Suchbegriffe: SPECTROSCOPY, NEAR-INFRARED - , . Treffer: 79
Wolfsberger, CH; Bruckner, M; Schwaberger, B; Mileder, LP; Urlesberger, B; Pichler, G
Impact of Carbon Dioxide on Cerebral Oxygenation and Vital Parameters in Stable Preterm and Term Infants Immediately after Birth.
Neonatology. 2022; 119(1):10-17
Doi: 10.1159/000519636
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Argüelles-Delgado, P; Schwarz, G
Letter to the Editor about the article published in Clinical Oral Investigations titled "Effect of hyperextension of the neck (rose position) on cerebral blood oxygenation in patients who underwent cleft palate reconstructive surgery: prospective cohort study using near-infrared spectroscopy" (Smarius BJA, Breugem CC, Boasson MP, Alikhil J, van Norden S, Mink van der Molen AB, de Graaff JG. Clin Oral Invest, https://doi.org/10.1007/s00784-019-03157-8).
Clin Oral Investig. 2021; 25(1):371-373
Doi: 10.1007/s00784-020-03636-3
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Bresesti, I; Avian, A; Bruckner, M; Binder-Heschl, C; Schwaberger, B; Baik-Schneditz, N; Schmölzer, G; Pichler, G; Urlesberger, B
Impact of bradycardia and hypoxemia on oxygenation in preterm infants requiring respiratory support at birth.
Resuscitation. 2021; 164:62-69
Doi: 10.1016/j.resuscitation.2021.05.004
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Irschik, S; Stelzl, S; Golej, J; Schlager, G; Zimpfer, D; Herbst, C; Michel-Behnke, I; Kitzmüller, E; Base, E; Hermon, M
Direct postoperative protein S100B and NIRS monitoring in infants after pediatric cardiac surgery enrich early mortality assessment at the PICU.
Heart Lung. 2020; 49(6):731-736
Doi: 10.1016/j.hrtlng.2020.08.014
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Argüelles-Delgado, PM; Dworschak, M
Near-infrared spectroscopy: A measurement tool for 'vegetables'?
Eur J Anaesthesiol. 2019; 36(6):469-469
Doi: 10.1097/EJA.0000000000001006
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Hansen, ML; Pellicer, A; Gluud, C; Dempsey, E; Mintzer, J; Hyttel-Sorensen, S; Heuchan, AM; Hagmann, C; Dimitriou, G; Pichler, G; Naulaers, G; Cheng, G; Vilan, A; Tkaczyk, J; Kreutzer, KB; Fumagalli, M; Claris, O; Fredly, S; Szczapa, T; Lange, T; Jakobsen, JC; Greisen, G
Detailed statistical analysis plan for the SafeBoosC III trial: a multinational randomised clinical trial assessing treatment guided by cerebral oxygenation monitoring versus treatment as usual in extremely preterm infants.
Trials. 2019; 20(1):746
Doi: 10.1186/s13063-019-3756-y
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Hansen, ML; Pellicer, A; Gluud, C; Dempsey, E; Mintzer, J; Hyttel-Sørensen, S; Heuchan, AM; Hagmann, C; Ergenekon, E; Dimitriou, G; Pichler, G; Naulaers, G; Cheng, G; Guimarães, H; Tkaczyk, J; Kreutzer, KB; Fumagalli, M; Claris, O; Lemmers, P; Fredly, S; Szczapa, T; Austin, T; Jakobsen, JC; Greisen, G
Cerebral near-infrared spectroscopy monitoring versus treatment as usual for extremely preterm infants: a protocol for the SafeBoosC randomised clinical phase III trial.
Trials. 2019; 20(1):811
Doi: 10.1186/s13063-019-3955-6
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Heschl, S; Bruchelt, W; Binder-Heschl, C; Urlesberger, B
Near-infrared spectroscopy measures extinction of light by chromophores.
Eur J Anaesthesiol. 2019; 36(6):468-469
Doi: 10.1097/EJA.0000000000001010
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Pichler, G; Baumgartner, S; Biermayr, M; Dempsey, E; Fuchs, H; Goos, TG; Lista, G; Lorenz, L; Karpinski, L; Mitra, S; Kornhauser-Cerar, L; Avian, A; Urlesberger, B; Schmölzer, GM
Cerebral regional tissue Oxygen Saturation to Guide Oxygen Delivery in preterm neonates during immediate transition after birth (COSGOD III): an investigator-initiated, randomized, multi-center, multi-national, clinical trial on additional cerebral tissue oxygen saturation monitoring combined with defined treatment guidelines versus standard monitoring and treatment as usual in premature infants during immediate transition: study protocol for a randomized controlled trial.
