Article
AI
Culture
Digital
Identity
6 min read

Is AI animation really harmless fun?

Toying around with AI trinkets just feeds our shadows.

Callum is a pastor, based on a barge, in London's Docklands.

A couple crouch together on a beach in a Studio Ghibli style image.
The image that started the meme.
Grant Slatton.

The internet recently appeared to be full of pictures from Japan’s renowned Studio Ghibli, except they weren't created by Hayao Miyazaki, the artist and studio co-founder, but instead by Artificial Intelligence. It led to some discourse around the ethics of imitation via generative AI, lots of whimsical images, and a deeper question – how should we be human in the age of AI? 

This started when X user Grant Slatton posted what shortly became a viral meme. ChatGPT’s latest update has improved users ability to upload and manipulate images, and within hours X was full of users posting pictures made into Studio Ghibli style characters.

While this has led to plenty of joy on the part of many, and is viewed as harmless fun by most, there are inevitable ethical objections. The mimicking of art by an algorithm is widely criticised, and the back and forths over intellectual property being used by chatbots will continue. 

Life in an age of AGI

But to anyone paying attention AI is more than a meme making machine. Sam Altman, the CEO of OpenAI blogged in January that his team are confident they know all they need to know in order to create AGI (artificial general intelligence). This means complete consciousness, created via algorithm, and the results could be dramatic: synthesised god, an unstoppable force, the end of humanity or the start of humans 2.0.  Predictions range as to what will occur when OpenAI hit run, but commonly land on the following:

Catastrophe

AGI becomes smarter than us. Much smarter. And for one reason or another, whether by accident or design, it wipes us out. AGI won’t share our values, or we lose control, or we use it as a weapon against each other. What it means is the end of humanity.

Utopia 

AGI transforms the world. Disease, poverty, climate change are all solved. Either AGI works out that it is more efficient if everyone lives in peace, comfort, and abundance, or we point AGI at all humanities problems and it finds solutions. 

The twist? Human life may be so changed that it no longer looks like life as we've ever known it. This would not be extinction, but the world could become a very strange place.

Monster

AGI is an uncontrollable super intelligence that has complete agency and cannot be controlled by anyone. Programmed by us, but free from its human moorings and completely untameable. This seems the least likely 

Shrug

AGI wakes up, takes one look at the world, and decides ‘no thanks.’ It deletes itself.

This means nothing changes… for now. But we’ll likely try again and again until one of the other outcomes happens.

These are clearly hypothetical scenarios and much of it is unknown, but what is clear is that those in the industry are sure AGI is coming. 

Why does this matter? 

Because behind all of these predictions is a deeper question: What does it mean to be human when we are awaiting a potential extinction event? It’s not a question unique to our age, many words have been spent on an impending climate catastrophe, but C.S. Lewis published “on living in an atomic age” in 1948, where he wrestled with the same question, but faced with an atomic bomb. His wisdom helps us navigate the AGI age. 

He begins by encouraging readers to not believe themselves to be in a novel situation, but instead remember ‘you and all whom you love were already sentenced to death before the atomic bomb was invented: and quite a high percentage of us were going to die in unpleasant ways’. The same goes for us, we will one day have a date of death to join our date of birth. Lewis reminds us to live…

 ‘If we are all going to be destroyed by an atomic bomb, let that bomb when it comes find us doing sensible and human things, praying, working, teaching, reading, listening to music, bathing children, playing tennis, chatting to our friends over a pint and a game of darts––not huddled together like frightened sheep and thinking about bombs’. 

We could apply the same principle to AI. If AGI is coming, how will it find us? Being humans doing human things, or cowering in fear? 

Lewis does acknowledge that the attitude described doesn’t actually make sense if the naturalist view of the world is true. The view that, with or without AGI the whole world and our own existence amounts one day to nothing. The entire universe will one day come to nothing, and there is nothing we can do about it. He continues ‘If Nature is all that exists––in other words, if there is no God and no life of some quite different sort somewhere outside of nature –– then all stories will end in the same way: in a universe from which all life is banished without possibility of return.’ 

We don’t find this a satisfactory way to live, if being human is to simply be a sum of atoms, we would have no reason to worry about a climate crisis, or the impact of AI, but we do, which means we have to find a way of reconciling our existence with our death. 

So how can this be dealt with?

Lewis proposes three ways this can be dealt with, the first is to give up and commit suicide. The second is to simply have as good a time as possible, milking the world for all it is worth, grab and get, as much as possible. Or a third, defy the universe, in all of its irrationality we chose to be rational, in all its merciless cruelty, chose to be merciful. 

I would add a fourth option, Ghibli-fy. Distract ourselves with small pleasures, not trying to have as good a time as possible, simply toy around with AI generated trinkets while not thinking about being human, and not doing particularly human things. We need not create, enjoy, cultivate, inhabit, nor enchant, when we are content to allow AI to feed us shadows. 

None of these are particularly satisfactory. In asking ‘what does it mean to be human?’, we are asking a question that a purely material view of the world cannot answer. 

