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Part of the book series: Topics in Renal Medicine ((TIRM,volume 4))

Abstract

The past few years have seen an increased use of peritoneal dialysis to treat acute and chronic renal failure in neonates and infants. Successful peritoneal dialysis depends upon an understanding of the mechanisms involved in peritoneal transport and the degree to which dialysis kinetics differ in the young. To be considered is an overview of the principles involved in peritoneal dialysis, the manner in which they are altered during the development process, and the available data defining transport across the peritoneal membrane in the young experimental animal and child.

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References

  1. Gruskin AB, Morgenstern BZ, Perlman SA: Kinetics of peritoneal dialysis in children. In: Fine RN, Gruskin AB (eds) End stage renal disease in children, Philadelphia: WB Saunders, 1984, p 95.

    Google Scholar 

  2. Wegner G: Chirurgische Bemerkurgen uber die peritoneal Hohle, mit besonderer Berucksichtigung der Ovariotomie. Arch Klin Chir 20:51, 1877.

    Google Scholar 

  3. Esperanca MJ, Collins DL: Peritoneal dialysis efficiency in relation to body weight. J Pediatr Surg 1:162, 1966.

    Article  Google Scholar 

  4. Putiloff PV: Materials for the study of the laws of growth of the human body in relation to the surface areas of different systems; the trial on Russian subjects of planigraphic anatomy as a means for exact anthropometry—one of the problems of anthropology. Report of Dr. PV Putiloff at the meeting of the Siberian Branch of the Russian Geographic Society, October 29, 1884, Omsk (summarized in ref. 46), 1886.

    Google Scholar 

  5. Morgenstern BZ, Baluarte HJ: Peritoneal dialysis kinetics in children. (chapter 5 in this textbook).

    Google Scholar 

  6. Miller FN: The peritoneal microcirculation. In: Nolph KD (ed) Peritoneal dialysis, Martinus Nijhoff, 1985, p 51.

    Google Scholar 

  7. Gruskin A, Cote ML, Baluarte HJ: Peritoneal diffusion curves. Peritoneal clearances and scaling factors in children of differing age. Int J Pediatric Neph 3:271, 1982.

    CAS  Google Scholar 

  8. Robson M, Oreopoulos DG, Izatt S, et al.: Influence of exchange volume and dialysate flow rate on solute clearance in peritoneal dialysis. Kid Int 14:486, 1978.

    Article  CAS  Google Scholar 

  9. Goldschmidt ZH, Pote, HH, Katz, MA, et al.: Effect of dialysis volume on peritoneal dialysis kinetics. Kid Int 5:240, 1974.

    Article  CAS  Google Scholar 

  10. Gruskin AB, Elzouki A, Baluarte HJ: Unpublished observations.

    Google Scholar 

  11. Henderson LW, Nolph KD: Altered permeability of the peritoneal membrane after using hypertonic peritoneal dialysis fluid. J Clin Invest 48:992, 1969.

    Article  PubMed  CAS  Google Scholar 

  12. Gruskin AB, Elzouki AY, Baluarte HJ, et al.: Peritoneal dialysis kinetics. A developmental perspective. In: Spitzer A (ed) The kidney during development. Morphology and Function, New York: Masson, 1982, p 315.

    Google Scholar 

  13. Siegel NJ, Brown RS: Peritoneal clearance of ammonia and creatinine in a neonate: brief Clinical and laboratory observations. J Pediatr 82:1044, 1973.

    Article  PubMed  CAS  Google Scholar 

  14. Alexander SR: Peritoneal dialysis in children. In: Nolph KD (ed) Peritoneal dialysis. Martinus Nijhoff, 1985, p 525.

    Google Scholar 

  15. Popovich RP, Pyle WK, Rosenthal DA, et al.: Kinetics of peritoneal dialysis in children. In: Moncrief JW, Popovich RP (eds) CAPD update. New York: Masson, 1981, p 227.

