Linked from
The 77 pages that link to Toxicology, each with the reason it gives.
Chemical safetyNarrower topic: Toxicology supplies evidence about the kinds and doses of harm chemicals can cause.
Cyanide poisoningNarrower topic: Cyanide poisoning is assessed and managed using principles of clinical toxicology.
Chemical warfareNarrower topic: Toxicology explains the dose, exposure, and biological effects underlying chemical injuries.
Forensic toxicologyNarrower topic: Forensic toxicology applies this broader science to questions raised by legal investigations.
Poison control centerNarrower topic: Its principles let specialists estimate how an exposure may affect the body.
Ethylene glycolNarrower topic: Ethylene glycol links chemical properties to dose-dependent poisoning, diagnosis, and treatment.
Activated charcoalNarrower topic: Poison specialists assess whether a particular exposure is adsorbed by charcoal and whether treatment is safe.
EcotoxicologyNarrower topic: Ecotoxicology extends toxicology from individual organisms to environmental systems.
NeurotoxinNarrower topic: It provides methods for measuring neurotoxin exposure, dose, and harm.
Chelation therapyNarrower topic: Chelation decisions rely on toxicology’s account of dose, exposure, and harm.
Chemical hazardNarrower topic: Toxicology supplies methods for identifying and characterizing many chemical hazards.
ParacelsusNarrower topic: His attention to dose and poisons anticipates questions central to toxicology.
ToxicityNarrower topic: Toxicity is the central property investigated by this field.
BiocompatibilityNarrower topic: Toxicology supplies methods for assessing harms that may arise from material exposure.
CarcinogenicityNarrower topic: Carcinogenicity assessment is one part of evaluating an agent’s toxicity.
Mushroom poisoningNarrower topic: Mushroom poisoning is assessed through toxicology’s principles of exposure, dose, and effect.
PoisonNarrower topic: Poison is a central subject of toxicology, which examines effects and their causes.
PoisoningNarrower topic: It explains how exposure becomes injury and provides the framework for assessing toxic effects.
White phosphorusNarrower topic: Understanding white phosphorus exposure requires tracking its routes of entry and systemic effects.
AntidoteNarrower topic: Antidote selection depends on identifying the toxic agent and its effects.
Drug overdoseNarrower topic: Toxicology guides overdose assessment, treatment, and interpretation of drug exposures.
Chemical warfare agentNarrower topic: Toxicology explains how dose, exposure route, and biological response shape agent effects.
Riot control agentNarrower topic: Toxicology assesses how agent, dose, exposure, and health conditions shape harm.
DimercaprolNarrower topic: Its prescribing decisions rely on toxicology’s assessment of exposure and harm.
Plant toxicityNarrower topic: Plant toxicity is one part of the broader study of harmful exposures.
CoumarinNarrower topic: Coumarin’s risks depend on dose, duration, and individual susceptibility.
E numberNarrower topic: Toxicological evidence contributes to assessments behind additive approvals.
ChlorobenzeneNarrower topic: Toxicology evaluates the health effects and exposure limits relevant to chlorobenzene.
ChloropicrinNarrower topic: Toxicology examines chloropicrin’s dose-dependent effects and routes of exposure.
Acesulfame potassiumNarrower topic: Toxicological studies underpin the safety limits established for acesulfame K.
OrpimentNarrower topic: Orpiment’s arsenic content makes toxicological risk central to its handling.
Isocyanic acidNarrower topic: HNCO exposure raises questions about dose, biological targets, and health effects.
Methyl isocyanateNarrower topic: Toxicology investigates how methyl isocyanate exposure damages human health.
Paris greenNarrower topic: Its risks are understood through the dose, route, and duration of arsenic exposure.
ThalliumNarrower topic: Thallium’s severe effects make it a subject of clinical and environmental toxicology.
BromoformNarrower topic: Toxicology explains why historical medicinal use of bromoform was abandoned.
GalinstanNarrower topic: Galinstan’s appeal depends partly on comparing its hazards with mercury’s, not assuming it is harmless.
Mathieu OrfilaNarrower topic: Orfila’s poison research helped shape this broader science.
SolanineNarrower topic: Solanine toxicity is assessed through exposure, biological effects, and risk.
2,4-DinitrophenolNarrower topic: DNP is a classic example of toxicity caused by disruption of cellular energy metabolism.
Alexander GettlerNarrower topic: Gettler brought this broader science into the specialized work of medicolegal investigation.
Animal testing of cosmeticsNarrower topic: Cosmetic animal tests are one application of toxicological assessment.
Appeal to natureNarrower topic: Natural origin neither proves safety nor danger; toxicology assesses exposure and effects directly.
Conium maculatumNarrower topic: Toxicology explains how Conium alkaloids produce symptoms and guide clinical treatment.
Disorders of Environmental OriginNarrower topic: It explains how environmental hazards produce injury and disease.
ParaquatNarrower topic: Paraquat’s poisoning risks are central to decisions about handling and use.
StrychnineNarrower topic: Strychnine is a classic subject for studying dose, mechanism, and toxic effects.
Toxic injuryNarrower topic: Toxic injury is one outcome examined within this broader discipline.