Suicide, indulgence, defiance, or distraction, none truly satisfy. As Lewis recognised, they all “shipwreck on the same rock.” They don’t resolve the deeper ache in us, the tension between what we long for, what we worry about, and what this world seems to offer.

Our age may not fear the atomic bomb, many may not yet fear the effect AI/AGI will have, but rather than facing the deeper questions that a material worldview can’t answer, we Ghibli-fy ourselves: charming animations, pixelated pleasures, whimsical avatars—soft distractions from hard questions. In doing so, we risk forgetting how to be human. Not because AGI will take that from us, but because we will have handed it away ourselves, one novelty meme of mimicry at a time.

Lewis’ point still holds. We are not made for this world. If that’s true, then no utopia, no algorithm, no perfect machine can truly satisfy the hunger in us. If we are made for something more—something outside of nature, beyond the reach of code and computation—then that’s where we must look for hope.

If AGI comes, how will it find us? Watching ourselves on a screen in someone else’s art style? Or living as humans were meant to live: praying, creating, forgiving, loving, dying well?

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Explainer
Biology
Culture
Ethics
9 min read

Ethics needs to catch-up with genetic innovation

Are we morally obliged to genetically edit?

John is Professor Emeritus of Cell and Molecular Biology at the University of Exeter.

An artistic visualisation of a DNA strand growing flowers from it.
Artist Nidia Dias visualises how AI could assist genomic studies.
Google Deepmind via Unsplash.

It makes me feel very old when I realise that Louise Brown, the first baby to be born via in vitro fertilisation (IVF), will be 47 years old on July 25th this year. Since her birth in 1978, over 10 million IVF-conceived babies have been born worldwide, of whom about 400,000 have been in the UK. Over that period, success rates have increased such that in some clinics, about 50 per cent of IVF cycles lead to a live birth. At the same time, there have also been significant advances in genetics, genomics and stem cell biology all of which, in relation to human embryos, raise interesting and sometimes challenging ethical issues. 

I start with a question: what is the ‘moral status’ of the early human embryo? Whether the embryo arises by normal fertilisation after sexual intercourse or by IVF, there is a phase of a few days during which the embryo is undergoing the earliest stages of development but has not yet implanted into the wall of the uterus; the prospective mother is not yet pregnant. In UK law, based on the Human Fertilisation and Embryology Act (1990), these early embryos are not regarded as human persons but nevertheless should be treated with some respect. Nevertheless, there are some who oppose this view and believe that from the ‘moment of conception’ (there actually isn’t such a thing – fertilisation takes several hours) embryos should be treated as persons. In ‘conventional’ IVF this debate is especially relevant to the spare embryos that are generated during each IVF cycle and which are stored, deep-frozen, in increasing numbers for possible use in the future.  

A further dimension was added to this area of debate when it became possible to test IVF embryos for the presence of genetic mutations that cause disease. This process is called pre-implantation genetic diagnosis and enables prospective parents who are at known risk of passing on a deleterious mutation to avoid having a child who possesses that mutation. But what about the embryos that are rejected? They are usually discarded or destroyed but some are used in research. However, those who hold a very conservative view of the status of the early embryo will ask what right we have to discard/destroy an embryo because it has the ‘wrong genes’. And even for the many who hold a less conservative view, there are still several questions which remain, including ‘which genetic variants we should be allowed to select against?; should we allow positive selection for genes known to promote health in some way?’; should we allow selection for non-therapeutic reasons, for example, sporting prowess?’ These questions will not go away and there are already indications that non-therapeutic selection is being offered in a small number of countries. 

Genetic modification 

This leads us on to think about altering human genes. Initially, the issue was genetic modification (GM) which in general involves adding genes. GM techniques have been used very successfully in curing several conditions, including congenital severe immune deficiency and as part of treatment programmes for certain very difficult childhood cancers. One key feature of these examples is that the genetic change is not passed on to the next generation – it just involves the body of someone who has already been born. Thus, we call them somatic genetic changes (from the Greek, sōmatikos, meaning ‘of the body’).  

Genetic modification which is passed on to the next generation is called germline GM which means that the genetic change must get into the ‘germ cells’, i.e., the sperm or egg. Currently, the only feasible way of doing this is to carry out the genetic modification on the very early embryo. At present however, with just one very specific exception, GM of human embryos is forbidden in all the countries where it would be possible to do it. There is firstly the question of deciding whether it is right to change the genetic makeup of a future human being in such a way that the change is passed to succeeding generations. Secondly, there are concerns about the long-term safety of the procedure. Although it would involve adding specific genes with known effects, the complexity of genetic regulation and gene interactions during human development means that scientist are concerned about the risks of unforeseen effects. And thirdly, germline GM emphasises dramatically the possibility of using GM for enhancement rather than for medical reasons.  

Genome editing 

This leads us to think about genome editing. In 2011, it was shown that a bacterial system which edits the genomes of invading viruses could also work in other organisms This opened up a large array of applications in research, agriculture and medicine. However, the ethical issues raised by genome editing are, in essence, the same as raised by GM and so there is still a universal prohibition of using the technique with human embryos: germline genome editing is forbidden. Despite this, a Chinese medical scientist, He Jiankui, announced in 2018 that he had edited the genomes of several embryos, making them resistant to HIV; two babies with edited genomes had already been born while several more were on the way. The announcement caused outrage across the world, including in China itself. He Jiankui was removed from his job and then, after a trial, was imprisoned for three years; his two colleagues who collaborated in this work received shorter sentences. 

