- ICH GCP
- US Clinical Trials Registry
- Klinisk forsøg NCT06711016
Multimodal neurologisk overvågningsstrategi efter modtagelse af ECPR (TDMCO-ECPR)
Cerebral perfusion og iltningsorienteret multimodal neurologisk overvågningsstrategi for patienter med refraktær hjertestop uden for hospitalet (OHCA)
Neurologiske skader er fortsat en vigtig årsag til morbiditet og dødelighed hos patienter med ECPR. På nuværende tidspunkt er resultaterne af tre prospektive randomiserede kontrollerede undersøgelser af ECPR inkonsistente, og det er uafgjort, om ECPR kan forbedre de neurologiske resultater hos patienter med refraktært hjertestop. Adskillige undersøgelser viste, at ikke-overlevere af ekstrakorporal membraniltning kan føre til akut hjerneskade. Yderligere forskning med en systematisk neurologisk overvågning er nødvendig for at definere tidspunktet for akut hjerneskade hos patienter med ekstrakorporal membraniltning. Desuden er hjerneskade, der opstår under ekstrakorporal membraniltningsterapi, ikke let at opdage i tide på grund af brugen af analgetika, beroligende midler og muskelafslappende midler. Overraskende nok har der været lidt opmærksomhed på rollen som cerebral perfusion og iltning. Desuden er funktionerne i cerebrovaskulær patofysiologi og optimale håndteringsstrategier stadig vage.
Derfor kan multimodal neuromonitorering være et værdifuldt værktøj til at påvise hjerneskade hos patienter med ekstrakorporal membraniltning og give tidlig interventionsvejledning.
Formålet med denne undersøgelse er at teste, om multimodal neuromonitorering vil forbedre 30-dages overlevelse med et gunstigt neurologisk resultat hos ECPR-patienter med en refraktær OHCA.
Studieoversigt
Status
Betingelser
Intervention / Behandling
Undersøgelsestype
Tilmelding (Anslået)
Fase
- Ikke anvendelig
Kontakter og lokationer
Studiekontakt
- Navn: Xianfei Ji, MD. PhD
- Telefonnummer: 0086-531-82165072
- E-mail: qlyyjxf@163.com
Undersøgelse Kontakt Backup
- Navn: Feng Xu, MD. PhD
- Telefonnummer: 86-0531-82165675
- E-mail: xufengsdu@126.com
Studiesteder
-
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Shandong
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Jinan, Shandong, Kina, 250012
- Rekruttering
- Qilu hospital
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Kontakt:
- Xianfei Ji, Doctor
- Telefonnummer: +86118560087427
- E-mail: qlyyjxf@163.com
-
Kontakt:
- Xianfei Ji, Doctor
- E-mail: qlyyjxf@163.com
-
Jinan, Shandong, Kina, 250012
- Ikke rekrutterer endnu
- Qilu hospital
-
Kontakt:
- Xianfei Ji, MD, PhD
- Telefonnummer: 0086-531-82165072
- E-mail: qlyyjxf@163.com
-
Ledende efterforsker:
- Feng Xu, MD. PhD
-
-
Deltagelseskriterier
Berettigelseskriterier
Aldre berettiget til at studere
- Voksen
- Ældre voksen
Tager imod sunde frivillige
Beskrivelse
Inklusionskriterier:
- Formodes eller vides at være 18-75 år gammel
- Var vidne til OHCA
- Oprindeligt præsenteret med VF/VT eller som har fået et AED-chok
- Tilskuende HLR
- Ingen flowtid (tid fra CA til CPR) var mindre end 5 min
- Det lykkedes ikke at opnå vedvarende ROSC inden for 15 minutter
Ekskluderingskriterier:
- ROSC med vedvarende hæmodynamisk genopretning inden for 15 minutter
- Terminal hjertesvigt (NYHA III eller IV), alvorlig lungesygdom (COPD Gold III eller IV), onkologisk sygdom,
- Graviditet
- Bilateral femoral bypass-operation
- Pre arrest Cerebral Performance Category (CPC) score på 3 eller 4
- Multiple traumer (score for skadesgrad >15)
- Anslået, at kanylering vil starte 90 minutter efter den første anholdelse.
Studieplan
Hvordan er undersøgelsen tilrettelagt?
