Linked from
The 106 pages that link to Bioindicator, each with the reason it gives.
IsopodaRelated: Isopod abundance and contaminant accumulation can help assess soil pollution.
OtterRelated: Otter health can reveal contaminant exposure and changes in aquatic habitats.
AmphipodaRelated: Amphipod abundance and health can reveal changes in sediment quality and aquatic pollution.
CarexRelated: Carex species distributions can help characterize moisture, soil, and habitat conditions.
Fiddler crabRelated: Fiddler crab abundance and behavior can reflect changes in intertidal habitat quality.
Lake ecosystemRelated: Lake species and communities can reveal pollution, oxygen stress, or habitat change.
OligochaetaRelated: Some freshwater oligochaetes indicate organic pollution and low oxygen.
CorixidaeRelated: Corixidae abundance and species composition can contribute to assessments of freshwater habitats.
European perchRelated: Perch health and contaminant levels can help assess conditions in aquatic ecosystems.
DamselflyRelated: Damselfly abundance and community composition can reflect the condition of freshwater habitats.
Ground beetleRelated: Carabid community composition can signal changes in habitat or land management.
HalfbeakRelated: Surface-dwelling halfbeaks can reflect changes in shallow-water habitat and water quality.
LinyphiidaeRelated: Linyphiid communities can help indicate habitat structure and environmental change.
PlecopteraNarrower topic: Stoneflies are used as indicators of stream habitat and water quality.
RanidaeRelated: Ranid population changes can signal pollution, habitat alteration, or infectious disease.
Sea snailRelated: Changes in some marine gastropod populations can signal pollution or habitat change.
SpringtailRelated: Springtail abundance and community composition can reflect soil quality and disturbance.
Water beetleNarrower topic: Water beetle presence and community composition can provide evidence about local habitat quality.
Black-crowned night heronRelated: Changes in its populations can contribute evidence about wetland ecosystems.
Freshwater snailRelated: Snail communities can reflect water chemistry, habitat change, and pollution.
GobioideiRelated: Some gobioid populations help researchers track habitat change and contaminant exposure.
JuncusRelated: Juncus abundance can help characterize wetness and disturbance at a site.
Land snailRelated: Land snails can reflect pollution and habitat changes because they contact soil and accumulate contaminants.
Lobaria pulmonariaNarrower topic: Lungwort’s sensitivity to habitat and pollution makes it useful in ecological surveys.
MegalopteraRelated: Megalopteran larvae can inform assessments of freshwater habitat quality.
NecturusRelated: Necturus populations can help assess the condition of aquatic habitats.
NymphalidaeRelated: Changes in nymphalid abundance and distribution can track habitat and climate shifts.
PlethodontidaeRelated: Their permeable skin and habitat sensitivity can make plethodontids informative in ecosystem monitoring.
PsocopteraRelated: Barklice assemblages can reflect habitat features such as vegetation and surface growth.
SpirogyraRelated: Changes in Spirogyra growth can help characterize local water conditions, though they are not uniquely diagnostic.
StenothermRelated: The presence or decline of stenotherms can signal shifts in local temperature conditions.
Tree frogRelated: Their permeable skin and habitat dependence make some tree frogs sensitive to pollution and ecological disruption.
TubifexRelated: High Tubifex abundance can signal organically enriched, oxygen-poor sediments.
BryologyRelated: Bryophyte abundance and chemistry can reveal patterns of pollution and habitat change.
Crested penguinRelated: Changes in breeding success can signal shifts in prey availability and marine conditions.
CryptomonadRelated: Cryptomonad abundance and community composition can help characterize aquatic habitats.
DesmidialesNarrower topic: Desmid communities can reflect water chemistry and habitat quality.
DytiscusRelated: Dytiscus occurrence can contribute to assessments of pond and lake habitats, though it is not a universal water-quality measure.
Eastern newtRelated: Amphibian sensitivity makes newt populations useful in assessing habitat change.
Flathead grey mulletRelated: Its exposure to coastal contaminants makes the species useful in pollution studies.
Freshwater crabRelated: Local crab populations can respond to pollution and habitat disturbance, though they are not universal indicators.
HippoideaRelated: Mole crab populations can reflect changes in beach conditions and food supply.
LibellulaRelated: Dragonflies’ aquatic immature stages make their presence relevant to freshwater assessments.
MergusNarrower topic: Mergansers can reflect the condition of fish-bearing aquatic habitats.
NepomorphaRelated: Changes in aquatic true-bug communities can help characterize freshwater habitats.
NereididaeRelated: Nereidid populations can reflect changes in sediment quality and coastal pollution.
ProtistologyRelated: Protist communities can reveal changes in water quality and ecosystem disturbance.
RanatraCompared with: Ranatra may occur in freshwater surveys, but its presence alone does not establish water quality.
River kingfisherRelated: Changes in kingfisher populations can reflect shifts in aquatic prey and habitat quality.
SaldidaeRelated: Shore-bug records can contribute to assessments of local habitat and biodiversity.