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Abbreviations, glossary and references
141. Holtrop PC, Madison K, and Maisels MJ. A clinical trial of fiberoptic phototherapy vs conventional phototherapy. American
Journal of Diseases of Children 1992; 146:(2)235-7.
142. Pezzati M, Fusi F, Dani C et al. Changes in skin temperature of hyperbilirubinemic newborns under phototherapy: conventional
versus fiberoptic device. American Journal of Perinatology 2002; 19:(8)439-44.
143. Seidman DS, Moise J, Ergaz Z et al. A new blue light-emitting phototherapy device: a prospective randomized controlled study.
Journal of Pediatrics 2000; 136:(6)771-4.
144. Seidman DS, Moise J, Ergaz Z et al. A prospective randomized controlled study of phototherapy using blue and blue-green light-
emitting devices, and conventional halogen-quartz phototherapy. Journal of Perinatology 2003; 23:(2)123-7.
145. Morris BH, Oh W, Tyson JE et al. Aggressive vs. conservative phototherapy for infants with extremely low birth weight. New
England Journal of Medicine 2008; 359:(18)1885-96.
146. Valdes OS, Maurer HM, Shumway CN et al. Controlled clinical trial of phenobarbital and-or light in reducing neonatal
hyperbilirubinemia in a predominantly Negro population. Journal of Pediatrics 1971; 79:(6)1015-7.
147. Maurer HM, Shumway CN, Draper DA et al. Controlled trial comparing agar, intermittent phototherapy, and continuous
phototherapy for reducing neonatal hyperbilirubinemia. Journal of Pediatrics 1973; 82:(1)73-6.
148. Wu PY, Lim RC, Hodgman JE et al. Effect of phototherapy in preterm infants on growth in the neonatal period. Journal of
Pediatrics 1974; 85:(4)563-6.
149. Curtis-Cohen M, Stahl GE, Costarino AT et al. Randomized trial of prophylactic phototherapy in the infant with very low birth
weight. Journal of Pediatrics 1985; 107:(1)121-4.
150. Leite MD and Facchini FP. [Evaluation of two guidelines for the management of hyperbilirubinemia in newborn babies weighing
less than 2,000 g].[see comment]. [Portuguese]. Jornal de Pediatria 2004; 80:(4)285-90.
151. Holtrop PC, Ruedisueli K, and Maisels MJ. Double versus single phototherapy in low birth weight newborns. Pediatrics 1992;
90:(5)674-7.
152. Romagnoli C, Zecca E, Papacci P et al. Which phototherapy system is most effective in lowering serum bilirubin in very preterm
infants? Fetal Diagnosis and Therapy 2006; 21:(2)204-9.
153. Dani C, Bertini G, Martelli E et al. Effects of phototherapy on cerebral haemodynamics in preterm infants: is fibre-optic different
from conventional phototherapy? Developmental Medicine and Child Neurology 2004; 46:(2)114-8.
154. van Kaam AH, van Beek RH, Vergunst-van Keulen JG et al. Fibre optic versus conventional phototherapy for hyperbilirubinaemia
in preterm infants. European Journal of Pediatrics 1998; 157:(2)132-7.
155. Dani C, Martelli E, Reali MF et al. Fiberoptic and conventional phototherapy effects on the skin of premature infants. Journal of
Pediatrics 2001; 138:(3)438-40.
156. Costello SA, Nyikal J, Yu VY et al. BiliBlanket phototherapy system versus conventional phototherapy: a randomized controlled
trial in preterm infants. Journal of Paediatrics and Child Health 1995; 31:(1)11-3.
157. Pezzati M, Biagiotti R, Vangi V et al. Changes in mesenteric blood flow response to feeding: Conventional versus fiber-optic
phototherapy. Pediatrics 2000; 105:(2)350-3.
158. Martins BM, de CM, Moreira ME et al. Efficacy of new microprocessed phototherapy system with five high intensity light emitting
diodes (Super LED). Jornal de Pediatria 2007; 83:(3)253-8.
159. Bertini G, Perugi S, Elia S et al. Transepidermal water loss and cerebral hemodynamics in preterm infants: conventional versus
LED phototherapy. European Journal of Pediatrics 2008; 167:(1)37-42.
160. Ebbesen F, Madsen P, Stovring S et al. Therapeutic effect of turquoise versus blue light with equal irradiance in preterm infants
with jaundice. Acta Paediatrica 2007; 96:(6)837-41.
161. Ebbesen F, Agati G, and Pratesi R. Phototherapy with turquoise versus blue light. Archives of Disease in Childhood Fetal and
Neonatal Edition 2003; 88:(5)F430-F431.
162. Ayyash H, Hadjigeorgiou E, Sofatzis I et al. Green or blue light phototherapy for neonates with hyperbilirubinaemia. Archives of
Disease in Childhood 1987; 62:(8)843-5.
163. Amato M and Inaebnit D. Clinical usefulness of high intensity green light phototherapy in the treatment of neonatal jaundice.
European Journal of Pediatrics 1991; 150:(4)274-6.
164. Vecchi C, Donzelli GP, Sbrana G et al. Phototherapy for neonatal jaundice: clinical equivalence of fluorescent green and
"special" blue lamps. Journal of Pediatrics 1986; 108:(3)452-6.
165. Sisson TR, Kendall N, Shaw E et al. Phototherapy of jaundice in the newborn infant. II. Effect of various light intensities. Journal of
Pediatrics 1972; 81:(1)35-8.
166. Shinwell ES, Sciaky Y, and Karplus M. Effect of position changing on bilirubin levels during phototherapy. Journal of Perinatology
2002; 22:(3)226-9.
167. Chen CM, Liu SH, Lai CC et al. Changing position does not improve the efficacy of conventional phototherapy. Acta Paediatrica
Taiwanica 2002; 43:(5)255-8.
168. Mohammadzadeh A, Bostani Z, Jafarnejad F et al. Supine versus turning position on bilirubin level during phototherapy in healthy
term jaundiced neonates. Saudi Medical Journal 2004; 25:(12)2051-2.
169. Fok TF, Wong W, and Cheng AF. Use of eyepatches in phototherapy: effects on conjunctival bacterial pathogens and
conjunctivitis. Pediatric Infectious Disease Journal 1995; 14:(12)1091-4.
170. Fok TF, Wong W, and Cheung KL. Eye protection for newborns under phototherapy: comparison between a modified headbox
and the conventional eyepatches. Annals of Tropical Paediatrics 1997; 17:(4)349-54.
171. Paludetto R, Mansi G, Rinaldi P et al. Effects of different ways of covering the eyes on behavior of jaundiced infants treated with
phototherapy. Biology of the Neonate 1985; 47:(1)1-8.
172. Lau SP and Fung KP. Serum bilirubin kinetics in intermittent phototherapy of physiological jaundice. Archives of Disease in
Childhood 1984; 59:(9)892-4.
173. Vogl TP, Hegyi T, Hiatt IM et al. Intermediate phototherapy in the treatment of jaundice in the premature infant. Journal of
Pediatrics 1978; 92:(4)627-30.
174. Mehta S, Kumar P, and Narang A. A randomized controlled trial of fluid supplementation in term neonates with severe
hyperbilirubinemia. Journal of Pediatrics 2005; 147:(6)781-5.
175. Boo NYL. Randomized controlled trial of oral versus intravenous fluid supplementation on serum bilirubin level during
phototherapy of term infants with severe hyperbilirubinaemia. Journal of Paediatrics and Child Health 2002; 38:(2)151-5.
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