Trials. 2019; 20(1):178-178
Doi: 10.1186/s13063-019-3258-y
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Plomgaard, AM; Alderliesten, T; van, Bel, F; Benders, M; Claris, O; Cordeiro, M; Dempsey, E; Fumagalli, M; Gluud, C; Hyttel-Sorensen, S; Lemmers, P; Pellicer, A; Pichler, G; Greisen, G
No neurodevelopmental benefit of cerebral oximetry in the first randomised trial (SafeBoosC II) in preterm infants during the first days of life.
Acta Paediatr. 2019; 108(2):275-281
Doi: 10.1111/apa.14463
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Matterberger, C; Baik-Schneditz, N; Schwaberger, B; Schmölzer, GM; Mileder, L; Pichler-Stachl, E; Urlesberger, B; Pichler, G
Blood Glucose and Cerebral Tissue Oxygenation Immediately after Birth-An Observational Study.
J Pediatr. 2018; 200:19-23
Doi: 10.1016/j.jpeds.2018.05.008
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Baik, N; Urlesberger, B; Schwaberger, B; Avian, A; Mileder, L; Schmölzer, GM; Pichler, G
Blood Pressure during the Immediate Neonatal Transition: Is the Mean Arterial Blood Pressure Relevant for the Cerebral Regional Oxygenation?
Neonatology. 2017; 112(2):97-102
Doi: 10.1159/000455965
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Goeral, K; Urlesberger, B; Giordano, V; Kasprian, G; Wagner, M; Schmidt, L; Berger, A; Klebermass-Schrehof, K; Olischar, M
Prediction of Outcome in Neonates with Hypoxic-Ischemic Encephalopathy II: Role of Amplitude-Integrated Electroencephalography and Cerebral Oxygen Saturation Measured by Near-Infrared Spectroscopy.
Neonatology. 2017; 112(3):193-202
Doi: 10.1159/000468976
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Pansy, J; Baik, N; Schwaberger, B; Scheuchenegger, A; Pichler-Stachl, E; Avian, A; Schmölzer, GM; Urlesberger, B; Pichler, G
Cerebral hypoxia during immediate transition after birth and short term neurological outcome.
Early Hum Dev. 2017; 110(7):13-15
Doi: 10.1016/j.earlhumdev.2017.04.009
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Plomgaard, AM; Alderliesten, T; Austin, T; van Bel, F; Benders, M; Claris, O; Dempsey, E; Fumagalli, M; Gluud, C; Hagmann, C; Hyttel-Sorensen, S; Lemmers, P; van Oeveren, W; Pellicer, A; Petersen, TH; Pichler, G; Winkel, P; Greisen, G
Early biomarkers of brain injury and cerebral hypo- and hyperoxia in the SafeBoosC II trial.
PLoS One. 2017; 12(3):e0173440-e0173440
Doi: 10.1371/journal.pone.0173440
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Baik, N; Urlesberger, B; Schwaberger, B; Schmölzer, GM; Köstenberger, M; Avian, A; Pichler, G
Foramen ovale (FO) - The underestimated sibling of ductus arteriosus (DA): Relevance during neonatal transition.
Early Hum Dev. 2016; 103(5):137-140
Doi: 10.1016/j.earlhumdev.2016.08.009
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Binder-Heschl, C; Urlesberger, B; Schwaberger, B; Koestenberger, M; Pichler, G
Borderline hypotension: how does it influence cerebral regional tissue oxygenation in preterm infants?
J Matern Fetal Neonatal Med. 2016; 29(14):2341-2346
Doi: 10.3109/14767058.2015.1085020
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Pichler, G; Urlesberger, B; Baik, N; Schwaberger, B; Binder-Heschl, C; Avian, A; Pansy, J; Cheung, PY; Schmölzer, GM
Cerebral Oxygen Saturation to Guide Oxygen Delivery in Preterm Neonates for the Immediate Transition after Birth: A 2-Center Randomized Controlled Pilot Feasibility Trial.
