ГОСТРИСО 9919—2007
[51J SCHACHINGER. Н.. SELLER. 0.(1983): First experienceswith transconjunctival PC2 measurement, in: Continuous
transcutaneous blood gas monitoring. (Eds: Huch, R.. Huch. A.) (Series Eds: Symonds. E. M.. Zuspan. F. P. Rep
roductive Medicine. Volume 5). Marcel Dekker. Inc.. New York and Basel. (Papers presented at the Second
International Symposium on Continuous Transcutaneous Blood Gas Monitoring, atthe University of Zurich. Octo
ber 14-16, 1981)
[52]SCHMITT. J. M. Simple photon diffusion analysis of the effects of multiple scattering on pulse oximetry. IEEE
Trans.Biomed. Eng. 38(12). PP. 1194—1203 (1991) and 39(3). p. 314 (1992)
[53] SEGUIN. J. (1992): Effects of transcutaneous monitor electrode heat on skin servo-cont rolled environments. J.
Perinatal. 12(3. Sep), pp. 276—280
[54]SEVERINGHAUS, J. W., NAJFEH, К. H.. KoH. S. 0. Errors in 14pulse oximeters during profoundhypoxia. JOlin Mon
1989; 5. pp. 72—81
[55]SEVERINGHAUS. J. W.. NAIFEH. К. H. Accuracy ofresponse ofsix pulse oximeters to profound hypoxia. Anesth
1987; 67. pp. 551—558
[56]SEVERINGHAUS, J. W.. KELLEHER. J. F. (1992): Recent developments in pulse oximetry. Anesthesiology.
76(6. June), pp. 1018—1038 (pp. 227—228)
[57]SEVERINGHAUS. J. W. private communication toASTM F-29
[58]TEMPLEMAN. M. C.. BELL. E. F. (1986): Head insulation for premature infants in servocontrolled incubators and
radiant wanners. Am. J. Dis. ChSd. 140(9. Sep), pp. 940—942
[59] TOPPER. W. H.. STEWART. T. P. (1984): Thermal support for the very-low-birth-v/eight infant: role ofsupplemental
conductive heat. J. Pediatr. 105(5. Nov), pp. 810—814
[60] VENUS. B.. PATEL. К. C..PRATAP. K. S.. KONCHIGERI, H., VIDYASAGAR. D. (1981): TranscutaneousPC2monitoring
during pediatric surgery. Crit. Care Med. 9(10), pp. 714—716
[61] VYAS. H„ HELMS. P. CHERIYAN. 0. (1988): Transcutaneous oxygen monitonng beyond the neonatalperiod. Crit.
Care Med. 16(9. Sep), pp. 844—847
[62]WIENERT. V.. SICK. H„ zur MUHLEN. J. (1983): Lokale thermische Belastbarkeil der menschlichen Haut [The
local heat tolerance of the human skin]. Anasth. IntensMher. Notf. Med. 18. 88—90
[63] IEC 61000-4-3, Electromagnetic compatibility (EMC) — Part 4—3: Testing and measurement techniques —
Radiated, radio-frequency, electromagnetic field immunity test
[64]International VocabularyofBasic and General Terms in hfetrology(VIM). BIPM. IEC. FCC. ISO. IUPAC, IUPAP.
OIML. 1993
[65] Guide to the ExpressionofUncertainty in Measurement (GUM). BIPM, IEC. IFCC. ISO. IUPAC. IUPAP. OIML. 19934
[66] IEC 60721-3-7, Classification of environmental conditions — Part 3: Classification of groups of environmental
parameters and their seventies — Section 7: Portable and non-stationary use
МЭК 60721-3-7 Классификация внешних воздействующих факторов. Часть 3. Классификация групп
параметров окружающей среды и их степеней жесткости. Раздел 7. Переносной и нестационарный
режим эксплуатации
[67] IEC TR 60721-4-7, Classification ofenvironmental conditions— Part 4—7: Guidance for the correlation and trans
formation of environmental condition ctesses of IEC 60721-3 to the environmental tests ofIEC 60068 — Portab le
and non-stationary use
МЭК TR 60721-4-7 Классификация внешних воздействующих факторов. Часть 4—7. Руководство для
взаимосвязи и преобразования классов внешних воздействующих факторов по МЭК 60721-3 при испы
таниях на воздействие окружающей среды по МЭК 60068. Переносной и нестационарный режим экс
плуатации
4 Corrected and reprinted 1995.
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