^Herold, M.; Cahn, J.; Gomont, P. Toxicology of vitamin A acid. Acta Dermato-Venereologica, Supplementum. 1975, 74: 29–32.
^IARC. Monographs on the Evaluation of the Carcinogenic Risk of Chemicals to Humans. Geneva: World Health Organization, International Agency for Research on Cancer. p. V51 428 (1991)
^O'Neil, M.J. The Merck Index - An Encyclopedia of Chemicals, Drugs, and Biologicals.. Whitehouse Station, NJ: Merck and Co., Inc. 2006: 1249.
^Saito, A; Yamamoto, M. Acute oral toxicity of capsaicin in mice and rats. Journal of Toxicological Sciences. 1996, 21 (3): 195–200.
^Gossel, T.A.; Bricker, J.D. Principles of Clinical Toxicology. 3rd. New York, NY: Raven Press, Ltd. 1994: 5.
^Hayes, W.J. Jr.; Laws, E.R. Jr. Handbook of Pesticide Toxicology. 2. New York, NY: Academic Press, Inc. 1991: 604.
^Krieger, R. Handbook of Pesticide Toxicology. 1 2nd. San Diego, CA: Academic Press. 2001: 119.
^Lewis, R.J.; Tatken, R.L. Registry of Toxic Effects of Chemical Substances. 1. US Department of Health and Human Services. 1979.
^ 21.021.121.221.321.421.5Gill, D. Michael. Bacterial toxins: a table of lethal amounts. Microbiological Reviews. 1982, 46: 86–94.
^Behring, E., and A. Kitashima. 1901. Über die Verminderung und Steigerung der ererbten Giftempfindlichkeit. Berliner klinische Wochenschrift. 38:157-163.
^Onoue, K., M. Kitagawa, and Y. Yamamura. 1963. Isolation of highly potent toxin from Bordetella pertussis. J. Bacteriol. 80:648-655.
^Marrs TC, Maynard, RL, Sidell FR, eds; Chemical Warfare Agents. Toxicology and Treatment 2nd ed. p.197 (2007)
^Fodstad, Ø., J. V. Johannessen, L. Schjerven, and A. Pihl. 1979. Toxicity of abrin and ricin in mice and dogs. J. Toxicol. Environ. Health 5:1073-1084.
^Eaker, D., J. Halpert, J. Fohlman, and E. Karlsson. 1976. Structural nature of presynaptic neurotoxins from the venoms of the Australian Tiger snake Notechia scutatus scutatus and the Taipan Oxyuranus scutellatus scutellatus, p. 27-45. In A. Ohsaka, K. Hayashii, and Y. Sawai, (ed.), Animal, plant and microbial toxins, vol. 2. Chemistry, pharmacology, immunology. Plenum Press, New York.
^Shindelman J, Mosher HS, Fuhrman FA. Atelopidtoxin from the Panamanian frog, Atelopus zeteki. Toxicon. 1969 Dec;7(4):315-9.
^Daly J, Witkop B. Batrachotoxin, an extremely active cardio- and neurotoxin from the Colombian arrow poison frog Phyllobates aurotaenia. Clin Toxicol. 1971 Sep;4(3):331-42.
^Nerve Agents. U.S. Department of Labor. [2014-09-17]. (原始内容存档于2015-09-15).
^Paulet G (1976). Les fluorocarbones en question. J Eur Toxicol (Supplement) 9:385-407 (in French).
^Hartzell GE, Priest DN, Switzer WG (1985). Modeling of toxicological effects of fire gases. II. Mathematical modeling of intoxication of rats by combined carbon monoxide and hydrogen cyanide. J Fire Sci 3:115-128.
^AIHA, Toxicology Committee (1964). Emergency exposure limits. Am Ind Hyg Assoc J 25:578-586.
^Lehmann KB, Flury F, eds. (1943). Toxicology and hygiene of industrial solvents. Translated by E. King and H.F. Smyth, Jr. Baltimore, MD: Williams & Wilkins Company, p. 141.
^NPIRI (1974). Raw materials data handbook, physical and chemical properties, fire hazard and health hazard data. Vol. 1. Organic solvents. Bethlehem, PA: National Printing Ink Research Institute, p. 16.
^Kinkead ER, Einhaus RL (1984). Acute toxicity of thionyl chloride vapor for rats. Wright-Patterson Air Force Base, OH: Air Force Systems Command, Air Force Aerospace Medical Division, Aerospace Medical Research Laboratory, Technical Report AFAMRL-TR-84-069.
^Darmer KI Jr, Haun CC, MacEwen JD [1972]. The acute inhalation toxicology of chlorine pentafluoride. Am Ind Hyg Assoc J 33:661-668.
^Skog E (1950). A toxicological investigation of lower aliphatic aldehydes. I. Toxicity of formaldehyde, acetaldehyde, propionaldehyde and butyraldehyde; as well as acrolein and crotonaldehyde. Acta Pharmacol Toxicol 6(4):299-318.
^Gray E LeB, Patton FM, Goldberg SB, Kaplan E (1954). Toxicity of the oxides of nitrogen. II. Acute inhalation toxicity of nitrogen dioxide, red fuming nitric acid, and white fuming nitric acid. AMA Arch Ind Hyg Occup Med 10:418-422.
^Back KC, Thomas AA, MacEwen JD (1972). Reclassification of materials listed as transportation health hazards. Wright-Patterson Air Force Base, OH: 6570th Aerospace Medical Research Laboratory, Report no. TSA-20-72-3, pp. A-182 to A-183.
^NDRC (1946). Summary technical report of division 9, NDRC. Vol 1. Chemical warfare agents and related chemical problems. Parts I-II. Washington, DC: National Defence Research Committee, pp. 1-385.
^IPCS; Poisons Information Monograph 354. Mustard Gas. (September 1996)
^ 47.047.1Marrs TC, Maynard, RL, Sidell FR, eds; Chemical Warfare Agents. Toxicology and Treatment 2nd ed. p.208 (2007)
^Anthony JS et al. Inhalation toxicity of Cyclosarin (GF) vapor in rats as a function of exposure concentration and duration: potency comparison to sarin (GB). Inhal Toxicol 16 (2): 103-11 (2004)
^DA (Department of the Army). 1974. Chemical agent data sheets, vol. 1. Edgewood Arsenal Special Report, EO-SR-74001. U.S. Department of the Army, Edgewood Arsenal, Aberdeen Proving Ground, MD.
^Dacre, J.C. 1984. Toxicology of some anticholinesterases used as chemical warfare agents—a review. Pp. 415–426. in: Cholinesterases: Fundamental and Applied Aspects, M.Brzin, E.A.Barnard, and D.Sket, eds. New York: Walter de Gruyter.
^Strey, Karsten. Die Gifte-Skala. Chemie in Unserer Zeit. 2019, 53 (6): 386–399. doi:10.1002/ciuz.201900828.