J Pediatr. 2016; 170(1):73-8.e1-73-8.e4
Doi: 10.1016/j.jpeds.2015.11.053
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Plomgaard, AM; van Oeveren, W; Petersen, TH; Alderliesten, T; Austin, T; van Bel, F; Benders, M; Claris, O; Dempsey, E; Franz, A; Fumagalli, M; Gluud, C; Hagmann, C; Hyttel-Sorensen, S; Lemmers, P; Pellicer, A; Pichler, G; Winkel, P; Greisen, G
The SafeBoosC II randomized trial: treatment guided by near-infrared spectroscopy reduces cerebral hypoxia without changing early biomarkers of brain injury.
Pediatr Res. 2016; 79(4):528-535
Doi: 10.1038/pr.2015.266
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Riera, J; Hyttel-Sorensen, S; Bravo, MC; Cabañas, F; López-Ortego, P; Sanchez, L; Ybarra, M; Dempsey, E; Greisen, G; Austin, T; Claris, O; Fumagalli, M; Gluud, C; Lemmers, P; Pichler, G; Plomgaard, AM; van Bel, F; Wolf, M; Pellicer, A
The SafeBoosC phase II clinical trial: an analysis of the interventions related with the oximeter readings.
Arch Dis Child Fetal Neonatal Ed. 2016; 101(4):F333-F338
Doi: 10.1136/archdischild-2015-308829
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Seule, M; Sikorski, C; Sakowitz, O; von Campe, G; Santos, E; Orakcioglu, B; Unterberg, A; Keller, E
Evaluation of a New Brain Tissue Probe for Intracranial Pressure, Temperature, and Cerebral Blood Flow Monitoring in Patients with Aneurysmal Subarachnoid Hemorrhage.
Neurocrit Care. 2016; 25(2):193-200
Doi: 10.1007/s12028-016-0284-4
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Tamussino, A; Urlesberger, B; Baik, N; Schwaberger, B; Binder-Heschl, C; Schmölzer, GM; Avian, A; Pichler, G
Low cerebral activity and cerebral oxygenation during immediate transition in term neonates-A prospective observational study.
Resuscitation. 2016; 103(12):49-53
Doi: 10.1016/j.resuscitation.2016.03.011
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Baik, N; Urlesberger, B; Schwaberger, B; Schmölzer, GM; Avian, A; Pichler, G
Cerebral haemorrhage in preterm neonates: does cerebral regional oxygen saturation during the immediate transition matter?
Arch Dis Child Fetal Neonatal Ed. 2015; 100(5):F422-F427
Doi: 10.1136/archdischild-2014-307590
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Baik, N; Urlesberger, B; Schwaberger, B; Schmölzer, GM; Mileder, L; Avian, A; Pichler, G
Reference Ranges for Cerebral Tissue Oxygen Saturation Index in Term Neonates during Immediate Neonatal Transition after Birth.
Neonatology. 2015; 108(4):283-286
Doi: 10.1159/000438450
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Ben Mohammadi, L; Klotzbuecher, T; Sigloch, S; Welzel, K; Goeddel, M; Pieber, TR; Schaupp, L
Clinical performance of a low cost near infrared sensor for continuous glucose monitoring applied with subcutaneous microdialysis.
Biomed Microdevices. 2015; 17(4):73-73
Doi: 10.1007/s10544-015-9983-4
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Höller, N; Urlesberger, B; Mileder, L; Baik, N; Schwaberger, B; Pichler, G
Peripheral Muscle Near-Infrared Spectroscopy in Neonates: Ready for Clinical Use? A Systematic Qualitative Review of the Literature.
Neonatology. 2015; 108(4):233-245
Doi: 10.1159/000433515
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Hyttel-Sorensen, S; Pellicer, A; Alderliesten, T; Austin, T; van Bel, F; Benders, M; Claris, O; Dempsey, E; Franz, AR; Fumagalli, M; Gluud, C; Grevstad, B; Hagmann, C; Lemmers, P; van Oeveren, W; Pichler, G; Plomgaard, AM; Riera, J; Sanchez, L; Winkel, P; Wolf, M; Greisen, G
Cerebral near infrared spectroscopy oximetry in extremely preterm infants: phase II randomised clinical trial.
