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Riccardo Baschetti

Publications and source records attributed to Riccardo Baschetti.

17 recordsLinked to original sources

The dawn of science-based moral reasoning.

In 1998, Edward O. Wilson discussed the biological basis of morality, pointed out that the analysis of its material origins should enable us to fashion a wise ethical consensus, and predicted the dawn of science-based moral reasoning. This article testifies that his prediction was right. Morality, being based on altruism and collaboration, evolved as a socially advantageous biological phenomenon aimed at ensuring the survival of our species, which was structured in small groups at high risk of extinction for the 99.5% of its existence. In the last 0.5%, the advent of agriculture resulted in a demographic explosion that impaired human beings' moral discernment, because the socially detrimental consequences of immoral actions, which had been recognised and condemned promptly in small groups consisting of a few tens of members, were diluted among millions of untouched individuals, thereby becoming less easily recognisable. Nowadays, to test the supposed morality of individual actions and government policies, we should use reason or, in doubtful cases, mathematical modelling to determine their predictable effects on the survival of small theoretical communities. Unless we untenably claim that the unlikelihood of extinction of today's immense societies entitles us to overturn the meaning of morality, all actions and policies that would cause the extinction of small communities should be regarded as indisputably immoral. This article also presents some examples of science-based moral arguments showing the immorality of restrictions and bans on research with human embryonic stem cells and demonstrates that the old concept of the "naturalistic fallacy", which philosophers frequently invoke to dismiss any scientific approach to morality, is no longer tenable, because it increasingly emerges to be a proof of what may well be defined the "philosophical fallacy".

Biological Evolution↗

Chronic fatigue.

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Addison Disease↗

Evolutionary, biological origins of morality: implications for research with human embryonic stem cells.

Medical research with human embryonic stem cells, despite its enormous potential to reduce human suffering, is banned in many countries and heavily restricted in others. "Moral reasons" are invoked to justify bans and restrictions on this promising research. Rather surprisingly, while those moral reasons have been extensively discussed and hotly debated in several papers, not a single article on the moral aspects of that research has attempted to answer this fundamental question: What is morality? Considering that a scientifically objective definition of morality is essential to determine whether those moral reasons are justified or groundless, this article focuses on the evolutionary origins of morality and its biological basis. Morality arose as a selectively advantageous product of evolution and preceded all religions and philosophies by millions of years. For the 99% of humankind's evolution, morality was axiomatically aimed at reducing the sufferings of the social members, because pains and afflictions, as expressions of diseases and impairments, tended to hasten the extinction of the small ancestral groups, which characteristically consisted of a few tens of members. Had the therapeutic use of human embryos been available in remote times, our ancestors would have deemed it unquestionably immoral to save amorphous and microscopic agglomerates of insensitive cells representing neither parental nor social investment, at the expense of the lives of the suffering members of their little communities. Unless we venture the untenable thesis that the unlikelihood of extinction of our immense societies entitles us to overturn the meaning of morality, we cannot but conclude that bans and restrictions on research with human embryonic stem cells are patently immoral.

Altruism↗

Evolutionary legacy: form of ingestion, not quantity, is the key factor in producing the effects of sugar on human health.

Tens of dietary trials have been conducted to investigate the metabolic effects of sugar (sucrose) and its impact on human health. All of those studies took into account only the quantity of ingested sugar. By contrast, not a single study attempted to assess whether the form in which sugar is consumed plays a role in producing its metabolic effects. The failure of cohorts of researchers to specify how they administered sugar in their dietary trials may well explain why the results of those studies are extremely contradictory. These discrepant findings, understandably, resulted in conflicting opinions about sugar and in divergent guidelines about its recommended consumption. The evolutionary line of reasoning expounded in this article leads to conclude that the form in which sugar is ingested, not its quantity, constitutes the most important factor in producing the metabolic effects of sugar and its impact on human health. As a consequence, for example, the consumption of 100 g of sugar per day can be either detrimental or innocuous, depending on the form in which sugar is ingested. Specifically, the evolutionary hypothesis advanced in this paper implies that sugar can predispose to type 2 diabetes and can cause unhealthy changes in blood lipids if it is consumed in solid forms or in dense solutions containing more than 250 g/L, whereas sugar is harmless if it is consumed in more dilute concentrations. This evolutionary hypothesis, in view of its intuitively far-reaching clinical implications, should be tested by at least one dietary trial.

Administration, Oral↗