SheftelV.O., Polyorganosiloxanes, in : Toxic Properties of Polymers and Additives, Rapra Technology Ltd., 1990
2.
2a. Anon, Silicones, in: Encycl. Polym. Sci. Eng., Wiley, New York, Vol. 15, 1989, pp. 204–308.
3.
2b. Anon, Sealants, in: Encycl. Polym. Sci. Eng., Wiley, New York, Vol. 15, pp. 131–145
4.
CorneliusD.J. and MonroeC.M., Silastic based Silicone Rubber - Not all its properties and applications are related to thermal stability. (Presentation, Meeting of the Rubber Division. American Chemical Society, October 13-16, 1981), Rubber and Plastics News, Oct. 11, 1982, pp. 16–18.
5.
GorurR.S., Polymers for outdoor insulation. Proceedings 6th BEAMA International Electrical Insulation Conference, (INSUCON), May 21-24 1990, Electrical and Electronic Insulation Association (EEIA), pp. 65, 69
6.
PatersonJ.R. and WarrenL., A new abalative elastomer to withstand high levels of irradiation and fire for use in transport systems and cables. Proceedings, 6th BEAMA International Insulation Conference (INSUCON), May 21-24 1990, Electrical and Electronic Insulation Association 9EEIA), pp. 70–75
7.
TregoB.R. and WinnanH.W., Silicone Rubbers, Rapra REview Reports, (Report 31), 3, 3, 1990, pp. 31–3. to 12
8.
BrodhagenT.W., Silicones in medical markets - Past, present and future. Presentation Rubber Division, American Chemical Society, Las Vegas, May 29-June 1 1990
LeeperH.M. and WrightR.M., Elastomers in Medicine, Rubber Chem. TechnoL, 56, 3, 1983, 523–56
11.
Martindale's Extra Pharmacopeia, 29th Ed., London, Pharmaceutical Society of Great Britain, 1989
12.
RankinF.S., Physical property requirements of silicones incorporated jinto controlled release devices, Misc.. Symp. Conf. Meet., 13 Intl. Symp. of Controll. Rel. of Bioact. Mat., Aug. 3-6, 1986
13.
FrischE.E., High performance medical grade silicone elastomers, SAMPE Journal, 21, 3, 1985, 23–28
14.
HabalM.B., The biological basis of the clinical application of the silicones, Arch. Surg., 119, 1984, 843–848
15.
VondracekP. and DolezelB., Biostability of medical elastomers: a review, Biomaterials, 5, 1984, 209–214
16.
HillJ.F., AndersonF.L., JohnsonT.K., RigelL.E. and SeelyeR.R., Eighteen Month Clinical Experience with extended wear silicone contact lenses on 400 patients, Am. J. Optometry and Physiol. Optics, 60, 7, 1983, 578–81
17.
HenrichR.T., FreemanH.A., McMahon J. M., WackerleS.A. and DelongchamR.R., Assessment of the elastomer surface and the distribution of amorphous silica in SilasticII mammary envelope after implantation in the mouse. Dow Corning Proprietary Report, 10000-35986, 1991
18.
ChristieA.J., PierretG. and LevitonJ., Silicone Synovitis, Sem. Arthritis Rheum., 19, 3, 1989, 166–71
19.
EndoL.P., EdwardsN.L., LongleyS., CourmanL.C. and PanushR.S., Silicone and rheumatic diseases. Sem. Arthritis Rheum., 17, 2, 1987, 112–118
20.
KossovskyN., ColeP. and ZacksonD.A., Giant cell myocarditis associated with silicone. Am. J. Clin. Pathol., 93,1, 1990,148-152
CarsonS., Hobbs E. J. and Tyler L.J., Safety aspects of silicone polymers used in the medical profession. Polym. Prepr. Am. Chem. Soc., Div. Polym. Chem., 17, 1, 1976, 17–22
KnizeD.M., Silicone breast implants - a cancer threat? Colorado Medicine, 85, 22, 1988, 487
25.
American Societies of Plastic and REconstructive Surgeons/Aesthetic Plastic Surgery, Information on the safety of breast implants. Colorado Medicine, 85, 22, 1988, 487
26.