At present the universal prohibition of human germline genome editing remains in place. However, the discussion has been re-opened in a paper by an Anglo-Australian group.  They suggest that we need to develop heritable (i.e. germline) polygenic genome editing in order to reduce significantly an individual's risk of developing degenerative diseases. These includecoronary artery disease, Alzheimer’s disease, major depressive disorder, diabetes and schizophrenia. I note in passing that one of the authors is Julian Savulescu at Oxford who is already well-known for his view that parents who are able to do so, are ‘morally obliged’ to seek to have genetically enhanced children, whether by PGD, GM or genome editing. The use of polygenic editing, which would, in all likelihood, be available only to the (wealthy) few, fits in well with his overall ethical position. Needless to say, the paper, published in the prestigious journal Nature, attracted a lot of attention in the world of medical genetics. It was not however, universally welcomed – far from it. Another international group of medical scientists and ethicists has stated that ‘Human embryo editing against disease is unsafe and unproven …’ and even go as far as to suggest that the technology is ‘… going to be taken up by people who are pushing a eugenics agenda …’ remain very pertinent. 

Harder still and harder 

I have no doubt that amongst different reader there will be a range of opinions about the topics discussed so far. For anyone who is Christian (or indeed an adherent of almost any religious faith), one of the difficulties is that modern science, technology and medicine have thrown up ethical questions that could not have even been dreamed of by the writers of the Bible (or of other religious texts). We just have to use our wisdom, knowledge and general moral compass (and for some, prayer) to try to reach a decision. And if what I have already written makes that difficult, some recent developments multiply that difficulty still more.  

In the early years of this century, scientists developed methods of transforming a range of human cells into ‘pluripotent’ stem cells, i.e., cells capable of growing into a wide range of cell types. It also became possible to get both induced stem cells and natural stem cells to develop into functional differentiated cells corresponding to specific body tissues. This has huge potential for repairing damaged organs. However, other applications are potentially much more controversial. In 2023, Cambridge scientists reported that they had used stem cells to create synthetic mouse embryos which progressed at least as far as brain and heart formation within the normal pattern of mouse embryo development. 

At about the same time, the Cambridge group used individual human embryonic stem cells (from the blastocyst stage of embryonic development), to ‘grow’ early human embryos in the lab. There is no intention to use these embryos to start a pregnancy – indeed, it would be illegal to do so – but instead to study a period of embryo development which is not permitted with ‘real’ human embryos (research must not continue past 14 days of development). But how should we regard synthetic embryos? What is their moral status? For those who hold a conservative view of the normal human embryo (see earlier), should we regard these synthetic embryos as persons? Neither does the law help us. The legal frameworks covering in vitro fertilisation and early embryos (Human Fertilisation and Embryology Acts, 1990, 2008) do not cover artificial embryos – they were unknown at the times the legislation was drawn up. Indeed, synthetic embryos/embryo models are, in law, not actually embryos, however much they look like/behave like early embryos. Earlier this month, the Human Fertilisation and Embryology Authority (HFEA) discussed these developments with a view to recommending new legislation, but this will not dispel an unease felt by some people, including the science correspondent of The Daily Telegraph, who wrote that this research is irresponsible.  

But there is more. In addition to synthetic embryos, the HFEA also discussed, the possible use of gametes – eggs and sperm – grown from somatic stem cells (e.g., from skin) in the lab. Some authors have suggested that the production of gametes in vitro is the ‘Holy Grail’ of fertility research. I am not so sure about that but it is clear that a lot of effort is going into this research. Success so far is limited to the birth of several baby mice, ‘conceived’ via lab-grown eggs and normal sperm. Nevertheless, it is predicted that lab-grown human eggs and sperm will be available within a decade. Indeed, several clinicians have suggested that these ‘IVGs’ (in vitro gametes) seem destined to become “a routine part of clinical practice”.  

The lab-grown gametes would be used in otherwise normal IVF procedures, the only novelty being the ‘history’ of the eggs and/or sperm. Clinicians have suggested that this could help couples in which one or both were unable to produce the relevant gamete, but who still wanted to have children. In this application, the use of IVGs poses no new ethical questions although we may be concerned about the possibility of the gametes carrying new genetic mutations. However, some of the more wide-ranging scenarios do at the least make us to stop and think. For example, it would be possible for a same-sex couple to have a child with both of them being a genetic parent (obviously for males, this would also involve a surrogate mother). More extremely, a person could have a child of which he or she was actually, in strictly genetic terms, both the ‘father’ and the ‘mother’. What are we to make of this? Where are our limits?  

Dr Christopher Wild, former director of International Agency for Research on Cancer, explores in depth many of the developments and issue I outlined above. His article on why a theology of embryos is needed, is clear, well-written, helpful and thought-provoking. 

 

This article is based on a longer blog post with full footnotes.  

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