Neurophenomenology in the second decade of the 21st century: a systematic review

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Viviana Andrea Arboleda Sánchez

Abstract

Neurophenomenology has established itself as an interdisciplinary research program, aimed at integrating first-person experience with findings from empirical studies of nervous system activity. Objective: To analyze recent empirical evidence in neurophenomenology, identifying the main lines of research, the methodologies used and the emerging trends in the integration between phenomenology, neuroscience and consciousness. Methodology: The review was developed following the PRISMA 2020 guidelines. The inclusion criteria included empirical studies published between 2021 and 2026, which integrated first-person experiential reports with measurements. The source of information was the Web of Science (WoS) database, consulted between January 1 and February 20, 2026 using the descriptor "Neurophenomenology". We assessed risk of bias using the Mixed Methods Appraisal Tool (MMAT). The results were synthesized through a structured narrative synthesis. Results: The search yielded 443 records, of which 166 met the temporal criterion. 128 studies were assessed for eligibility and 15 met the inclusion criteria. The findings revealed that emerging lines of research focus on meditation and self-awareness; mind wandering, empathy and social cognition; hypnosis and pain; as well as psychopathology of the self and altered states of consciousness, integrating qualitative and quantitative techniques. Discussion: Although the field continues with a remarkable methodological heterogeneity, there is a growing empirical consolidation of neurophenomenology as a research framework that articulates first-person lived experience and neural activity in the study of consciousness.

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References

Arboleda, V. A. y Restrepo, F. (2025). Autismo, neuronas espejo y ser-en-el-mundo: una aproximación de la neurofisiología a la neurofenomenología. Ánfora, 32(58), 45-70. https://doi.org/10.30854/anf.v32.n58.2025.1104

Barata, V. A., Lavoie, S., Gawęda, Ł., Li, E., Sass, L. A., Koren, D., McGorry, P. D., Jack, B. N., Parnas, J., Polari, A., Allott, K., Hartmann, J. A., Krcmar, M., Rasmussen, A. R., Whitford, T. J., Wannan, C. Mj., & Nelson, B. (2025). The neurophenomenology of basic self-disturbance in early psychosis: Association with clinical outcome in an ultra-high risk sample. Australasian Psychiatry, 33(4), 736–741. https://doi.org/10.1177/10398562251346619

Chowdhury, A., Bianciardi, M., Chapdelaine, E., Riaz, O. S., Timmermann, C., van Lutterveld, R., Sparby, T., & Sacchet, M. D. (2025). Multimodal neurophenomenology of advanced concentration absorption meditation: An intensively sampled case study of Jhana. NeuroImage, 305, 120973. https://doi.org/10.1016/j.neuroimage.2024.120973

Černe, J., & Kordeš, U. (2023). Deconstructing accurate and inaccurate recall in the DRM paradigm: A phenomenological and behavioral exploration. Constructivist Foundations, 19(1), 38–59. https://constructivist.info/19/1/038

Dreyfus, H. L. (1991). Being-in-the-world: A commentary on Heidegger’s Being and Time, Division I. MIT Press.

Froese, T. (2012). From adaptive behavior to human cognition: a review of Enaction. Adaptive behavior, 20(3), 209-221. DOI: 10.1177/1059712311433892

Froese, T., & Gallagher, S. (2012). Getting interaction theory (IT) together: Integrating developmental, phenomenological, enactive, and dynamical approaches to social interaction. Interaction Studies, 13(3), 436–468. https://doi.org/10.1075/is.13.3.06fro

Gallagher, S. (2003). Phenomenology and experimental design: Toward a phenomenologically enlightened experimental science. Journal of Consciousness Studies, 10(9–10), 85–99.

https://www.ingentaconnect.com/content/imp/jcs/2003/00000010/f0020009/art00007

Gallagher, S. (2005). How the body shapes the mind. Oxford University Press.

Gallagher, S., & Zahavi, D. (2012). The phenomenological mind (2nd ed.). Routledge.

Ganesan, S., Yang, W. F. Z., Chowdhury, A., Zalesky, A., & Sacchet, M. D. (2024). Within-subject reliability of brain networks during advanced meditation: An intensively sampled 7 Tesla MRI case study. Human Brain Mapping, 45(7), e26666. https://doi.org/10.1002/hbm.26666

Govindaiah, P. K., Adarsh, A., Panda, R., Gosseries, O., Malaise, N., Salamun, I., Tshibanda, L., Laureys, S., Bonhomme, V., Faymonville, M.-E., Vanhaudenhuyse, A., & Bicego, A. (2024). Exploring electrophysiological responses to hypnosis in patients with fibromyalgia. Brain Sciences, 14(11), 1047. https://doi.org/10.3390/brainsci14111047

Heidegger, M. (2003). Ser y tiempo. Trotta. (Trabajo original publicado en 1927).