Food Chemical News Inc., Silica Glass-Silicone Base Polymers. The Food Chemical News Guide, 7 August 1989, pp. 407–408.
27.
HaydenJ.F. and BarlowS., Structure-activity relationship of organosiloxanes and the female reproductive system. Toxicol. Appl. Pharmacol., 21, 1972, 68–79
28.
GrigorasS., LaneT.H. and LeVierR.R., Bioactive organosilicon compounds. I. A theoretical study of the hormonal activity of 2,6-cis- diphenylhexamethyl cyclotetrasiloxane. Main Group Metal Chemistry, 10, 3, 1987, 199–207
29.
BaileyG.C., Acute toxicity of some experimental road surfacing compounds to Daphnia pulex. Bull. Environm. Contam. Toxicol., 21, 1979, 618–623
30.
SrivastavaS., GorhamS.D. and CourtneyJ.M., Screening of in vitro cytotoxicity by the adhesive film test. Biomaterials, 11, 1990,133137
31.
DevanathanT. and YoungK.A., Effect of postcuring on haemocompatibility of silicone rubber. Biomat. Med. dev. Art. Org., 9, 3, 1981, 225–230
32.
TanabeT., Experimental studies on the cutaneous tissue reaction to heat-vulcanising silicone rubber and polyurethane as facial prosthetic materials. Tsurumi Shigaku, 10, 1, 1984, 1–21
33.
WilsnackR.E., MeyerF. J. and SmithJ.G., Human cell culture toxicity testing of medical devices and correlation to animal tests. Biomat. Med. Dev. Art. Org., 1, 3, 1973, 543–62
34.
LucasM.S. and MooreD.J., Tissue culture and histologic study of a new elastomer. J. prosthet. Dentistry, 42, 4, 1979, 447–51
35.
ChawlaA.S., Toxicity evaluation of a novel filler free silicone rubber biomaterial by cell culture techniques. J. Biomed. Mater. Res., 16, 1982, 501–8
36.
MacDougallJ.D.B., Toxicity studies on silicone rubber and other substances. Nature (London), 172, 1953, 124–5
37.
PaluchD., Borzemska-SzymonowiczM. and Olszewska-BlackZ., In vitro screening studies of the toxicological testing of synthetic biomaterials. Polymers in MedicineX, 4, 1980, 193–204
38.
BissetC., CousinsR. and McDonaldC., An investigation into the toxic effects of a variety of polymers on two non-adherent mammalian cell-lines. Biotechnol. Techniques, 4, 2, 1990, 101–106
39.
JonesD.M., KovacsG.T., HarrisonL., JenningsM.G. and BakerH.W.G., Immobilisation of sperm by condoms and their components. Clin. Reprod. Fetil., 4, 1986, 367–72
40.
Knasiak-PaluchD., Toxicity of plastic materials as evaluated by means of bull semen (preliminary report). Pol. J. Pharmacol. Pharm., 32, 1980, 109–114
41.
McGunnigleR.G., Renner J. A., RomanoS. and AbodeelyR., Residual ethylene oxide: levels in medical grade tubing and effects on an in vitro biologic system. J. Biomed. Mater. Res., 9, 1975, 27383
42.
McCauleyR.L., RileyW., JulianoR., BrownR., EvansM. and RobsonM., In vitro alterations in human fibroblast behaviour secondary to silicone polymers. J. Surg. Res., 49, 1990, 103–9
HeenanM.P., NaceyJ. N., DelahuntB., FergusonA.F. and DicksonS.J., Volatile N-nitrosamines in urinary catheters. Br. J. Urol., 63, 1989, 72–75
45.
OsterdahlB.G. and SlorachS.A., Small amounts of volatile N- nitrosamines are released from rubber feeding bottle nipples and pacifiers. Var. Foda, 35, 6-7, 1983, 258–269
46.
SenN.P., SeamanS. W. and KushwahaS.C., Determination of nonvolatile N-nitrosamines in baby bottle rubber nipples and pacifiers by high performance liquid chromatography-thermal energy analysis. J. Chromatography, 463, 1989, 419–428
47.
