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Maik Lucas
Maik Lucas
Verified email at ufz.de
Title
Cited by
Cited by
Year
Soil structure formation along an agricultural chronosequence
M Lucas, S Schlüter, HJ Vogel, D Vetterlein
Geoderma 350, 61-72, 2019
822019
Roots compact the surrounding soil depending on the structures they encounter
M Lucas, S Schlüter, HJ Vogel, D Vetterlein
Scientific reports 9 (1), 16236, 2019
602019
Revealing pore connectivity across scales and resolutions with X‐ray CT
M Lucas, D Vetterlein, HJ Vogel, S Schlüter
European Journal of Soil Science 72 (2), 546-560, 2021
392021
Initial soil formation in an agriculturally reclaimed open-cast mining area-the role of management and loess parent material
E Pihlap, M Vuko, M Lucas, M Steffens, M Schloter, D Vetterlein, ...
Soil and Tillage Research 191, 224-237, 2019
362019
Root growth, function and rhizosphere microbiome analyses show local rather than systemic effects in apple plant response to replant disease soil
M Lucas, A Balbín-Suárez, K Smalla, D Vetterlein
PLoS One 13 (10), e0204922, 2018
262018
Combination of imaging infrared spectroscopy and X-ray computed microtomography for the investigation of bio-and physicochemical processes in structured soils
M Lucas, E Pihlap, M Steffens, D Vetterlein, I Kögel-Knabner
Frontiers in Environmental Science, 42, 2020
182020
Exploring microbial determinants of apple replant disease (ARD): a microhabitat approach under split-root design
A Balbín-Suárez, M Lucas, D Vetterlein, SJ Sørensen, T Winkelmann, ...
FEMS Microbiology Ecology 96 (12), fiaa211, 2020
122020
Roots compact the surrounding soil depending on the structures they encounter. Sci Rep 9: 16236
M Lucas, S Schlüter, HJ Vogel, D Vetterlein
92019
Perspectives from the Fritz‐Scheffer Awardee 2020—The mutual interactions between roots and soil structure and how these affect rhizosphere processes#
M Lucas
Journal of Plant Nutrition and Soil Science 185 (1), 8-18, 2022
32022
Macroaggregates of loam in sandy soil show little influence on maize growth, due to local adaptations of root architecture to soil heterogeneity
E Lippold, M Lucas, T Fahrenkampf, S Schlüter, D Vetterlein
Plant and Soil 478 (1-2), 163-175, 2022
22022
Roots change the pore structure only if they have to–development of biopores and compaction around roots.
M Lucas, S Schlüter, HJ Vogel, D Vetterlein
Geophysical Research Abstracts 21, 2019
12019
Soil structure formation through the action of plants
M Lucas, S Schlüter, HJ Vogel, D Vetterlein
EGU General Assembly Conference Abstracts, 6367, 2018
12018
Microscale oxygen distribution to predict denitrification in structured soil
M Lucas, L Rohe, HJ Vogel, R Well, S Schlüter
EGU23, 2023
2023
X-ray Imaging of Root–Soil Interactions
M Lucas, D Vetterlein
X-ray Imaging of the Soil Porous Architecture, 129-157, 2022
2022
The soil structure roots encounter affects root activity and the fate of carbon in the rhizosphere
M Lucas, A Guber, A Kravchenko
EGU General Assembly Conference Abstracts, EGU22-10091, 2022
2022
Cover crop influence on pore size distribution and biopore dynamics: Enumerating root and soil faunal effects
M Lucas, LTT Nguyen, A Guber, AN Kravchenko
Frontiers in Plant Science 13, 2022
2022
The reuse of root channels affects rhizosphere physical properties and therefore the fate of carbon
M Lucas, A Guber, A Kravchenko
AGU Fall Meeting Abstracts 2021, B55I-1300, 2021
2021
Carbon Accrual in Monoculture Switchgrass and Native Prairie in Marginal Land Soils of Contrasting Characteristics
JH Lee, M Lucas, A Kravchenko
ASA, CSSA, SSSA International Annual Meeting, 2021
2021
Plant Diversity in Cellulosic Biofuel Systems Influence Soil Structure and C Sequestration
K Kim, M Lucas, A Kravchenko
ASA, CSSA, SSSA International Annual Meeting, 2021
2021
The Feedback Interactions between Plant Roots and Soil Structure Drive Spatial Patterns of Carbon Inputs and Protection
M Lucas, A Kravchenko, A Guber
ASA, CSSA, SSSA International Annual Meeting, 2021
2021
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Articles 1–20