Irene Roberts

Neonatal Haematology


Скачать книгу

Blood, 77, 2360–2363.

      131 131 Hohlfeld P, Forestier F, Kaplan C, Tissot JD and Daffos F (1994) Fetal thrombocytopenia: a retrospective survey of 5,194 fetal blood samplings. Blood, 84, 1851–1856.

      132 132 Ferrer‐Marin F, Liu ZJ, Gutti R and Sola‐Visner M (2010) Neonatal thrombocytopenia and megakaryocytopoiesis. Semin Hematol, 47, 281–288.

      133 133 Liu ZJ, Italiano J, Ferrer‐Marin F, Gutti R, Bailey M, Poterjoy B et al. (2011) Developmental differences in megakaryocytopoiesis are associated with up‐regulated TPO signalling through mTOR and elevated GATA‐1 levels in neonatal megakaryocytes. Blood, 117, 4106–4117.

      134 134 Wolber E‐M, Bame C, Fahnenstich H, Hofmann D, Bartmann P, Jelkmann W and Fandrey J (1999) Expression of the thrombopoietin gene in human fetal and neonatal tissues. Blood, 94, 97–105.

      135 135 Walka MM, Sonntag J, Dudenhausen JW and Obladen M (1999) Thrombopoietin concentration in umbilical cord blood of healthy term newborns is higher than in adult controls. Biol Neonate, 75, 54–58.

      136 136 Murray NA, Watts TL, and Roberts IAG (1998) Endogenous thrombopoietin levels and effect of recombinant human thrombopoietin on megakaryocyte precursors in term and preterm babies. Pediatr Res, 43, 148–151.

      137 137 Sola MC, Calhoun DA, Hutson AD and Christensen RD (1999) Plasma thrombopoietin concentrations in thrombocytopenic and non‐thrombocytopenic patients in a neonatal intensive care unit. Br J Haematol, 104, 90–92.

      138 138 Hegyi E, Nakazawa M, Debili N, Navarro S, Katz A, Breton‐Gorius J and Vainchenker W (1991) Developmental changes in human megakaryocyte ploidy. Exp Hematol, 19, 87–94.

      139 139 Sola‐Visner M (2012) Platelets in the neonatal period: developmental differences in platelet production, function, and hemostasis and the potential impacts on therapies. Hematology Am Soc Hematol Educ Program, 2012, 506–511.

      140 140 Roberts IAG and Chakravorty S (2019) Thrombocytopenia in the newborn. In: Michelson A, Cataneo M, Frelinger A and Newman P (eds), Platelets, 4th edn. Academic Press, New York, pp. 813–831.

      141 141 Sola‐Visner MC, Christensen RD, Hutson AD and Rimsza LM (2007) Megakaryocyte size and concentration in the bone marrow of thrombocytopenic and non‐thrombocytopenic neonates. Pediatr Res, 61, 479–484.

      142 142 Davenport P, Liu ZJ and Sola‐Visner M (2020) Changes in megakaryopoiesis over ontogeny and their implications in health and disease. Platelets, 31, 692–699.

      143 143 Murray NA and Roberts IAG (1995) Circulating megakaryocytes and their progenitors (BFU‐MK and CFU‐MK) in term and pre‐term neonates. Br J Haematol, 89, 41–46.

      144 144 Saxonhouse MA, Christensen RD, Walker DM, Hutson AD and Sola MC (2004) The concentration of circulating megakaryocyte progenitors in preterm neonates is a function of post‐conceptional age. Early Hum Dev, 78, 119–124.

      145 145 Saxonhouse MA, Sola MC, Pastos KM, Ignatz ME, Hutson AD, Christensen RD and Rimsza LM (2004) Reticulated platelet percentages in term and preterm neonates. J Pediatr Hematol Oncol, 26, 797–802.

      146 146 Wiedmeier SE, Henry E, Sola‐Visner MC and Christensen RD (2009) Platelet reference ranges for neonates, defined using data from over 47,000 patients in a multi hospital healthcare system. J Perinatol, 29, 130–136.

      147 147 Cremer M, Sallmon H, Kling PJ, Buhrer C and Dame C (2016) Thrombocytopenia and platelet transfusion in the neonate. Semin Fetal Neonatal Med, 21, 10–18.

      148 148 MacQueen BC, Christensen RD, Henry E, Romrell AM, Pysher TJ, Bennett ST and Sola‐Visner MC (2017) The immature platelet fraction: creating neonatal reference intervals and using these to categorize neonatal thrombocytopenias. J Perinatol, 37, 834–838.

      149 149 Lorenz V, Ferrer‐Marin, Israels SJ and Sola‐Visner M (2019) Platelet function in the newborn. In: Michelson A, Cataneo M, Frelinger A and Newman P (eds), Platelets, 4th edn. Academic Press, New York, pp. 443–457.

      150 150 Corby DG and O’Barr TP (1981) Decreased alpha‐adrenergic receptors in newborn platelets: cause of abnormal response to epinephrine. Dev Pharmacol Ther, 2, 215–225.

      151 151 Caparros‐Perez E, Teruel‐Montoya R, Lopez‐Andreo MJ, Llanos MC, Rivera J, Palma‐Barqueros V et al. (2017) Comprehensive comparison of neonate and adult human platelet transcriptomes. PLoS One, 12, e0183042.

      152 152 Sitaru AG, Holzhauer S, Speer CP, Singer D, Obergfell A, Walter U, Grossmann R et al. (2005) Neonatal platelets from cord blood and peripheral blood. Platelets, 16, 203–210.

      153 153 Bednarek FJ, Bean S, Barnard MR, Frelinger AL and Michelson AD (2009) The platelet hyporeactivity of extremely low birth weight neonates is age‐dependent. Thromb Res, 124, 42–45.

