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Mediating Mars: Perceptual Experience and Scientific Imaging Technologies

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Abstract

The philosophical tradition of phenomenology, with its focus on human bodily perception, can be used to explore the ways scientific instrumentation shapes a user’s experience. Building on Don Ihde’s account of technological embodiment, I develop a framework of concepts for articulating the experience of image interpretation in science. These concepts can be of practical value to the analysis of scientific debates over image interpretation for the ways they draw out the relationships between the image-making processes and the rival scientific explanations of image content. As a guiding example, I explore a contemporary debate over images of the surface of Mars which reveal a landmass that resembles river delta formations on Earth, and which thus has important implications for the history of Martian climate and water flow. The phenomenological framework I develop can be used to help evaluate the different interpretations on offer for these images, and to analyze the roles in this discussion played by spacecraft equipped with cameras and laser and thermal imaging devices.

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References

  • Albee A. L., Arvidson R. E., Pallucony F., Thorpe T. (2001) Overview of Mars global surveyor mission. Journal of Geophysical Research, 106(E10): 23291–23316

    Article  Google Scholar 

  • Beaulieu A. (2002) Images are not the (only) truth: Brain mapping, visual knowledge, and iconoclasm. Science, Technology, & Human Values 27(1): 53–86

    Article  Google Scholar 

  • Bhattacharya, J. P., Payenberg, T. H. D., Lang, S. C., & Bourke, M. (2005). Dynamic river channels suggest a long-lived noachian crater lake on Mars. Geophysical Research Letters, 32(L10201). doi:10.1029/2005GL022747.

  • Borgmann A. (2007) Interview with Albert Borgmann. In: Olsen J.-K. B., Selinger E. (eds) Philosophy of technology: 5 Questions. Automatic Press/VIP, New York, NY, pp 7–15

    Google Scholar 

  • Collins H. (1985) Changing order: Replication and induction in scientific practice. Sage, London

    Google Scholar 

  • Daston L., Galison P. (2007) Objectivity. Zone Books, New York, NY

    Google Scholar 

  • Dumit J. (2004) Picturing personhood: Brain scans and biomedical identity. Princeton University Press, Princeton, NJ

    Google Scholar 

  • Fedo, C., Finkelstein, D. B., & Moersch, J. E. (2008). Alternative interpretation for the Eberswalde delta, Holden NE Crater, Mars. Lunar and Planetary Science XXXIX, abstract 2019.

  • Forss, A. (forthcoming). Cells and the (imaginary) patient: The multistable practitioner-technology-cell interface in the cytology laboratory. Medicine, Health Care, & Philosophy.

  • Hasse C. (2008) Postphenomenology: Learning cultural perception in science. Human Studies 31(1): 43–61

    Article  Google Scholar 

  • Heidegger M. (1996) Being and time (J. Stambaugh, Trans.). SUNY Press, Albany

    Google Scholar 

  • Howard, A. D., Moore, J. M., Irwin, R. P., III, & Deitrich, W. E. (2007). Boulder transport across the Eberswalde delta. Lunar and Planetary Science XXXVIII, abstract 1168.

  • Husserl, E. (1970). Logical investigations(J. N. Findlay, Trans.). London: Routledge, Kegan Paul.

  • Ihde D. (1986) Experimental phenomenology. SUNY Press, Albany

    Google Scholar 

  • Ihde D. (1990) Technology and the lifeworld. Indiana University Press, Bloomington, IN

    Google Scholar 

  • Ihde D. (1998) Expanding hermeneutics: Visualism in science. Northwestern University Press, Evanston, IL

    Google Scholar 

  • Ihde D. (2007) Listening and voice: Phenomenologies of sound (2nd ed.). SUNY Press, Albany

    Google Scholar 

  • Ihde D. (2009) Postphenomenology and technoscience: The Peking University lectures. SUNY Press, Albany

    Google Scholar 

  • Irwin, R. P., III, Howard, A. D., Craddock, R. A., & Moore, J. M. (2005). An intense terminal epoch of widespread fluvial activity on early Mars: 2. Increased runoff and paleolake development. Journal of Geophysical Research, 110(E12S15). doi:10.1029/2005JE002460.

  • Jerolmack, D. J., Morig, D., Zuber, M. T., & Byrne, S. (2004). A minimum time for the formation of holden Northeast fan, Mars. Geophysical Research Letters, 31(L21701). doi:10.1029/2004GL021326.

  • Joyce K. (2005) Appealing images: Magnetic resonance imaging and the production of authoritative knowledge. Social Studies of Science 35(3): 437–462

    Article  Google Scholar 

  • Kerr R. I. (2007) Human—not Martian—error cited. Science 316(April 20): 355

    Article  Google Scholar 

  • Kerr R. I. (2008a) Culture wars over how to find an ancient Niche for life on Mars. Science 322 (October 3): 39

    Article  Google Scholar 

  • Kerr R. I. (2008b) Water everywhere on Mars but only for a geologic moment?. Science 321 (July 25): 484–485

    Article  Google Scholar 

  • Kockelkoren, P. (Ed.). (2007) Mediated vision. Veenman Publishers, ArtEZ Press, Rotterdam

    Google Scholar 

  • Krall, E., & Postma, G. (2008). The challenge of explaining meander bends in the Eberswalde delta. Lunar and Planetary Science XXXIX, abstract 1897.

