intervene in individual thought processes, there is
a real risk of breach of the right to mental privacy
and freedom of thought.194 The concern around this
notion is that memories will be recovered via an
intrusion into a person’s mental privacy and integrity,
when they would otherwise be forgotten.195 Likewise,
considering the malleability of long‑term memories,
the permissibility of memory recovery technology
could open doors to malicious application of this
kind of intervention, including memory alteration.
Criminal responsibility
The inclusion of neurotechnology in the criminal
justice system may also have significant implications
for the manner in which cases are heard, even
altering the tests used in court.
In determining whether a person is criminally
responsible for the crime committed, in most cases,
with the exception of strict liability offences, they
must have the requisite mental state, or mens rea, at
the time they committed the crime.196 The premise
behind this principle is that ‘it is generally neither fair
nor useful to subject people to criminal punishment
for unintended actions or unforeseen consequences
unless these resulted from an unjustified risk’.197 Due
to direct intervention with the offender’s mind, the
lines between sole responsibility and ‘third party’
involvement are blurred when neurotechnology is
involved which can have implications as to how the
current legal tests apply.
For example, when it comes to crimes committed
due to an impulse where the offender cannot
physically resist committing the offence, BCIs could
be installed to alert the offender of an impending
impulse to offend.198 This may have implications
when it comes to a court’s consideration of the
mens rea element, but precisely how it would be
interpreted remains an open question. Where
the offender is aware that they may commit a
crime, but actively ignore warnings, could criminal
responsibility be traced back to the moment they
ignored the implant’s notification or turned off the
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BCI?199 Alternatively, does the notification by the
implant indicate that these impulses exist separate
from a conscious intent to commit the crime?
Similarly, where this BCI malfunctions, the court will
have to consider this as an external influential factor
either in the analysis of mens rea or as a mitigating
factor during sentencing.200
Sentencing
Neurotechnology may also potentially extend to
applications in the period after adjudication, as part
of the sentencing process or even as an alternative
to incarceration. A key perceived advantage when
compared to conventional sentencing options
is that neurotechnology may provide a greater
focus on rehabilitation by reducing the risk of
reoffending.201 Forms of rehabilitation such as
cognitive behavioural therapy and education
programs are favoured over more biological
approaches such as neurotechnology, which
can be highly invasive in nature.202 However, the
conventional solutions may fail to consider the
‘extensive interplay of the environment and biology
and the plasticity of the brain in response to
environmental influence’ and that more effective
forms of rehabilitation may ensure public safety.203
By reducing tendencies which lead to a pattern of
criminal behaviour, these interventions do not act
as a ‘biological fix’.204 Examples of such mechanisms
include neurotechnology which identifies neural
precursors that trigger feelings of aggression and
then stimulates the brain to calm the subject down,
allowing them to make rational decisions after
obstructive influences, such as aggression, are no
longer present.205
In the Netherlands, a judge can impose mandated
mental health treatment after incarceration
where the period of treatment carries from four
years or as long as the judge deems necessary.206
Neurotechnology may be offered as part of such
mandated mental health treatment in an effort
to aid the process for rehabilitation and eventual
Protecting Cognition: Background Paper on Human Rights and Neurotechnology