BMJ. 2015; 350(8):g7635-g7635
Doi: 10.1136/bmj.g7635
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Norooz, F; Urlesberger, B; Giordano, V; Klebermasz-Schrehof, K; Weninger, M; Berger, A; Olischar, M
Decompressing posthaemorrhagic ventricular dilatation significantly improves regional cerebral oxygen saturation in preterm infants.
Acta Paediatr. 2015; 104(7):663-669
Doi: 10.1111/apa.12942
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Pichler, G; Cheung, PY; Tze-Fun, L; Li, ES; Schmölzer, GM
Is renal tissue oxygen desaturation during severe hypoxia underestimated? An observational study in term newborn piglets.
Nephrology (Carlton). 2015; 20(2):107-109
Doi: 10.1111/nep.12357
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Schwaberger, B; Pichler, G; Binder-Heschl, C; Baik, N; Avian, A; Urlesberger, B
Transitional Changes in Cerebral Blood Volume at Birth.
Neonatology. 2015; 108(4):253-258
Doi: 10.1159/000437347
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Ben Mohammadi, L; Klotzbuecher, T; Sigloch, S; Welzel, K; Göddel, M; Pieber, TR; Schaupp, L
In vivo evaluation of a chip based near infrared sensor for continuous glucose monitoring.
Biosens Bioelectron. 2014; 53(6):99-104
Doi: 10.1016/j.bios.2013.09.043
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Juric, S; Flis, V; Debevc, M; Holzinger, A; Zalik, B
Towards a low-cost mobile subcutaneous vein detection solution using near-infrared spectroscopy.
ScientificWorldJournal. 2014; 2014(Pt 9):365902-365902
Doi: 10.1155/2014/365902
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Kaiser, V; Bauernfeind, G; Kreilinger, A; Kaufmann, T; Kübler, A; Neuper, C; Müller-Putz, GR
Cortical effects of user training in a motor imagery based brain-computer interface measured by fNIRS and EEG.
Neuroimage. 2014; 85 Pt 1(7):432-444
Doi: 10.1016/j.neuroimage.2013.04.097
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Li, ES; Cheung, PY; Pichler, G; Aziz, K; Schmölzer, GM
Respiratory function and near infrared spectroscopy recording during cardiopulmonary resuscitation in an extremely preterm newborn.
Neonatology. 2014; 105(3):200-204
Doi: 10.1159/000357609
(- Case Report)
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Pichler, G; Cheung, PY; Aziz, K; Urlesberger, B; Schmölzer, GM
How to monitor the brain during immediate neonatal transition and resuscitation? A systematic qualitative review of the literature.
Neonatology. 2014; 105(3):205-210
Doi: 10.1159/000357162
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Schmitz, J; Pichler, G; Schwaberger, B; Urlesberger, B; Baik, N; Binder, C
Feasibility of long-term cerebral and peripheral regional tissue oxygen saturation measurements.
Physiol Meas. 2014; 35(7):1349-1355
Doi: 10.1088/0967-3334/35/7/1349
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Schwaberger, B; Pichler, G; Binder, C; Avian, A; Pocivalnik, M; Urlesberger, B
Even mild respiratory distress alters tissue oxygenation significantly in preterm infants during neonatal transition.
Physiol Meas. 2014; 35(10):2085-2099
Doi: 10.1088/0967-3334/35/10/2085
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Blaber, AP; Hinghofer-Szalkay, H; Goswami, N
Blood volume redistribution during hypovolemia.
Aviat Space Environ Med. 2013; 84(1):59-64
Doi: 10.3357/ASEM.3424.2013
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Delgado, AP; Deutschmann, H; Schwarz, G
Transcranial cerebral oxymetry in interventional neuroradiology. Sources of error in interpretation of measurement data].
Anaesthesist. 2013; 62(11):919-923
Doi: 10.1007/s00101-013-2245-z
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Hyttel-Sorensen, S; Austin, T; van Bel, F; Benders, M; Claris, O; Dempsey, E; Fumagalli, M; Greisen, G; Grevstad, B; Hagmann, C; Hellström-Westas, L; Lemmers, P; Lindschou, J; Naulaers, G; van Oeveren, W; Pellicer, A; Pichler, G; Roll, C; Skoog, M; Winkel, P; Wolf, M; Gluud, C
A phase II randomized clinical trial on cerebral near-infrared spectroscopy plus a treatment guideline versus treatment as usual for extremely preterm infants during the first three days of life (SafeBoosC): study protocol for a randomized controlled trial.