Design detaljer
- Primært formål: Behandling
- Tildeling: Randomiseret
- Interventionel model: Sekventiel tildeling
- Maskning: Enkelt
Våben og indgreb
Deltagergruppe / Arm |
Intervention / Behandling |
|---|---|
|
Aktiv komparator: control
Standard monitoring (including vital signs monitoring, blood gas analysis, and lactate levels) based on ECPR, along with continuous cerebral oxygenation monitoring (blinded to investigators, with no clinical interventions according to the results).
Clinical interventions are strictly guided by the 2023 American Heart Association (AHA) Guidelines for Advanced Cardiovascular Life Support in Adults (hereinafter referred to as the 2023 AHA Guidelines), including regulating ECMO blood flow, the dose of vasoactive drugs (MAP ≥65 mmHg), mechanical ventilation parameters (SaO₂ 94-98%, PaCO₂ 35-45 mmHg), sedation and analgesia plans.
Concurrently, staged target temperature management is implemented, involving maintaining the core temperature between 32 and 37.5°C within 24 hours, initiating controlled rewarming at a rate of ≤0.1°C/h after 24 hours, and continuing to prevent fever (core temperature ≤37.5°C) within 72 hours.
|
Clinical interventions are strictly guided by the 2023 American Heart Association (AHA) Guidelines for Advanced Cardiovascular Life Support in Adults (hereinafter referred to as the 2023 AHA Guidelines), including regulating ECMO blood flow, the dose of vasoactive drugs (MAP ≥65 mmHg), mechanical ventilation parameters (SaO₂ 94-98%, PaCO₂ 35-45 mmHg), sedation and analgesia plans.
Concurrently, staged target temperature management is implemented, involving maintaining the core temperature 32- 37.5°C within 24 hours, initiating controlled rewarming at a rate of ≤0.1°C/h after 24 hours, and continuing to prevent fever (core temperature ≤37.5°C) within 72 hours.
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Eksperimentel: Multimodal monitoring strategy
Experimental group: In addition to standard treatment in the control group, a multimodal monitoring system of brain function is integrated: continuous rSO2 monitoring with at least once-daily TCD for cerebral blood flow velocity monitoring, ONSD ultrasound measurement, and EEG monitoring.
Based on the cerebral oxygenation target-directed management strategies, intervention measures such as the ECMO blood flow, the dose of vasoactive drugs, mechanical ventilation parameters, target temperature management, sedation and analgesia plans, and antiepileptic drugs are dynamically adjusted to ultimately achieve the goal of brain oxygenation target value (rSO2) to 58%-68%.
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Use Vasoactive drugs(MAP 65-95mmHg); Use Cardiotonic agents(CO 3.0-4.5L/min);
Increase ECMO blood flow rate(Vm 55-85cm/s); Osmotic dehydration therapy(Na+ 140-150mmol/l;Osmotic pressure 280-320m0sm/(kg·H₂O);ONSD<5.5mm);
Antiepileptic therapy(EEG shows no seizures); Optimize sedation and analgesia; Target Temperature Management
Optimize ECMO blood flow rate( Vm 55-85cm/s); Osmotic dehydration therapy(Na+ 140-150mmol/l;Osmotic pressure 280-320m0sm/(kg·H₂O);ONSD<5.5mm);
Optimize sedation and analgesia; Antiepileptic therapy(EEG shows no seizures); Target Temperature Management
Antihypertensive therapy(MAP ≥65mmHg); Inhibiting myocardial contractility and controls ventricular rate(CO 2.5-3.0
L/min); Decrease ECMO blood flow rate(Vm 55-85cm/s); Osmotic dehydration therapy(Na+ 140-150mmol/l;Osmotic pressure 280-320m0sm/(kg·H₂O); Antiepileptic therapy(EEG shows no seizures); Optimize sedation and analgesia; Target Temperature Management
Clinical interventions are strictly guided by the 2023 American Heart Association (AHA) Guidelines for Advanced Cardiovascular Life Support in Adults (hereinafter referred to as the 2023 AHA Guidelines), including regulating ECMO blood flow, the dose of vasoactive drugs (MAP ≥65 mmHg), mechanical ventilation parameters (SaO₂ 94-98%, PaCO₂ 35-45 mmHg), sedation and analgesia plans.
