AspelinP.AlménT.: Studies on the acute toxicity of ionic and non-ionic contrast media following rapid intravenous injection. Invest. Radiol.11 (1976), 309.
2.
BernsteinE.EvansR.SaltzmanG.-F.: Physico-chemical properties of blood following exposure to methylglucamine iodopamide and other contrast media. Acta radiol. Diagnosis2 (1964), 401.
3.
BessisM.BrickaM.: Etude au microscope électronique sur l'hémolyse, l'agglutination, la forme et la structure des globules rouges. Rev. Hématol.5 (1950), 396.
BrecherG.BessisM.: Present status of spiculated red cells and their relationship to the discocyte-echinocyte transformation. Blood40 (1973), 333.
8.
BrownR.YoumansR.LivanecG.DerrickJ.BondT.GuestM.: Cinemicrographic observations of the effects of contrast media on the microcirculation. Vasc. Surg.2 (1968), 109.
9.
BullB.BrailsfordJ. D.: The biconcavity of the red cell. An analysis of several hypothesis. Blood41 (1973), 833.
10.
CanhamP. B.: The minimum energy of energy of bending as a possible explanation of the biconcave shape of the human red blood cell. J. theor. Biol.26 (1970), 61.
11.
ChaplinH.CarlssonE.: Changes in human red blood cells during in vitro exposure to several roentgenologic contrast media. Amer. J. Roentgenol.86 (1961), 1127.
12.
DeutickeB.: Transformation and restoration of biconcave shape of human erythrocytes induced by amphiphilic agents and changes of ionic environment. Biochim. biophys. Acta163 (1968), 494.
13.
FarrantJ.WoolgarA. E.: Human red cells under hypertonic conditions. A model system for investigation freezing damage. Cryobiology9 (1972), 9.
14.
FeoC. J.LeblondP. F.: The discocytes-echinocyte transformation: Comparison of normal and ATP enriched human erythrocytes. Blood44 (1974), 639.
15.
HaradinA.WeedR.ReedC.: Changes in physical properties of stored erythrocytes. Relationship to survival in vivo. Transfusion9 (1969), 229.
16.
LasserE.FarrR.FujimagariT.TrippW.: The significance of proteinbinding of contrast media in roentgen diagnosis. Amer. J. Roentgenol.87 (1962), 338.
17.
McIntoshH.HurstV.ThompsonH.MorrisJ.WhalenR.: The hemodynamic effects of the injection of contrast medium (Isopaque). Angiology18 (1967), 306.
18.
MeyerM.ReadR. C.: Red cell aggregation from concentrated saline and angiographic media. Radiology82 (1964), 630.
19.
MohandasN.FeoC.: A quantitative study of the red cell shape changes produced by anionic and cationic derivates of phenothiazine. Blood Cells1 (1975), 375.
20.
NakaoM.NakaoT.YamazoeS.: Adenosine-three-ephosphate and maintenance of the shape of the human red cell. Nature187 (1960), 945.
21.
NathanD. G.ShohetS. B.: Erythrocyte ion transport defects and hemolytic anemia: Hydrocytosis and Desioccocytosis. Semin. Hematol.7 (1970), 381.
22.
PeroniF.SchiantarelliP.RosatiG.TironeP.: Effects of iodinated contrast media on erythrocytes. II. Effect of some drugs on alterations induced by meglumine acetrizoate. Invest. Radiol.8 (1973), 205.
23.
PonderE.: Hemolysis and related phenomena. Grune and Stratton, New York1948.
24.
RandP.LacombeE.: Hemodilution, tonicity and blood viscosity. J. clin. Invest.43 (1964), 2214.
25.
SalvesenS.: Acute toxicity test of metrizamide. Acta radiol. (1973) Suppl. No. 335, p. 5.
26.
SalvesenS.FreyK.: Protein binding of metrizamide and the effect of various enzymes. Acta radiol. (1973) Suppl. No. 335, p. 247.
27.
SchiantarelliP.PeroniF.TroneP.RosatiG.: Effects of iodinated contrast media on erythrocytes. I. Effects on canine erythrocytes on morphology. Invest. Radiol.8 (1973), 199.
28.
Schmid-SchönbeinH.: Erythrocyte rheology and the optimization of mass transport in the microcirculation. Blood Cells1 (1975), 285.
29.
Schmid-SchönbeinH.v. GoosenJ.HeinichL.KloseH.VolgerE.: A counter rotating ‘rheoscope chamber’ for the study of the microrheology of blood cell aggregation by microscopic observation and microphotometry. Microvasc. Res.6 (1973), 366.
30.
SheetsM.SingerS.: Biological membranes as bilayer couples. A molecular mechanism of drug-erythrccyte interactions. Proc. nat. Acad. Sci. (Wash.)71 (1974), 4457.
31.
SvobodaM.FialaJ.: Über die Beziehung verschiedener positiver Röntgenkontrastmittel zu roten Blutkörperchen. Radiol. diagn. (Berl.)1 (1960), 336.
32.
SvobodaM.FialaJ.: Der Einfluss jodierter wasserlöslicher Röntgenkontrastmittel auf die roten Blutkörperchen im Verlauf der Kontrastuntersuchungen. Radiol. diagn. (Berl.)5 (1964), 207.
33.
SvobodaM.FialaJ.: Morphologische Veränderungen der roten Blutkörperchen nach verschiedenen wasserlöslichen, jodhaltigen Röntgenkontrastmitteln. Radiologe4 (1964), 40.
34.
WeedR. J.BessisM.: The discocyte-stomatocyte equilibrium of normal and pathological cells. Blood41 (1973), 471.
35.
WeedR. J.LaCelleP. L.MerrillF. W.: Metabolic dependence of red cell membrane deformability. J. clin. Invest.48 (1969), 795.
36.
WiedemanM.: Vascular and intravascular responses to various contrast media. Angiology14 (1963), 107.
37.
WiedemanM.: Influence of low molecular weight dextran on vascular and intravascular responses to contrast media. Amer. J. Roentgenol.92 (1964), 682.
38.
ZwaalR. F.RoelfsenB.ComfurisusP.Van DeenenL.: Organization of phospholipids in human red cell membranes as detected by the action of various purified phospholipases. Biochim. biophys. Acta406 (1975), 83.