocardiography to estimate cardiac output. Unchanged or elevation of cardiac output is expected in comatose patients or non-survivors. | Comparison to baseline (24 hours after ICU admission) to the two other time points: at 48 hours and at 72 or 96 hours |
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