PubMed HealthSearch

PubMed · 6906267

Implications for future studies in humans.

Abstract

While an environmental link with cancer is widely accepted, its implications are not always understood. Because of the multistage nature of carcinogenesis, it is insufficient to study initiation only at the level of the 'target cell', since events before and after initiation may prove pivotal to neoplastic development. Estimates of the relative contributions of factors causing human cancer are briefly summarized. Tumours related to patterns of life style--including diet and behaviour--and individual susceptibility are discussed. It is in this group of tumours that metabolizing enzymes are probably most significant, especially for weak initiating stimuli, whether extrinsic or intrinsic. There are few epidemiological data available at present but future research can be suggested, to improve the definition in biochemical terms of individual susceptibility and effects of life style.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J Higginson. 1980. Implications for future studies in humans.. https://doi.org/10.1002/9780470720592.ch19

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

The inversion In(2L)t impacts complex, environmentally sensitive behaviors in Drosophila melanogaster.

Genetic variation in behavioral traits allows organisms to respond and adapt to environmental challenges. Genetic variation in behavior is often affected by many genes and thus has a complex genetic basis. Inversions, the reorientation of genes along the chromosome, tightly link genetic variants together because they suppress recombination. Therefore, inversions are believed to have a major impact on phenotypic variation because they combine the effects of multiple genes, which can pleiotropically alter multiple aspects of behavior. This study investigates how the inversion In(2L)t, found in Drosophila melanogaster populations around the world, impacts different aspects of behavior in an environment-sensitive manner. We test the activity, foraging, and startle-induced behavior of flies with different In(2L)t genotypes across sex and temperatures. We observe that Drosophila homozygous for In(2L)t sleep less frequently, spend more time away from a food source, and have a longer duration of startle response. Additionally, the impacts of In(2L)t on aspects of behavior can be sex-specific and are largely consistent across temperatures. Taken together, our research demonstrates that inversions can regulate aspects of behavior, and suggests hypotheses explaining the distribution of In(2L)t across space and time.

Behavior

Cortical oscillations and the origin of express saccades.

The latencies of visually guided saccadic eye movement can form bimodal distributions. The 'express saccades' associated with the first mode of the distributions are thought to be generated via an anatomical pathway different from that for the second mode, which comprises regular saccades. The following previously published observations are the basis for a new alternative model of these effects: (i) visual stimuli can cause oscillations to appear in the electroencephalogram; (ii) visual stimuli can cause a negative shift in the electroencephalogram that lasts for several hundreds of milliseconds; and (iii) negativity in the electroencephalogram can be associated with reduced thresholds of cortical neurons to stimuli. In the new model both express and regular saccades are generated by the same anatomical structures. The differences in saccadic latency are produced by an oscillatory reduction of a threshold in the saccade-generating pathway that is transiently produced under certain stimulus paradigms. The model has implications regarding the functional significance of spontaneous and stimulus-induced oscillations in the central nervous system.

Behavior