Concurrently, staged target temperature management is implemented, involving maintaining the core temperature 32- 37.5°C within 24 hours, initiating controlled rewarming at a rate of ≤0.1°C/h after 24 hours, and continuing to prevent fever (core temperature ≤37.5°C) within 72 hours.
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Hvad måler undersøgelsen?
Primære resultatmål
Resultatmål |
Foranstaltningsbeskrivelse |
Tidsramme |
|---|---|---|
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Favorable neurological outcome (CPC scale 1-2) at 30 days
Tidsramme: 30 days
|
Cerebral Performance Category (CPC) score will be performed to evaluate the neurological status.
A CPC score of 1 or 2 indicates a favorable neurological status.
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30 days
|
Sekundære resultatmål
Resultatmål |
Foranstaltningsbeskrivelse |
Tidsramme |
|---|---|---|
|
Opholdets længde på intensivafdelingen
Tidsramme: 1 år
|
Er der forskel på liggetiden på intensivafdelingen mellem behandlingsgrupperne
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1 år
|
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Opholdets længde på hospitalet
Tidsramme: 1 år
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Er der forskel i liggetid på sygehuset mellem behandlingsgrupperne
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1 år
|
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Varighed af mekanisk ventilation
Tidsramme: 1 år
|
Er der forskel på varigheden af mekanisk ventilation mellem behandlingsgrupper
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1 år
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Survival to 30 days and 90 days;
Tidsramme: 30 days and 90 days
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Does multimodal neurological monitoring Strategy improve the survival rates of 30 days and 90 days after cardiac arrest
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30 days and 90 days
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Favorable neurological outcome (CPC 1-2) at 90 days;
Tidsramme: 90 days
|
Cerebral Performance Category (CPC) score will be performed to evaluate the neurological status.
A CPC score of 1 or 2 indicates a favorable neurological status
|
90 days
|
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Difference in NSE level between treatment groups
Tidsramme: 3 days
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Is there a difference in nerve damage Markers such as NSE at ROSC 24h, 48h, 72h between the treatment groups
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3 days
|
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ECMO-related complication rates such as hemorrhage, infarction, lower limb ischemic necrosis, etc.
Tidsramme: 1 year
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Is there a difference in ECMO-related complication between the treatment groups
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1 year
|
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ECMO duration
Tidsramme: 1 year
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Is there a difference in the duration of ECMO between treatment groups
|
1 year
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Samarbejdspartnere og efterforskere
Samarbejdspartnere
Efterforskere
- Studiestol: Yuguo Chen, MD. PhD, Qilu Hospital of Shandong University
Publikationer og nyttige links
Generelle publikationer
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- Nolan JP, Sandroni C, Bottiger BW, Cariou A, Cronberg T, Friberg H, Genbrugge C, Haywood K, Lilja G, Moulaert VRM, Nikolaou N, Olasveengen TM, Skrifvars MB, Taccone F, Soar J. European Resuscitation Council and European Society of Intensive Care Medicine guidelines 2021: post-resuscitation care. Intensive Care Med. 2021 Apr;47(4):369-421. doi: 10.1007/s00134-021-06368-4. Epub 2021 Mar 25.
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- Zheng J, Lv C, Zheng W, Zhang G, Tan H, Ma Y, Zhu Y, Li C, Han X, Yan S, Pan C, Zhang J, Hou Y, Wang C, Bian Y, Liu R, Cheng K, Ma J, Zheng Z, Song R, Wang M, Gu J, McNally B, Ong MEH, Chen Y, Xu F; BASIC-OHCA Coordinators and Investigators. Incidence, process of care, and outcomes of out-of-hospital cardiac arrest in China: a prospective study of the BASIC-OHCA registry. Lancet Public Health. 2023 Dec;8(12):e923-e932. doi: 10.1016/S2468-2667(23)00173-1. Epub 2023 Sep 16.
- Suverein MM, Delnoij TSR, Lorusso R, Brandon Bravo Bruinsma GJ, Otterspoor L, Elzo Kraemer CV, Vlaar APJ, van der Heijden JJ, Scholten E, den Uil C, Jansen T, van den Bogaard B, Kuijpers M, Lam KY, Montero Cabezas JM, Driessen AHG, Rittersma SZH, Heijnen BG, Dos Reis Miranda D, Bleeker G, de Metz J, Hermanides RS, Lopez Matta J, Eberl S, Donker DW, van Thiel RJ, Akin S, van Meer O, Henriques J, Bokhoven KC, Mandigers L, Bunge JJH, Bol ME, Winkens B, Essers B, Weerwind PW, Maessen JG, van de Poll MCG. Early Extracorporeal CPR for Refractory Out-of-Hospital Cardiac Arrest. N Engl J Med. 2023 Jan 26;388(4):299-309. doi: 10.1056/NEJMoa2204511.
