Literature DB >> 21705904

Cerebral blood flow and cerebrovascular autoregulation in a swine model of pediatric cardiac arrest and hypothermia.

Jennifer K Lee1, Ken M Brady, Jennifer O Mytar, Kathleen K Kibler, Erin L Carter, Karen G Hirsch, Charles W Hogue, Ronald B Easley, Lori C Jordan, Peter Smielewski, Marek Czosnyka, Donald H Shaffner, Raymond C Koehler.   

Abstract

OBJECTIVE: Knowledge remains limited regarding cerebral blood flow autoregulation after cardiac arrest and during postresuscitation hypothermia. We determined the relationship of cerebral blood flow to cerebral perfusion pressure in a swine model of pediatric hypoxic-asphyxic cardiac arrest during normothermia and hypothermia and tested novel measures of autoregulation derived from near-infrared spectroscopy.
DESIGN: Prospective, balanced animal study.
SETTING: Basic physiology laboratory at an academic institution.
SUBJECTS: Eighty-four neonatal swine.
INTERVENTIONS: Piglets underwent hypoxic-asphyxic cardiac arrest or sham surgery and recovered for 2 hrs with normothermia followed by 4 hrs of either moderate hypothermia or normothermia. In half of the groups, blood pressure was slowly decreased through inflation of a balloon catheter in the inferior vena cava to identify the lower limit of cerebral autoregulation at 6 hrs postresuscitation. In the remaining groups, blood pressure was gradually increased by inflation of a balloon catheter in the aorta to determine the autoregulatory response to hypertension. Measures of autoregulation obtained from standard laser-Doppler flowmetry and indices derived from near-infrared spectroscopy were compared.
MEASUREMENTS AND MAIN RESULTS: Laser-Doppler flux was lower in postarrest animals compared to sham-operated controls during the 2-hr normothermic period after resuscitation. During the subsequent 4-hr recovery, hypothermia decreased laser-Doppler flux in both the sham surgery and postarrest groups. Autoregulation was intact during hypertension in all groups. With arterial hypotension, postarrest, hypothermic piglets had a significant decrease in the perfusion pressure lower limit of autoregulation compared to postarrest, normothermic piglets. The near-infrared spectroscopy-derived measures of autoregulation accurately detected loss of autoregulation during hypotension.
CONCLUSIONS: In a pediatric model of cardiac arrest and resuscitation, delayed induction of hypothermia decreased cerebral perfusion and decreased the lower limit of autoregulation. Metrics derived from noninvasive near-infrared spectroscopy accurately identified the lower limit of autoregulation during normothermia and hypothermia in piglets resuscitated from arrest.

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Year:  2011        PMID: 21705904      PMCID: PMC3178742          DOI: 10.1097/CCM.0b013e318223b910

Source DB:  PubMed          Journal:  Crit Care Med        ISSN: 0090-3493            Impact factor:   7.598


  31 in total

1.  Autoregulation of cerebral blood flow in patients resuscitated from cardiac arrest.

Authors:  C Sundgreen; F S Larsen; T M Herzog; G M Knudsen; S Boesgaard; J Aldershvile
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2.  Quantitative measurement of cerebral blood flow in a juvenile porcine model by depth-resolved near-infrared spectroscopy.

Authors:  Jonathan T Elliott; Mamadou Diop; Kenneth M Tichauer; Ting-Yim Lee; Keith St Lawrence
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3.  Upper limits of brain blood flow autoregulation in stable infants of various conceptional age.

Authors:  V T Ramaekers; P Casaer; H Daniels; G Marchal
Journal:  Early Hum Dev       Date:  1990-12       Impact factor: 2.079

4.  Cerebrovascular reactivity measured by near-infrared spectroscopy.

Authors:  Jennifer K Lee; Kathleen K Kibler; Paul B Benni; R Blaine Easley; Marek Czosnyka; Peter Smielewski; Raymond C Koehler; Donald H Shaffner; Ken M Brady
Journal:  Stroke       Date:  2009-03-12       Impact factor: 7.914

5.  Patterns of brain injury in term neonatal encephalopathy.

Authors:  Steven P Miller; Vijay Ramaswamy; David Michelson; A James Barkovich; Barbara Holshouser; Nathaniel Wycliffe; David V Glidden; Douglas Deming; J Colin Partridge; Yvonne W Wu; Stephen Ashwal; Donna M Ferriero
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6.  Autoregulation of cerebral blood flow in the preterm fetal lamb.

Authors:  L A Papile; A M Rudolph; M A Heymann
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7.  Cerebrovascular autoregulation during fetal development in sheep.

