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Paper Citation Record · LEDGER

Spatial organization of biomass controls intrinsic permeability of porous systems

As of 21 August 2026, this Paper Citation Record lists 70 of 70 outbound references and 1 inbound Pith citation observation for arXiv:2510.27262.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2510.27262 v2

Coverage vector

measured 70 of 70 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-04T07:04:40.130310Z

measured 71 of 71 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-21T06:32:19.484+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-06-26T19:00:48.948758Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: pith, observed 2026-07-04T02:49:25.088063Z

Reference resolution

70 of 70 outbound references displayed

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Outbound references

Observation 3fa1fd29-defd-4368-8880-02cc27a90528 · outbound

This paper cites Mi- crobial biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Mi- crobial biofilms

Reference 1

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Observation 95056886-a381-499d-85ef-61fb53cfd579 · outbound

This paper cites Confined flow: consequences and implications for bacteria and biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Confined flow: consequences and implications for bacteria and biofilms

Reference 2

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Observation a7bbc505-88f8-4a16-ada0-3a7a7e5145c4 · outbound

This paper cites Bacterial exo-polysaccharides in biofilms: role in antimicrobial resistance and treatments.

Spatial organization of biomass controls intrinsic permeability of porous systems Bacterial exo-polysaccharides in biofilms: role in antimicrobial resistance and treatments

Reference 3

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Observation cb9eb64b-0cd2-4441-8ccf-8bc9e28360bf · outbound

This paper cites Subsurface biofilm barriers for the containment and remediation of contaminated groundwater.

Spatial organization of biomass controls intrinsic permeability of porous systems Subsurface biofilm barriers for the containment and remediation of contaminated groundwater

Reference 4

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Observation 1b820417-b442-4734-b389-f0726bd809c2 · outbound

This paper cites Benefits of bacterial biomineralization.

Spatial organization of biomass controls intrinsic permeability of porous systems Benefits of bacterial biomineralization

Reference 5

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Observation 41f1a3e4-96f9-4113-b692-7b3bfcc13fb6 · outbound

This paper cites Biomineralization of gold: biofilms on bacterioform gold.

Spatial organization of biomass controls intrinsic permeability of porous systems Biomineralization of gold: biofilms on bacterioform gold

Reference 6

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Observation 85f81714-2327-4a2b-9038-11ac22c26fbe · outbound

This paper cites Biofilms as biobarriers.

Spatial organization of biomass controls intrinsic permeability of porous systems Biofilms as biobarriers

Reference 7

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Observation 6d227d67-3dd5-4fe3-9485-7a69024d0ec4 · outbound

This paper cites Bacterial biofilm and extracellular polymeric substances in the moving bed biofilm reactor for wastewater treatment: A review.

Spatial organization of biomass controls intrinsic permeability of porous systems Bacterial biofilm and extracellular polymeric substances in the moving bed biofilm reactor for wastewater treatment: A review

Reference 8

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Observation 60a8fc50-9db0-4b60-95ff-b71897002e8d · outbound

This paper cites Investigating the potential of microbial enhanced oil recovery in carbonate reservoirs using bacillus persicus.

Spatial organization of biomass controls intrinsic permeability of porous systems Investigating the potential of microbial enhanced oil recovery in carbonate reservoirs using bacillus persicus

Reference 9

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Observation b98d2953-6db5-4b19-8402-b6e7df956dfa · outbound

This paper cites Biofilm streamers cause catastrophic disruption of flow with consequences for environmental and medical systems.

Spatial organization of biomass controls intrinsic permeability of porous systems Biofilm streamers cause catastrophic disruption of flow with consequences for environmental and medical systems

Reference 10

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Observation c1d2eb80-441f-49ad-86de-d1885fa0ad9d · outbound

This paper cites Hydraulic aspects of riverbank filtration—field studies.

Spatial organization of biomass controls intrinsic permeability of porous systems Hydraulic aspects of riverbank filtration—field studies

Reference 11

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Observation 518af474-aae5-41d0-a16c-f03447286cc6 · outbound

This paper cites Environmental 19 impact and mechanisms of the biological clogging of saturated soils and aquifer materials.