    Google Scholar 

  16. Kohaut EC, Alexander S: Ultrafiltration in the young patient on CAPD. In: Moncrief JW, Popovich RP (eds) CAPD update. New York: Masson, 1981, p 221.

    Google Scholar 

  17. Balfe JW, Hanning RM, Vigneux A, et al.: A comparison of peritoneal water and solute movement in young and older children on CAPD. In: Fine RN, Scharer K, Mehls O (eds) CAPD in children. Heidelburg: Springer-Verlag, 1985, p 14.

    Google Scholar 

  18. Elzouki AY, Gruskin AB, Baluarte HJ, et al.: Developmental changes in peritoneal dialysis kinetics in dogs. Pediatric Res 15:853, 1981.

    CAS  Google Scholar 

  19. Gruskin AB, Rosenblum H, Baluarte HJ, et al.: Transperitoneal solute movement in children. Kidney Int Suppl 15, S-95, 1983.

    Google Scholar 

  20. von Lilien T, Salusky IB, Alliapolous JC, et al.: Effect of long-term CAPD/CCPD (PD) and peritonitis (P) on the peritoneal membrane function and peritoneal kinetics (PK) in children. Am Soc Neph, December 1985, p 89A.

    Google Scholar 

  21. Fennell RS, Orak JK, Garin EH, et al.: Continuous ambulatory peritoneal dialysis in a pediatric population. Am J Dis Child 137:388, 1983.

    PubMed  CAS  Google Scholar 

  22. Popovich RP, Pyle WK, Moncrief JW: Kinetics of peritoneal transport. In: Nolph KD (ed) Peritoneal dialysis. Developments in nephrology, no. 2, The Hague: Martinus Nijhoff, 1981, P79.

    Google Scholar 

  23. Popovich RP, Moncrief JW: Transport kinetics. In: Nolph KD (ed) Peritoneal dialysis, Boston: Martinus Nijhoff, 1985, p 115.

    Google Scholar 

  24. Pyle WK, Hiatt MP, Morgenstern BZ, et al.: Physical characteristics correlated to peritoneal transport parameters. Perit Dial Bull 4:S51, 1984.

    Google Scholar 

  25. Morgenstern B, Kaiser B, Pyle WK, et al.: The effect of dialysate volume on peritoneal mass transfer: difference between large and small molecules (abstract), Am Soc Neph, 1985, p. 86A.

    Google Scholar 

  26. Morgenstern BZ, Pyle WK, Gruskin AB, et al.: Increased peritoneal protein loss in pediatric peritoneal dialysis. Pediatric Res 18:366A, 1984.

    Google Scholar 

  27. Morgenstern BZ, Pyle WK, Gruskin AB, et al.: Convective characteristics of pediatric peritoneal dialysis. Perit Dial Bull 4:S155, 1984.

    Google Scholar 

  28. Pyle WK, Popovich RP, Moncrief JW: Mass transfer evaluation in peritoneal dialysis. In: Moncrief JW, Popovich RP (eds) CAPD update, New York: Masson, 1981, p 35.

    Google Scholar 

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© 1987 Martinus Nijhoff Publishing, Boston

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Gruskin, A.B., Lerner, G.R., Fleischmann, L.E. (1987). Developmental Aspects of Peritoneal Dialysis Kinetics. In: Fine, R.N. (eds) Chronic Ambulatory Peritoneal Dialysis (CAPD) and Chronic Cycling Peritoneal Dialysis (CCPD) in Children. Topics in Renal Medicine, vol 4. Springer, Boston, MA. https://doi.org/10.1007/978-1-4613-2047-0_4

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  • DOI: https://doi.org/10.1007/978-1-4613-2047-0_4

  • Publisher Name: Springer, Boston, MA

  • Print ISBN: 978-1-4612-9217-3

  • Online ISBN: 978-1-4613-2047-0

  • eBook Packages: Springer Book Archive

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