Authors:  S Helou; R C Koehler; C A Gleason; M D Jones; R J Traystman
Journal:  Am J Physiol       Date:  1994-03

8.  In-hospital versus out-of-hospital pediatric cardiac arrest: a multicenter cohort study.

Authors:  Frank W Moler; Kathleen Meert; Amy E Donaldson; Vinay Nadkarni; Richard J Brilli; Heidi J Dalton; Robert S B Clark; Donald H Shaffner; Charles L Schleien; Kimberly Statler; Kelly S Tieves; Richard Hackbarth; Robert Pretzlaff; Elise W van der Jagt; Fiona Levy; Lynn Hernan; Faye S Silverstein; J Michael Dean
Journal:  Crit Care Med       Date:  2009-07       Impact factor: 7.598

9.  Autoregulation of cerebral blood flow: influence of local brain development and postnatal age.

Authors:  U I Tuor; D Grewal
Journal:  Am J Physiol       Date:  1994-12

10.  Dynamic and static cerebral autoregulation during isoflurane, desflurane, and propofol anesthesia.

Authors:  S Strebel; A M Lam; B Matta; T S Mayberg; R Aaslid; D W Newell
Journal:  Anesthesiology       Date:  1995-07       Impact factor: 7.892

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  44 in total

1.  Additive Neuroprotection of a 20-HETE Inhibitor with Delayed Therapeutic Hypothermia after Hypoxia-Ischemia in Neonatal Piglets.

Authors:  Junchao Zhu; Bing Wang; Jeong-Hoo Lee; Jillian S Armstrong; Ewa Kulikowicz; Utpal S Bhalala; Lee J Martin; Raymond C Koehler; Zeng-Jin Yang
Journal:  Dev Neurosci       Date:  2015-02-25       Impact factor: 2.984

2.  Noninvasive autoregulation monitoring in a swine model of pediatric cardiac arrest.

Authors:  Jennifer K Lee; Zeng-Jin Yang; Bing Wang; Abby C Larson; Jessica L Jamrogowicz; Ewa Kulikowicz; Kathleen K Kibler; Jennifer O Mytar; Erin L Carter; Hillary T Burman; Ken M Brady; Peter Smielewski; Marek Czosnyka; Raymond C Koehler; Donald H Shaffner
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Review 3.  Congenital cardiac anomalies and white matter injury.

Authors:  Paul D Morton; Nobuyuki Ishibashi; Richard A Jonas; Vittorio Gallo
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4.  Continuous monitoring of cerebrovascular reactivity through pulse transit time and intracranial pressure.

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Review 5.  Resuscitating the Globally Ischemic Brain: TTM and Beyond.

Authors:  Melika Hosseini; Robert H Wilson; Christian Crouzet; Arya Amirhekmat; Kevin S Wei; Yama Akbari
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6.  Effect of Body Temperature on Cerebral Autoregulation in Acutely Comatose Neurocritically Ill Patients.

Authors:  Krishma Adatia; Romergryko G Geocadin; Ryan Healy; Wendy Ziai; Luciano Ponce-Mejia; Mirinda Anderson-White; Dhaval Shah; Batya R Radzik; Caitlin Palmisano; Charles W Hogue; Charles Brown; Lucia Rivera-Lara
Journal:  Crit Care Med       Date:  2018-08       Impact factor: 7.598

7.  Cerebral Autoregulation Real-Time Monitoring.

Authors:  Adi Tsalach; Eliahu Ratner; Stas Lokshin; Zmira Silman; Ilan Breskin; Nahum Budin; Moshe Kamar
Journal:  PLoS One       Date:  2016-08-29       Impact factor: 3.240

8.  Hypothermia and Rewarming Activate a Macroglial Unfolded Protein Response Independent of Hypoxic-Ischemic Brain Injury in Neonatal Piglets.

Authors:  Jennifer K Lee; Bing Wang; Michael Reyes; Jillian S Armstrong; Ewa Kulikowicz; Polan T Santos; Jeong-Hoo Lee; Raymond C Koehler; Lee J Martin
Journal:  Dev Neurosci       Date:  2016-09-14       Impact factor: 2.984

Review 9.  The Anesthesiologist's Role in Treating Abusive Head Trauma.

Authors:  Jennifer K Lee; Ken M Brady; Nina Deutsch
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10.  Effect of carotid revascularization on cerebral autoregulation in combined cardiac surgery†.

Authors:  Daijiro Hori; Masahiro Ono; Hideo Adachi; Charles W Hogue
Journal:  Eur J Cardiothorac Surg       Date:  2015-02-01       Impact factor: 4.191

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