Mark Wefers Bettink

Chapter 9 180 29. Reiss I, Schaible T, Van Den Hout L, Capolupo I, Allegaert K, Van Heijst A, Gorett Silva M, Greenough A, Tibboel D. Standardized postnatal management of infants with congenital diaphragmatic hernia in Europe: The CDH EURO consortium consensus. Neonatology (2010) 98 :354–364. doi:10.1159/000320622 30. Snoek KG, Reiss IKM, Greenough A, Capolupo I, Urlesberger B, Wessel L, Storme L, Deprest J, Schaible T, Van Heijst A, et al. Standardized postnatal management of infants with congenital diaphragmatic hernia in Europe: The CDH EURO Consortium Consensus - 2015 Update. Neonatology (2016) 110 :66-74 doi:10.1159/000444210 31. van Hoorn CE, Costerus SA, Lau J, Wijnen RMH, Vlot J, Tibboel D, de Graaff JC. Perioperative management of esophageal atresia/tracheo-esophageal fistula: An analysis of data of 101 consecutive patients. Paediatr Anaesth (2019 ) 29 :1024-1032 doi:10.1111/pan.13711 32. Römers LHL, Bakker C, Dollée N, Hoeks SE, Lima A, Raat NJH, Johannes T, Stolker RJ, Mik EG. Cutaneous Mitochondrial P o 2, but Not Tissue Oxygen Saturation, Is an Early Indicator of the Physiologic Limit of Hemodilution in the Pig. Anesthesiology (2016) 125 :124-32 doi:10.1097/ ALN.0000000000001156 33. Harms FA, Bodmer SIA, Raat NJH, Mik EG. Non-invasivemonitoring of mitochondrial oxygenation and respiration in critical illness using a novel technique. Crit Care (2015) 19 :343 doi:10.1186/ s13054-015-1056-9 34. Balestra GM, Mik EG, Eerbeek O, Specht PAC, van der Laarse WJ, Zuurbier CJ. Increased in vivo mitochondrial oxygenation with right ventricular failure induced by pulmonary arterial hypertension: Mitochondrial inhibition as driver of cardiac failure? Respir Res (2015) 16 :6 doi:10.1186/s12931-015-0178-6 35. van Dijk LJD, Ubbink R, Terlouw LG, van Noord D, Mik EG, Bruno MJ. Oxygen-dependent delayed fluorescence of protoporphyrin IX measured in the stomach and duodenum during upper gastrointestinal endoscopy. J Biophotonics (2019) 12 :e201900025 doi:10.1002/jbio.201900025 36. Jones DP, Mason HS. Gradients of O2 concentration in hepatocytes. J Biol Chem (1978) 253: 4874- 4880 . 37. LONGMUIR IS. Respiration rate of rat-liver cells at low oxygen concentrations. Biochem J (1957) 65 : 378–382 doi:10.1042/bj0650378 38. Wilson DF, Rumsey WL, Green TJ, Vanderkooi JM. The oxygen dependence of mitochondrial oxidative phosphorylation measured by a new optical method for measuring oxygen concentration. J Biol Chem (1988) 263 :2712–2718. Available at: http://www.ncbi.nlm.nih.gov/ pubmed/2830260 39. Ince C. The microcirculation is the motor of sepsis. Crit Care (2005) 9 :S13–S19. doi:10.1186/ cc3753 40. Ince C, Mik EG. Microcirculatory and mitochondrial hypoxia in sepsis, shock, and resuscitation. J Appl Physiol (2016) 120 :226-35 doi:10.1152/japplphysiol.00298.2015 41. Ince C. Hemodynamic coherence and the rationale for monitoring the microcirculation. Crit Care (2015) 19 :S8 doi:10.1186/cc14726 42. Neu C, Baumbach P, Plooij AK, Skitek K, Götze J, von Loeffelholz C, Schmidt-Winter C, Coldewey SM. Non-invasive Assessment of Mitochondrial Oxygen Metabolism in the Critically Ill Patient Using the Protoporphyrin IX-Triplet State Lifetime Technique—A Feasibility Study. Front Immunol (2020) 11:757 d oi:10.3389/fimmu.2020.00757 43. Keeley TP, Mann GE. Defining physiological normoxia for improved translation of cell physiology to animal models and humans. Physiol Rev (201 9) 99 :161-234 doi:10.1152/physrev.00041.2017

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