- Green DW, Kunst G. Cerebral oximetry and its role in adult cardiac, non-cardiac surgery and resuscitation from cardiac arrest. Anaesthesia. 2017 Jan;72 Suppl 1:48-57. doi: 10.1111/anae.13740.
- Khanduja S, Kim J, Kang JK, Feng CY, Vogelsong MA, Geocadin RG, Whitman G, Cho SM. Hypoxic-Ischemic Brain Injury in ECMO: Pathophysiology, Neuromonitoring, and Therapeutic Opportunities. Cells. 2023 Jun 5;12(11):1546. doi: 10.3390/cells12111546.
- Tas J, Eleveld N, Borg M, Bos KDJ, Langermans AP, van Kuijk SMJ, van der Horst ICC, Elting JWJ, Aries MJH. Cerebral Autoregulation Assessment Using the Near Infrared Spectroscopy 'NIRS-Only' High Frequency Methodology in Critically Ill Patients: A Prospective Cross-Sectional Study. Cells. 2022 Jul 21;11(14):2254. doi: 10.3390/cells11142254.
- Lim SL, Myint MZ, Woo KL, Chee EYH, Hong CS, Beqiri E, Smielewski P, Ong MEH, Sharma VK. Multi-Modal Assessment of Cerebral Hemodynamics in Resuscitated Out-of-Hospital Cardiac Arrest Patients: A Case-Series. Life (Basel). 2024 Aug 26;14(9):1067. doi: 10.3390/life14091067.
- Wei G, Huang G, Zhu C, Jiang W, Hu B: Application of extracorporeal cardiopulmonary resuscitation in emergency refractory cardiac arrest and analysis of prognostic factors. Journal of Practical Medicine 2024, 40(24):3446-3451.
- Perman SM, Elmer J, Maciel CB, Uzendu A, May T, Mumma BE, Bartos JA, Rodriguez AJ, Kurz MC, Panchal AR, Rittenberger JC; American Heart Association. 2023 American Heart Association Focused Update on Adult Advanced Cardiovascular Life Support: An Update to the American Heart Association Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care. Circulation. 2024 Jan 30;149(5):e254-e273. doi: 10.1161/CIR.0000000000001194. Epub 2023 Dec 18.
- Li X, Mai C: Goal-oriented precision brain resuscitation: current status and prospects. Chinese Journal of Emergency Medicine 2024, 33(1):1-5.
- Benghanem S, Pruvost-Robieux E, Bouchereau E, Gavaret M, Cariou A. Prognostication after cardiac arrest: how EEG and evoked potentials may improve the challenge. Ann Intensive Care. 2022 Dec 8;12(1):111. doi: 10.1186/s13613-022-01083-9.
- Sandroni C, Cronberg T, Hofmeijer J. EEG monitoring after cardiac arrest. Intensive Care Med. 2022 Oct;48(10):1439-1442. doi: 10.1007/s00134-022-06697-y. Epub 2022 Apr 26. No abstract available.
- Calviello LA, Cardim D, Czosnyka M, Preller J, Smielewski P, Siyal A, Damian MS. Feasibility of non-invasive neuromonitoring in general intensive care patients using a multi-parameter transcranial Doppler approach. J Clin Monit Comput. 2022 Dec;36(6):1805-1815. doi: 10.1007/s10877-022-00829-x. Epub 2022 Mar 1.
- Rafi S, Tadie JM, Gacouin A, Leurent G, Bedossa M, Le Tulzo Y, Maamar A. Doppler sonography of cerebral blood flow for early prognostication after out-of-hospital cardiac arrest: DOTAC study. Resuscitation. 2019 Aug;141:188-194. doi: 10.1016/j.resuscitation.2019.05.024. Epub 2019 May 27.
- Lau VI, Jaidka A, Wiskar K, Packer N, Tang JE, Koenig S, Millington SJ, Arntfield RT. Better With Ultrasound: Transcranial Doppler. Chest. 2020 Jan;157(1):142-150. doi: 10.1016/j.chest.2019.08.2204. Epub 2019 Sep 30.
