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Featured researches published by Philipp Haueis.


Frontiers in Human Neuroscience | 2014

Meeting the brain on its own terms

Philipp Haueis

In contemporary human brain mapping, it is commonly assumed that the “mind is what the brain does”. Based on that assumption, task-based imaging studies of the last three decades measured differences in brain activity that are thought to reflect the exercise of human mental capacities (e.g., perception, attention, memory). With the advancement of resting state studies, tractography and graph theory in the last decade, however, it became possible to study human brain connectivity without relying on cognitive tasks or constructs. It therefore is currently an open question whether the assumption that “the mind is what the brain does” is an indispensable working hypothesis in human brain mapping. This paper argues that the hypothesis is, in fact, dispensable. If it is dropped, researchers can “meet the brain on its own terms” by searching for new, more adequate concepts to describe human brain organization. Neuroscientists can establish such concepts by conducting exploratory experiments that do not test particular cognitive hypotheses. The paper provides a systematic account of exploratory neuroscientific research that would allow researchers to form new concepts and formulate general principles of brain connectivity, and to combine connectivity studies with manipulation methods to identify neural entities in the brain. These research strategies would be most fruitful if applied to the mesoscopic scale of neuronal assemblies, since the organizational principles at this scale are currently largely unknown. This could help researchers to link microscopic and macroscopic evidence to provide a more comprehensive understanding of the human brain. The paper concludes by comparing this account of exploratory neuroscientific experiments to recent proposals for large-scale, discovery-based studies of human brain connectivity.


Frontiers in Neuroanatomy | 2012

The fuzzy brain. Vagueness and mapping connectivity of the human cerebral cortex

Philipp Haueis

While the past century of neuroscientific research has brought considerable progress in defining the boundaries of the human cerebral cortex, there are cases in which the demarcation of one area from another remains fuzzy. Despite the existence of clearly demarcated areas, examples of gradual transitions between areas are known since early cytoarchitectonic studies. Since multi-modal anatomical approaches and functional connectivity studies brought renewed attention to the topic, a better understanding of the theoretical and methodological implications of fuzzy boundaries in brain science can be conceptually useful. This article provides a preliminary conceptual framework to understand this problem by applying philosophical theories of vagueness to three levels of neuroanatomical research. For the first two levels (cytoarchitectonics and fMRI studies), vagueness will be distinguished from other forms of uncertainty, such as imprecise measurement or ambiguous causal sources of activation. The article proceeds to discuss the implications of these levels for the anatomical study of connectivity between cortical areas. There, vagueness gets imported into connectivity studies since the network structure is dependent on the parcellation scheme and thresholds have to be used to delineate functional boundaries. Functional connectivity may introduce an additional form of vagueness, as it is an organizational principle of the brain. The article concludes by discussing what steps are appropriate to define areal boundaries more precisely.


bioRxiv | 2017

A functional connectome phenotyping dataset including cognitive state and personality measures

Natacha Mendes; Sabine Oligschlaeger; Mark E. Lauckner; Johannes Golchert; Julia M. Huntenburg; Marcel Falkiewicz; Melissa Ellamil; Sarah Krause; Blazej M. Baczkowski; Roberto Cozatl; Anastasia Osoianu; Deniz Kumral; Jared Pool; Laura Golz; Maria Dreyer; Philipp Haueis; Rebecca Jost; Yelyzaveta Kramarenko; Haakon G. Engen; Katharina Ohrnberger; Krzysztof J. Gorgolewski; Nicolas Farrugia; Anahit Babayan; Andrea Reiter; H. Lina Schaare; Janis Reinelt; Josefin Roebbig; Marie Uhlig; Miray Erbey; Michael Gaebler

The dataset enables exploration of higher-order cognitive faculties, self-generated mental experience, and personality features in relation to the intrinsic functional architecture of the brain. We provide multimodal magnetic resonance imaging (MRI) data and a broad set of state and trait phenotypic assessments: mind-wandering, personality traits, and cognitive abilities. Specifically, 194 healthy participants (between 20 and 75 years of age) filled out 31 questionnaires, performed 7 tasks, and reported 4 probes of in-scanner mind-wandering. The scanning session included four 15.5-min resting-state functional MRI runs using a multiband EPI sequence and a high-resolution structural scan using a 3D MP2RAGE sequence. This dataset constitutes one part of the MPI-Leipzig Mind-Brain-Body database.


Archive | 2016

Brain in the shell: Assessing the stakes and the transformative potential of the human brain project

Philipp Haueis; Jan Slaby


History and Philosophy of The Life Sciences | 2016

The life of the cortical column: opening the domain of functional architecture of the cortex (1955–1981)

Philipp Haueis


6th Meeting of the Society for Philosophy of Science in Practice (SPSP) | 2016

Patterns, mechanisms and the ontic/epistemic distinction

Philipp Haueis; Lena Kästner


Workshop "Vital brains: The making and use of brain models in neuroscience" | 2016

Connectomes as constitutively epistemic objects

Philipp Haueis; Jan Slaby


Graduate Block Seminar | 2016

Philosophy of neuroscience: The connectome

Philipp Haueis; Jan Slaby


Book symposium “Articulating the world: Intentionality – language – nature” | 2016

Human and animal intentionality in the anthropocene

Philipp Haueis


6th Meeting of the Society for Philosophy of Science in Practice (SPSP) | 2016

Organizing principles in neuroanatomical and physiological practice

Philipp Haueis

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Jan Slaby

Free University of Berlin

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