BuchR., DennisW., MonroeC. and ChaffeeR., Fire properties of silicones for the electrical and optical fibre cabling industry. US Army Communications and Electronics Command, 38th International Wire and Cable Symposium, Atlanta USA, Nov. 14-16, 1989, pp. 542–548.
48.
DeutschH.M., Recent advances in fire-resistant materials in aircraft construction. Procdgs. Natl. SAMPE Symp. Exhib. Enigma Eighties: Environ. Eco. Energy Book, 1, 1979, 575–89
49.
47a. HallmanJ.R., Reed WalkerJ. and SliepovichC.M., Radiation absorption for polymers, in: Charact. Met. Polym. Surf. Symp., Ed. LeeL.H., publ. Academic Press, New York, Vol. 2, 1977, 429–446
50.
PughA.R. and PaulK.T., Smoke and toxicity measurements of a silicone elastomer designated Dow Corning Q3-3525 when tested to the Airbus Industrie Technical SpecificationsATS 1000.001. Issue 4, Rapra Technology Ltd., Confidential Technical EportsR, No. 18540, 1990
51.
BuchR.R., Rates of heat release and related fire parameters for silicones. Fire Safety Journal, 17, 1991, (in press)
52.
BuchR.R. and MonroeC.M., Flame retardent silicone elastomer compositions exhibiting reduced smoke evolution during combustion. Dow Corning Proprietary Report, 1-0030-6319
53.
BuchR.R., Gamer P. J., GaulM.D., FreemanH.A. and RolleyP.A., Characterisation of trimethylsiloxy treated silicas. Dow Coming Proprietary Report, 1000–35797
54.
51a. HiladoC.J., CaseyC.J., ChristensenD.F. and LipowitzJ., Toxixity of pyrolysis gases from silicone polymers. J. Combust. Toxicol., 5, 1978, 130–140
55.
HiladoC.J. and MachadoA.M., Char yield and toxicity of pyrolysis gases from materials. J. Fire FlammabiL, 9, 1978, 367–376
56.
Underwriters Laboratories, UL94. Standards for Safety: Test for flammability of plastic materials for parts in devices and apliances. UL, Northbrook, IllinoisUSA, 1982
57.
HiladoC.J. and HuttlingerP.A., Carbon monoxide evolution from elastomers. J. Elastomers and Plastics, 12, 1980, 197–200
58.
AndersonR.C., Registration categories for wire and cable products: toxicity study of the National Electrical Manufacturers Association. Procdgs. Inti. Wire and Cable Symposium (37th Vol.), 1988, 648655
59.
HiladoC.J., Some relationships between relative toxicity and total and lethal weight loss of polymers. Org. Coat. Plast. Chem., 43, 1980, 297–303
60.
HiladoC.J., CummingH.J., and CaseyC.J., Toxicity of pyrolysis gases from plastics and elastomers. J. Elastomers Plastics, 11, 1979, 3–14
61.
HiladoC.J. and HuttlingerPP.A., Polymer structure and relative toxicity of off-gases. J. Elastomers and Plastics, 13, 1981,177-182
62.
KolesarG.B. and SiddiquiW.H., Comparative inhalation toxicity of the pyrolysis products of four foam materials in mice. Dow Coming Proprietary Report, 1-0005-1291, 1985
63.
RajeR.R., SciarraJ.J. and GreenbergL., The acute inhalation toxicity in rats from pyrolysis products of polymeric materials. J. Combust. Toxicol., 8, 1981, 45–51
64.
CurrieJ.L., IraniR.S. and SandersJ., The ignition behaviour of silicone greases in oxygen atmospheres, in: symposium on Flammability and Sensitivity of Materials in oxygen - enriched atmospheres (4th Vol. ), ASTM Spec. Tech. Publ. No.1040, 1989, 125–141
WolfG.L. and SimpsonJ.I., Oxidant 02 and Oxidant N2O indices of flammability and their additive effect, in: symposium on flammability and sensitivity of materials in oxygen - enriched jatmospheres (3rd volume). ASTM Spec. Tech. Publ. No.986, 1988, 420–426