Trials. 2013; 14(6):120-120
Doi: 10.1186/1745-6215-14-120
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Hyttel-Sørensen, S; Austin, T; van Bel, F; Benders, M; Claris, O; Dempsey, EM; Fumagalli, M; Gluud, C; Hagmann, C; Hellström-Westas, L; Lemmers, P; Naulaers, G; van Oeveren, W; Pellicer, A; Pichler, G; Roll, C; Støy, LS; Wolf, M; Greisen, G
Clinical use of cerebral oximetry in extremely preterm infants is feasible.
Dan Med J. 2013; 60(1):A4533-A4533
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Pellicer, A; Greisen, G; Benders, M; Claris, O; Dempsey, E; Fumagalli, M; Gluud, C; Hagmann, C; Hellström-Westas, L; Hyttel-Sorensen, S; Lemmers, P; Naulaers, G; Pichler, G; Roll, C; van Bel, F; van Oeveren, W; Skoog, M; Wolf, M; Austin, T
The SafeBoosC phase II randomised clinical trial: a treatment guideline for targeted near-infrared-derived cerebral tissue oxygenation versus standard treatment in extremely preterm infants.
Neonatology. 2013; 104(3):171-178
Doi: 10.1159/000351346
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Pichler, G; Avian, A; Binder, C; Zotter, H; Schmölzer, GM; Morris, N; Müller, W; Urlesberger, B
aEEG and NIRS during transition and resuscitation after birth: promising additional tools; an observational study.
Resuscitation. 2013; 84(7):974-978
Doi: 10.1016/j.resuscitation.2012.12.025
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Pichler, G; Binder, C; Avian, A; Beckenbach, E; Schmölzer, GM; Urlesberger, B
Reference ranges for regional cerebral tissue oxygen saturation and fractional oxygen extraction in neonates during immediate transition after birth.
J Pediatr. 2013; 163(6):1558-1563
Doi: 10.1016/j.jpeds.2013.07.007
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Smith, C; Goswami, N; Robinson, R; von der Wiesche, M; Schneider, S
The relationship between brain cortical activity and brain oxygenation in the prefrontal cortex during hypergravity exposure.
J Appl Physiol (1985). 2013; 114(7):905-910
Doi: 10.1152/japplphysiol.01426.2012
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Urlesberger, B; Brandner, A; Pocivalnik, M; Koestenberger, M; Morris, N; Pichler, G
A left-to-right shunt via the ductus arteriosus is associated with increased regional cerebral oxygen saturation during neonatal transition.
Neonatology. 2013; 103(4):259-263
Doi: 10.1159/000346384
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Morris, N; Pichler, G; Pocivalnik, M; Brandner, A; Müller, W; Urlesberger, B
Cerebral regional oxygen saturation (crSO2): are different sensors comparable?
Paediatr Anaesth. 2012; 22(11):1132-1134
Doi: 10.1111/j.1460-9592.2012.03895.x
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Pichler, G; Pocivalnik, M; Riedl, R; Pichler-Stachl, E; Zotter, H; Müller, W; Urlesberger, B
C reactive protein: impact on peripheral tissue oxygenation and perfusion in neonates.
Arch Dis Child Fetal Neonatal Ed. 2012; 97(6):F444-F448
Doi: 10.1136/archdischild-2011-300578
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Pfurtscheller, G; Klobassa, DS; Altstätter, C; Bauernfeind, G; Neuper, C
About the stability of phase shifts between slow oscillations around 0.1 Hz in cardiovascular and cerebral systems.
IEEE Trans Biomed Eng. 2011; 58(7):2064-2071
Doi: 10.1109/TBME.2011.2134851
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Pichler, G; Pocivalnik, M; Riedl, R; Pichler-Stachl, E; Morris, N; Zotter, H; Müller, W; Urlesberger, B
"Multi-associations": predisposed to misinterpretation of peripheral tissue oxygenation and circulation in neonates.
Physiol Meas. 2011; 32(8):1025-1034
Doi: 10.1088/0967-3334/32/8/003
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