      154 154 Grevsen AK, Hviid CVB, Haansen AK and Hvas A‐M (2021) Platelet count and function in umbilical cord blood versus peripheral blood in term neonates. Platelets, 32, 626–632.

      155 155 Kayiran SM, Ozbek N, Turan M and Gurankan B (2003) Significant differences between capillary and venous complete blood counts in the neonatal period. Clin Lab Haematol, 25, 9–16.

      156 156 Özbek N, Gürakan B and Kayiran SM (2000) Complete blood cell counts in capillary and venous blood of healthy term newborns. Acta Haematol, 103, 226–228.

      Конец ознакомительного фрагмента.

      Текст предоставлен ООО «ЛитРес».

      Прочитайте эту книгу целиком, купив полную легальную версию на ЛитРес.

      Безопасно оплатить книгу можно банковской картой Visa, MasterCard, Maestro, со счета мобильного телефона, с платежного терминала, в салоне МТС или Связной, через PayPal, WebMoney, Яндекс.Деньги, QIWI Кошелек, бонусными картами или другим удобным Вам способом.

/9j/4AAQSkZJRgABAQEBLAEsAAD/7SCAUGhvdG9zaG9wIDMuMAA4QklNBAQAAAAAAAccAgAAAgAA ADhCSU0EJQAAAAAAEOjxXPMvwRihontnrcVk1bo4QklNBDoAAAAAAPcAAAAQAAAAAQAAAAAAC3By aW50T3V0cHV0AAAABQAAAABQc3RTYm9vbAEAAAAASW50ZWVudW0AAAAASW50ZQAAAABDbHJtAAAA D3ByaW50U2l4dGVlbkJpdGJvb2wAAAAAC3ByaW50ZXJOYW1lVEVYVAAAAAoAQQBkAG8AYgBlACAA UABEAEYAAAAAAA9wcmludFByb29mU2V0dXBPYmpjAAAADABQAHIAbwBvAGYAIABTAGUAdAB1AHAA AAAAAApwcm9vZlNldHVwAAAAAQAAAABCbHRuZW51bQAAAAxidWlsdGluUHJvb2YAAAAJcHJvb2ZD TVlLADhCSU0EOwAAAAACLQAAABAAAAABAAAAAAAScHJpbnRPdXRwdXRPcHRpb25zAAAAFwAAAABD cHRuYm9vbAAAAAAAQ2xicmJvb2wAAAAAAFJnc01ib29sAAAAAABDcm5DYm9vbAAAAAAAQ250Q2Jv b2wAAAAAAExibHNib29sAAAAAABOZ3R2Ym9vbAAAAAAARW1sRGJvb2wAAAAAAEludHJib29sAAAA AABCY2tnT2JqYwAAAAEAAAAAAABSR0JDAAAAAwAAAABSZCAgZG91YkBv4AAAAAAAAAAAAEdybiBk b3ViQG/gAAAAAAAAAAAAQmwgIGRvdWJAb+AAAAAAAAAAAABCcmRUVW50RiNSbHQAAAAAAAAAAAAA AABCbGQgVW50RiNSbHQAAAAAAAAAAAAAAABSc2x0VW50RiNQeGxAcsAAAAAAAAAAAAp2ZWN0b3JE YXRhYm9vbAEAAAAAUGdQc2VudW0AAAAAUGdQcwAAAABQZ1BDAAAAAExlZnRVbnRGI1JsdAAAAAAA AAAAAAAAAFRvcCBVbnRGI1JsdAAAAAAAAAAAAAAAAFNjbCBVbnRGI1ByY0BZAAAAAAAAAAAAEGNy b3BXaGVuUHJpbnRpbmdib29sAAAAAA5jcm9wUmVjdEJvdHRvbWxvbmcAAAAAAAAADGNyb3BSZWN0 TGVmdGxvbmcAAAAAAAAADWNyb3BSZWN0UmlnaHRsb25nAAAAAAAAAAtjcm9wUmVjdFRvcGxvbmcA AAAAADhCSU0D7QAAAAAAEAEsAAAAAQACASwAAAABAAI4QklNBCYAAAAAAA4AAAAAAAAAAAAAP4AA ADhCSU0EDQAAAAAABAAAAFo4QklNBBkAAAAAAAQAAAAeOEJJTQPzAAAAAAAJAAAAAAAAAAABADhC SU0nEAAAAAAACgABAAAAAAAAAAI4QklNA/UAAAAAAEgAL2ZmAAEAbGZmAAYAAAAAAAEAL2ZmAAEA oZmaAAYAAAAAAAEAMgAAAAEAWgAAAAYAAAAAAAEANQAAAAEALQAAAAYAAAAAAAE4QklNA/gAAAAA AHAAAP////////////////////////////8D6AAAAAD/////////////////////////////A+gA AAAA/////////////////////////////wPoAAAAAP////////////////////////////8D6AAA OEJJTQQIAAAAAAAQAAAAAQAAAkAAAAJAAAAAADhCSU0EHgAAAAAABAAAAAA4QklNBBoAAAAAA08A AAAGAAAAAAAAAAAAAAuTAAAIDgAAAA0AOQA3ADgAMQAxADEAOQAzADcAMQA1ADgAOAAAAAEAAAAA AAAAAAAAAAAAAAAAAAAAAQAAAAAAAAAAAAAIDgAAC5MAAAAAAAAAAAAAAAAAAAAAAQAAAAAAAAAA AAAAAAAAAAAAAAAQAAAAAQAAAAAAAG51bGwAAAACAAAABmJvdW5kc09iamMAAAABAAAAAAAAUmN0 MQAAAAQAAAAAVG9wIGxvbmcAAAAAA