The research explores the complex array of neurophysiological factors that may influence the sense of thrill that drivers experience when behind the wheel
24 August 2026
Castrol has published the findings of a new independent study to identify the science behind the ‘thrill of driving’. The research explores the complex array of neurophysiological factors that may influence the sense of thrill that drivers experience when behind the wheel, the relative importance of speed, and the ‘sweet spot’ where the individual is in a ‘flow’ state and driving thrill is at its peak
Participants in the study wore brain, eye, heart and skin monitoring equipment during five different tests where they drove or were driven, all carried out at a dedicated track facility in the UK. The capture and analysis of large volumes of neurophysiological data was handled by Brainbox, a UK-based neuroscience company that provides advanced brain research technology, training, and scientific support for organisations conducting research and clinical trials.
The Castrol EDGE ‘Thrill of Driving’ Study suggests that driving thrill comes from the convergence of three key factors in an elevated state: visceral (intense state of mental and physical stimulation), intellectual (how engaged the mind is on the given task) and emotional (identifying the balance of excitement versus fear).
If any of these three factors go beyond a level that feels manageable for the individual driver (and this can differ substantially from one individual to the next), they can become overwhelmed by the different external stimuli and the experience tips from thrill into a state of fear. From a neurophysiological perspective, the key stress indicators such as heart rate and eye movement shift into a less consistent, less managed pattern.
The study suggests how, beyond any other factor, a sense of controlled immersion is essential for creating the thrill of driving. Notably, while speed is one of multiple contributory factors that heighten the sense of thrill, it is certainly not a primary determinant. Indeed, the thrill criteria were met consistently for the test subjects during the study’s karting session on a tight and technical circuit where outright speeds were modest, but where the essential visceral, intellectual and emotional thresholds for driving thrill were all met.
The Castrol EDGE ‘Thrill of Driving’ Study also suggests that thrill was associated with participants feeling highly focused and in control within a managed, closed-course environment. This is when they may enter a neurophysiological ‘flow’ state.
“Thrill isn’t about speed, it’s about focus. The data shows real thrill as the moment a driver locks in completely, and it can be seen across the brain, heart and eyes."
Castrol commissioned the research as part of its ‘data engineered’ ethos for product development, highlighting the capabilities of Castrol EDGE, which has been data engineered for ultimate performance*.
"Crucially, we identified that you don’t need a supercar to experience driving thrill; you can experience almost the same sense of immersive control without high speeds, from a visit to a local karting track or a drive along one of your favourite roads. This study examines how that sense of thrill can be found in every driver."
By working with vehicle manufacturers and motorsport teams over many decades, Castrol has accumulated extensive data and technical insights, which it uses to inform the development of Castrol EDGE, its performance-focused flagship engine oil.
Note: The activity referenced in the study was conducted on closed tracks and dedicated facilities under professional supervision. The findings should not be taken as encouraging high-speed, competitive or performance driving on public roads.
The Brainbox analysis used for The Castrol EDGE ‘Thrill of Driving’ Study was multi-modal, capturing and cross-referencing different neurophysiological markers for visceral, intellectual and emotional response. These included:
The test subjects were asked to drive or be driven in a variety of managed scenarios, each selected to benchmark response to varied speeds and involving different external stimuli, and with each posing different levels of physical and mental challenge. All testing was conducted in strictly controlled conditions away from the public highway at the PalmerSport facility in Bedfordshire, England, using professional instructors to guide the participants on how to drive the vehicles safely and confidently.
The tests included:
The test process that stood out as the most thrilling was that where the subjects drove a McLaren Artura GT4 race car. This showed the highest level of brain and body arousal, coupled with the strongest signs of cognitive immersion and physical control. It also saw the test subjects demonstrate the signatures of a ‘flow’ state, where they were operating at the edge of their performance. Brain activity associated with deep focus was at its highest, the body’s alertness and engagement were elevated, and eye movements showed intense concentration.
The Artura drivers kept their eyes on the ideal racing line for longer when cornering (an average of 70 ‘apex-lock’ fixations per minute) and they blinked very infrequently (just 2.5 times per minute – remarkably low compared to 15 to 20 times in a resting state). All of this points to them having a sense of being fully in control and immersed in the driving experience.
During an enjoyable ‘thrill’, the front of the brain – the area responsible for attention and decision-making – shows more ‘theta’ brain waves, which are linked to deep focus, while maintaining healthy alpha activity associated with calm alertness. This positive pattern was found most strongly the test sessions in the McLaren Artura GT4 and single-seat karts, with high frontal-midline theta (4–8 Hz) and moderate alpha (8–12 Hz) in the EEG tests.
Excitement and fear may feel similar physically, but the Castrol EDGE ‘Thrill of Driving’ Study shows how the brain responds very differently.
The fear state was most evident in the JPLM passenger ride test, where the study found more of the fast beta brain waves that are linked to stress and anxiety, while the focus-related theta and calming alpha activity decreased. This reflects a brain that is becoming overwhelmed rather than fully engaged, with high beta and a marked drop in alpha and theta – the signatures of cognitive overload.
While thrill is evident in a smooth, anticipatory gaze, with fear the eye-tracking equipment identified erratic and reactive eye movement. For example, in contrast to when the subjects were driving the McLaren Artura GT4 (2.5 blinks and 70 eye fixations per minute), when they were being driven by the professional driver they blinked 40 times and there were 190 separate eye fixations when the car was cornering.
The average (mean) heart rate differed markedly across the different driving tests, peaking at an additional 43.8 beats per minute when driving the McLaren, versus an additional 16 beats per minute during the off-road driving session. However, thrill isn’t just about an elevated heart rate; this is apparent with fear also. Instead, driving thrill is evidenced by low but changeable heart rate variability (HRV), whereas fear pushes HRV to very low levels.
The study underscores how intensity is not the same as enjoyment; the brain data that was generated helping to separate intensity (neurophysiological arousal) from emotional direction (a positive or negative response to the situation).
The Castrol study also underscored the importance of focus and control versus outright speed in creating the thrill of driving.
Of all the different driving scenarios, the participants’ thrill peaked when they drove the McLaren race car on the circuit. However, when they were being driven at similar speeds in the JPLM race car on track, the thrill rating was lowest in the ranking of different tests, below both the karting session which was completed at relatively slow speeds, and the off-road driving session where speeds averaged just 5mph / 8km/h. While the high-speed passenger ride showed elevated markers in terms of neurophysiological response, the data read as anxiety, not thrill.
To learn more about Castrol EDGE
High-resolution images and video can be found here:
* Across the Castrol engine oils portfolio only Castrol EDGE demonstrates ultimate performance by surpassing the limits of industry specifications, as well as either obtaining multiple formulation defining OEM specifications or undergoing formulation co-engineering with an OEM across 7 critical factors of: Pressure, Power, Endurance, Fuel Economy, High Temp performance, Cleanliness and Wear (> 80% of Castrol EDGE products based on global 2024 portfolio volume sales)