  • Kraal E. R., van Dijk M., Postma G., Kleinhans M. G. (2008) Martian stepped-delta formation by rapid water release. Nature 45(21): 973–977

    Article  Google Scholar 

  • Landecker H. (2002) New times for biology: Nerve cultures and the advent of cellular life in vitro. Studies in History and Philosophy of the Biological and Biomedical Sciences 33: 667–694

    Article  Google Scholar 

  • Latour B. (1987) Science in action: How to follow scientists and engineers through society. Harvard University Press, Cambridge, MA

    Google Scholar 

  • Latour B. (1999) Pandora’s hope. Harvard University Press, Cambridge, MA

    Google Scholar 

  • Latour, B., Weibel, P. (eds) (2002) Iconoclash: Beyond the image wars in science, religion, and art. MIT Press, Cambridge, MA

    Google Scholar 

  • Lewis, K. W., & Aharonson, O. (2006). Stratigraphic analysis of the distributary fan in Eberswalde crater using stereo imagery. Journal of Geophysical Research, 111(E06001). doi:10.1029/2005JE002558.

  • Lynch M. (1985) Art and artifact in laboratory science. Routledge, London

    Google Scholar 

  • Malin M. C., Edgett K. S. (2003) Evidence for Persistent Flow and Aqueous Sedimentation on Early Mars. Science 302(December 12): 1931–1934

    Article  Google Scholar 

  • Malin Space Science Systems. (2003). Distributory fan: “Smoking gun” evidence for persistent water flow and sediment deposition on ancient Mars. MGS MOC release no. MOC2-543, November 13.

  • McEwan, A. S., et al. (2007). Mars reconnaissance Orbiter’s high resolution imaging science experiment (HiRISE). Journal of Geophysical Research, 112(E05S02). doi:10.1029/2005JE002605.

  • Mitchell L. M. (2001) Baby’s first picture: Ultrasound and the politics of fetal subjects. University of Toronto Press, Toronto

    Google Scholar 

  • Moore J. M., Howard A. D., Dietrich W. E., Schenk P. M. (2003) Martian layered fluvial deposits: Implications for Noachian climate scenarios. Geophysical Research Letters 30(24): 2292. doi:10.1029/203GL019002

    Article  Google Scholar 

  • Pondrelli M., Rossi A. P., Marinangeli L., Hauber E., Gwinner K., Balivia A. (2008a) Evolution and depositional environments of the Eberswalde fan delta, Mars. Icarus 197: 429–451

    Article  Google Scholar 

  • Pondrelli, M., Rossi, A. P., Hauber, E., Balivia, A. (2008b). Facies Analysis of the Eberswalde Fan Delta (Mars). Lunar and Planetary Science XXXIX, abstract 1583.

  • Postma, G., & Kraal, E. (2007). Alternative origin for the point bars of the Martian Eberswalde delta. Noordwijk, The Netherlands: ESTEC, abstract.

  • Prasad A. (2005) Making images/making bodies: Visibilizing and disciplining through magnetic resonance imaging (MRI). Science, Technology, & Human Values 30(2): 291–316

    Article  Google Scholar 

  • Rasmussen N. (1997) Picture control: The electron microscope and the transformation of biology in America, 1940–1960. Stanford University Press, Stanford, CA

    Google Scholar 

  • Riis S. (2011) Dwelling in-between walls. Foundations of Science 16: 285–301

    Article  Google Scholar 

  • Rosenberger R. (2008) Perceiving other planets: Bodily experience, interpretation, and the Mars orbiter camera. Human Studies 31(1): 63–75

    Article  Google Scholar 

  • Rosenberger R. (2009) Quick-freezing philosophy: An analysis of imaging technologies in neurobiology. In: Olsen J. K. B., Selinger E., Riis S. (eds) New waves in philosophy of technology. Palgrave Macmillan, New York, NY, pp 65–82

    Google Scholar 

  • Rosenberger R. (2011a) A case study in the applied philosophy of imaging: The synaptic vesicle debate. Science, Technology, & Human Values 36(1): 6–32

    Article  Google Scholar 

  • Rosenberger R. (2011b) A phenomenology of image use in science: Multistability and the debate over Martian gully deposits. Techné: Research in Philosophy of Technology, 15(2): 156–169

    Google Scholar 

  • Rosenberger, R. (2012, forthcoming). The body as image interpreter. Philosophy & Technology.

  • Roth W.-M. (2003) Toward an anthropology of graphing: Semiotic and activity-theoretic perspectives. Kluwer, Dordrecht

    Book  Google Scholar 

  • Sanderson, K. (2006). Goodbye Mars global surveyor. Nature. Published online November 22 2006. doi:10.1038/news061120-6.

  • Scharff R. C. (2010) Technoscience studies after Heidegger? Not yet. Philosophy Today 54: 106–114

    Google Scholar 

  • Schieber, J. (2007). Interpretation of the Martian Eberswalde delta in the light of the new HiRISE images. Lunar and Planetary Science XXXVIII, abstract 1982.

  • Van Den Eede Y. (2011) In between us: On the transparency and opacity of technological mediation. Foundations of Science 16: 139–159

    Article  Google Scholar 

  • Verbeek P.-P. (2005) What things do. Penn State University Press, State College, PA

    Google Scholar 

  • Vertesi J. (2007) Picturing the moon: Hevelius’s and Riccioli’s visual debate. Studies in History and Philosophy of Science 38: 401–421

    Article  Google Scholar 

  • Vertesi, J. (2008). ‘Seeing like a rover’: Embodied experience on the Mars exploration rover mission. In Proceedings of CHI 2008, ACM Conference on Human Factors in Computing Systems (pp. 2523–2532).

  • Wood L. J. (2006) Quantitative geomorphology of the Mars Eberswalde delta. Geological Society of America Bulletin 18(5/6): 557–566. doi:10.1130/B25822.1

    Article  Google Scholar 

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Rosenberger, R. Mediating Mars: Perceptual Experience and Scientific Imaging Technologies. Found Sci 18, 75–91 (2013). https://doi.org/10.1007/s10699-012-9286-7

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