- Moerman A, De Hert S. Cerebral oximetry: the standard monitor of the future? Curr Opin Anaesthesiol. 2015 Dec;28(6):703-9. doi: 10.1097/ACO.0000000000000256.
- Perkins GD, Neumar R, Hsu CH, Hirsch KG, Aneman A, Becker LB, Couper K, Callaway CW, Hoedemaekers CWE, Lim SL, Meurer W, Olasveengen T, Sekhon MS, Skrifvars M, Soar J, Tsai MS, Vengamma B, Nolan JP; International Liaison Committee on Resuscitation. Improving Outcomes After Post-Cardiac Arrest Brain Injury: A Scientific Statement From the International Liaison Committee on Resuscitation. Circulation. 2024 Jun 27. doi: 10.1161/CIR.0000000000001219. Online ahead of print.
- Grasner JT, Herlitz J, Tjelmeland IBM, Wnent J, Masterson S, Lilja G, Bein B, Bottiger BW, Rosell-Ortiz F, Nolan JP, Bossaert L, Perkins GD. European Resuscitation Council Guidelines 2021: Epidemiology of cardiac arrest in Europe. Resuscitation. 2021 Apr;161:61-79. doi: 10.1016/j.resuscitation.2021.02.007. Epub 2021 Mar 24.
- Tas J, Czosnyka M, van der Horst ICC, Park S, van Heugten C, Sekhon M, Robba C, Menon DK, Zeiler FA, Aries MJH. Cerebral multimodality monitoring in adult neurocritical care patients with acute brain injury: A narrative review. Front Physiol. 2022 Dec 1;13:1071161. doi: 10.3389/fphys.2022.1071161. eCollection 2022.
- Belohlavek J, Smalcova J, Rob D, Franek O, Smid O, Pokorna M, Horak J, Mrazek V, Kovarnik T, Zemanek D, Kral A, Havranek S, Kavalkova P, Kompelentova L, Tomkova H, Mejstrik A, Valasek J, Peran D, Pekara J, Rulisek J, Balik M, Huptych M, Jarkovsky J, Malik J, Valerianova A, Mlejnsky F, Kolouch P, Havrankova P, Romportl D, Komarek A, Linhart A; Prague OHCA Study Group. Effect of Intra-arrest Transport, Extracorporeal Cardiopulmonary Resuscitation, and Immediate Invasive Assessment and Treatment on Functional Neurologic Outcome in Refractory Out-of-Hospital Cardiac Arrest: A Randomized Clinical Trial. JAMA. 2022 Feb 22;327(8):737-747. doi: 10.1001/jama.2022.1025.
- Ertl M, Weber S, Hammel G, Schroeder C, Krogias C. Transorbital Sonography for Early Prognostication of Hypoxic-Ischemic Encephalopathy After Cardiac Arrest. J Neuroimaging. 2018 Sep;28(5):542-548. doi: 10.1111/jon.12528. Epub 2018 Jun 8.
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Datoer for undersøgelser
Studer store datoer
Studiestart (Faktiske)
Primær færdiggørelse (Anslået)
Studieafslutning (Anslået)
Datoer for studieregistrering
Først indsendt
Først indsendt, der opfyldte QC-kriterier
Først opslået (Faktiske)
Opdateringer af undersøgelsesjournaler
Sidste opdatering sendt (Faktiske)
Sidste opdatering indsendt, der opfyldte kvalitetskontrolkriterier
Sidst verificeret
Mere information
Begreber relateret til denne undersøgelse
Nøgleord
Yderligere relevante MeSH-vilkår
- Hjerte-kar-sygdomme
- Hjertesygdomme
- Hjertestop
- Lægemidlers fysiologiske virkninger
- Anti-inflammatoriske midler
- Agenter fra det perifere nervesystem
- Antirheumatiske midler
- Centralnervesystemdepressiva
- Sensoriske systemagenter
- Analgetika, ikke-narkotisk
- Anti-inflammatoriske midler, ikke-steroide
- Analgetika
- Chrysarobin
- Hypnotika og beroligende midler
- Antikonvulsiva
Andre undersøgelses-id-numre
- KYLL-2025-09-586-1
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