Heimann, K., Boelsbjerg, H. B., Allen, C., van Beek, M., Suhr, C., Lubbert, A., & Petitmengin, C. (2023). The lived experience of remembering a “good” interview: Micro-phenomenology applied to itself. Phenomenology and the Cognitive Sciences, 22(1), 217–245. https://doi.org/10.1007/s11097-022-09844-4

Husserl, E. (2012). La idea de la fenomenología. Herder. (Trabajo original publicado en 1907).

Inwood, M. (1999). A Heidegger dictionary. Blackwell.

Kvamme, T. L., Sarmanlu, M., & Overgaard, M. (2022). Doubting the double-blind: Introducing a questionnaire for awareness of experimental purposes in neurofeedback studies. Consciousness and Cognition, 104, 103381. https://doi.org/10.1016/j.concog.2022.103381

Lewis-Healey, E., Alamia, A., Rey, F., Dunne, J. D., Faria, G., Canales-Johnson, A., Girard, B., & Timmermann, C. (2024). Breathwork-induced psychedelic experiences modulate neural dynamics. Cerebral Cortex, 34(8), bhae347. https://doi.org/10.1093/cercor/bhae347

Luecke, S. (2023). Freediving neurophenomenology and skilled action: An investigation of brain, body, and behavior through breath. Phenomenology and the Cognitive Sciences, 22(4), 761–797. https://doi.org/10.1007/s11097-022-09808-8

Lutz, A., & Thompson, E. (2003). Neurophenomenology: Integrating subjective experience and brain dynamics in the neuroscience of consciousness. Journal of Consciousness Studies, 10(9–10), 31–52.

Martínez-Pernía, D., Cea, I., Troncoso, A., Blanco, K., Calderón Vergara, J., Baquedano, C., Araya-Veliz, C., Useros-Olmo, A., Huepe, D., Carrera, V., Mack Silva, V., & Vergara, M. (2023). “I am feeling tension in my whole body”: An experimental phenomenological study of empathy for pain. Frontiers in Psychology, 13, 999227. https://doi.org/10.3389/fpsyg.2022.999227

Medeiros, S., Crempien, C., Vásquez-Rosati, A., Duarte, J., Andreu, C., Langer, Á. I., Ibaceta, M., Silva, J. R., & Cosmelli Sánchez, D. (2021). Assessing subjective processes and vulnerability in mindfulness-based interventions: A mixed methods exploratory study. Constructivist Foundations, 16(2), 203–220. https://constructivist.info/16/2/203

Merleau-Ponty, M. (1994). Fenomenología de la percepción. Planeta-Agostini. (Trabajo original publicado en 1945).

Moran, D. (2000). Introduction to phenomenology. Routledge.

Nave, O., Trautwein, F.-M., Ataria, Y., Dor-Ziderman, Y., Schweitzer, Y., Fulder, S., & Berkovich-Ohana, A. (2021). Self-boundary dissolution in meditation: A phenomenological investigation. Brain Sciences, 11(6), 819. https://doi.org/10.3390/brainsci11060819

Noë, A. (2004). Action in perception. MIT Press.

Oblak, A., Dragan, O., Ozimič, A. S., Kordeš, U., Purg, N., Bon, J., & Repovš, G. (2024). What is it like to do a visuo-spatial working memory task: A qualitative phenomenological study of the visual span task. Consciousness and Cognition, 118, 103628. https://doi.org/10.1016/j.concog.2023.103628

Overgaard, M. (Ed.). (2015). Behavioral methods in consciousness research. Oxford University Press.

Petitmengin, C., & Lachaux, J.-P. (2013). Microcognitive science: Bridging experiential and neuronal microdynamics. Frontiers in Human Neuroscience, 7, 617. https://doi.org/10.3389/fnhum.2013.00617

Portnova, G. V., Tetereva, A., Balaev, V., Atanov, M., & Skiteva, L. (2019). Association of the retrospective self-report ratings with dynamic parameters of EEG recorded in rest. Heliyon, 5(12), e03094. DOI: 10.1016/j.heliyon.2019.e02533

Potash, R. M., Yang, W. F., Winston, B., Atasoy, S., Kringelbach, M. L., Sparby, T., & Sacchet, M. D. (2025). Investigating the complex cortical dynamics of an advanced concentrative absorption meditation called jhanas (ACAM-J): A geometric eigenmode analysis. Cerebral Cortex, 35(2), bhaf039. https://doi.org/10.1093/cercor/bhaf039

Rudrauf, D., Lutz, A., Cosmelli, D., Lachaux, J.-P., & Le Van Quyen, M. (2003). From autopoiesis to neurophenomenology: Francisco Varela’s exploration of the biophysics of being. Biological Research, 36(1), 27–65.

