An intercontinental comparison of chironomid palaeotemperature inference models: Europe vs North America
Publication date
1999
Authors
Lotter, A.F.
Walker, I.R.
Brooks, S.J.
Hofmann, W.
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Document Type
Article
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Abstract
Chironomid-temperature inference models based on North American, European and combined surface sediment training sets were
compared to assess the overall reliability of their predictions. Between 67 and 76% of the major chironomid taxa in each data set
showed a unimodal response to July temperature, whereas between 5 and 22% of the common taxa showed a sigmoidal response. July
temperature optima were highly correlated among the training sets, but the correlations for other taxon parameters such as tolerances
and weighted averaging partial least squares (WA-PLS) and partial least squares (PLS) regression coefficients were much weaker.
PLS, weighted averaging, WA-PLS, and the Modern Analogue Technique, all provided useful and reliable temperature inferences.
Although jack-knifed error statistics suggested that two-component WA-PLS models had the highest predictive power, intercontinental
tests suggested that other inference models performed better. The various models were able to provide good July temperature
inferences, even where neither good nor close modern analogues for the fossil chironomid assemblages existed. When the models were
applied to fossil Lateglacial assemblages from North America and Europe, the inferred rates and magnitude of July temperature
changes varied among models. All models, however, revealed similar patterns of Lateglacial temperature change. Depending on the
model used, the inferred Younger Dryas July temperature decrease ranged between 2.5 and 6 0C.