DOI: 10.4067/s0716-97602003000100005

Sandved-Smith, L., Hesp, C., Mattout, J., & Friston, K. J. (2021). Towards a computational phenomenology of mental action: Modelling meta-awareness and attentional control with active inference. Neuroscience of Consciousness, 2021(2), niab018. https://doi.org/10.1093/nc/niab018

Schweitzer, Y., Trautwein, F.-M., Dor-Ziderman, Y., Nave, O., David, J., Fulder, S., & Berkovich-Ohana, A. (2024). Meditation-induced self-boundary flexibility and prosociality: A MEG and behavioral measures study. Brain Sciences, 14(12), 1181. https://doi.org/10.3390/brainsci14121181

Sherwin, M., Friso, F., Fachner, J., & Politi, M. (2025). Participant experiences of icaros (Amazonian curative songs) during a traditional medicine ceremony at the Takiwasi Center, Peru. Journal of Psychedelic Studies, 9(2), 149–168. https://doi.org/10.1556/2054.2024.00370

Sokolowski, R. (2000). Introduction to phenomenology. Cambridge University Press.

Timmermann, C., Sanders, J. W., Reydellet, D., Barba, T., Luan, L. X., Angona, Ó. S., Ona, G., Allocca, G., Smith, C. H., Daily, Z. G., Mason, N. L., Kloft-Heller, L., Kuchar, M., Janeckova, L., Palenicek, T., Erritzoe, D., Ramaekers, J. G., Carhart-Harris, R. L., & Uthaug, M. V. (2025). Exploring 5-MeO-DMT as a pharmacological model for deconstructed consciousness. Neuroscience of Consciousness, 2025(1), niaf007. https://doi.org/10.1093/nc/niaf007

Trautwein, F.-M., Schweitzer, Y., Dor-Ziderman, Y., Nave, O., Ataria, Y., Fulder, S., & Berkovich-Ohana, A. (2024). Suspending the embodied self in meditation attenuates beta oscillations in the posterior medial cortex. Journal of Neuroscience, 44(26), e1182232024. https://doi.org/10.1523/JNEUROSCI.1182-23.2024

Thompson, E. (2007). Mind in life: Biology, phenomenology, and the sciences of mind. Harvard University Press.

Thompson, E., & Cosmelli, D. (2011). Thompson, E., & Cosmelli, D. (2011). Brain in a vat or body in a world? Brainbound versus enactive views of experience. Philosophical topics, 163-180. 10.5840/philtopics201139119

Thompson, E., & Varela, F. J. (2001). Radical embodiment: Neural dynamics and consciousness. Trends in Cognitive Sciences, 5(10), 418–425. https://doi.org/10.1016/S1364-6613(00)01750-2

Troncoso, A., Blanco, K., Rivera-Rei, Á., & Martínez-Pernía, D. (2024). Empathy bodyssence: Temporal dynamics of sensorimotor and physiological responses and the subjective experience in synchrony with the other’s suffering. Frontiers in Psychology, 15, 1362064. https://doi.org/10.3389/fpsyg.2024.1362064

Varela, F. J. (1996). Neurophenomenology: A methodological remedy for the hard problem. Journal of Consciousness Studies, 3(4), 330–349.

Wrathall, M. (2013). How to read Heidegger. W. W. Norton & Company.

Woods, T. J., Windt, J. M., Brown, L., Carter, O., & Van Dam, N. T. (2023). Subjective experiences of committed meditators across practices aiming for contentless states. Mindfulness, 14(6), 1457–1478. https://doi.org/10.1007/s12671-023-02145-0

Yang, W. F., Chowdhury, A., Sparby, T., & Sacchet, M. D. (2025). Deconstructing the self and reshaping perceptions: An intensive whole-brain 7T MRI case study of the stages of insight during advanced investigative insight meditation. NeuroImage, 305, 120968. https://doi.org/10.1016/j.neuroimage.2024.120968

Zahavi, D. (2003). Husserl’s phenomenology. Stanford University Press.

Zanesco, A. P., Denkova, E., & Jha, A. P. (2021a). Self-reported mind wandering and response time variability differentiate prestimulus electroencephalogram microstate dynamics during a sustained attention task. Journal of Cognitive Neuroscience, 33(1), 28–45. https://doi.org/10.1162/jocn_a_01636

Zanesco, A. P., Denkova, E., & Jha, A. P. (2021b). Associations between self-reported spontaneous thought and temporal sequences of EEG microstates. Brain and Cognition, 150, 105696. https://doi.org/10.1016/j.bandc.2021.105696

Zanesco, A. P., Skwara, A. C., King, B. G., Powers, C., Wineberg, K., & Saron, C. D. (2021c). Meditation training modulates brain electric microstates and felt states of awareness. Human Brain Mapping, 42(10), 3228–3252. https://doi.org/10.1002/hbm.25430

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