Spatial organization of biomass controls intrinsic permeability of porous systems Environmental 19 impact and mechanisms of the biological clogging of saturated soils and aquifer materials

Reference 12

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Observation 803aa0aa-418c-4f1a-804e-e527dd19aab4 · outbound

This paper cites Microbial competi- tion in porous environments can select against rapid biofilm growth.

Spatial organization of biomass controls intrinsic permeability of porous systems Microbial competi- tion in porous environments can select against rapid biofilm growth

Reference 13

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Observation 416f433b-3aab-4cdf-99dc-e4f75046d8c4 · outbound

This paper cites Biofilms: an emergent form of bacterial life.

Spatial organization of biomass controls intrinsic permeability of porous systems Biofilms: an emergent form of bacterial life

Reference 14

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Observation 9d05a137-bd07-4413-b0bc-b91f4a9da2e2 · outbound

This paper cites Microbial biofilms: from ecology to molecular genetics.

Spatial organization of biomass controls intrinsic permeability of porous systems Microbial biofilms: from ecology to molecular genetics

Reference 15

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Spatial organization of biomass controls intrinsic permeability of porous systems The biofilm matrix

Reference 16

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Observation ae3185c9-6be3-4ca5-818c-455105635ec0 · outbound

This paper cites Biofilms as complex fluids.

Spatial organization of biomass controls intrinsic permeability of porous systems Biofilms as complex fluids

Reference 17

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This paper cites Sociomicrobiology: the connections between quorum sensing and biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Sociomicrobiology: the connections between quorum sensing and biofilms

Reference 18

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Observation a6e33a5a-40fd-4009-a87f-9e2265ea2d87 · outbound

This paper cites Targeting the holy triangle of quorum sensing, biofilm formation, and antibiotic resistance in pathogenic bacteria.

Spatial organization of biomass controls intrinsic permeability of porous systems Targeting the holy triangle of quorum sensing, biofilm formation, and antibiotic resistance in pathogenic bacteria

Reference 19

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Observation 820f8171-3399-4fb6-a4c8-5a657a2159b3 · outbound

This paper cites Spatial structure, chemotaxis and quorum sensing shape bacterial biomass accumulation in complex porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Spatial structure, chemotaxis and quorum sensing shape bacterial biomass accumulation in complex porous media

Reference 20

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Observation 38364a29-63d1-4b9c-9dfd-c04d9e4a7362 · outbound

This paper cites Morphology and size of bacterial colonies control anoxic microenvironment formation in porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Morphology and size of bacterial colonies control anoxic microenvironment formation in porous media

Reference 21

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Observation c393908a-e02d-4a29-811b-db37195a125d · outbound

This paper cites Dynamic changes in biofilm structures under dynamic flow conditions.

Spatial organization of biomass controls intrinsic permeability of porous systems Dynamic changes in biofilm structures under dynamic flow conditions

Reference 22

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Observation cad359a2-b5a5-4127-a12d-322c6e054a7a · outbound

This paper cites Emergence of three-dimensional order and structure in growing biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Emergence of three-dimensional order and structure in growing biofilms

Reference 23

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Observation dc0d5a98-80b5-4a11-a245-27b3ac562a18 · outbound

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Spatial organization of biomass controls intrinsic permeability of porous systems The ecology and biogeochemistry of stream biofilms

Reference 24

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Observation 5fc670d7-2fc2-4539-8983-81f331936b80 · outbound

This paper cites Oscillation characteristics of biofilm streamers in turbulent flowing water as related to drag and pressure drop.Biotechnology and bioengineering, 57(5):536–544, 1998.

Spatial organization of biomass controls intrinsic permeability of porous systems Oscillation characteristics of biofilm streamers in turbulent flowing water as related to drag and pressure drop.Biotechnology and bioengineering, 57(5):536–544, 1998

Reference 25

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Observation fa505fcf-6689-4ac5-83d1-2296a29a2bf1 · outbound

This paper cites Cooperation and conflict in microbial biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Cooperation and conflict in microbial biofilms

Reference 26

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Observation bf028571-4e4a-4304-9c4c-36c202c908d5 · outbound

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Spatial organization of biomass controls intrinsic permeability of porous systems Microbial adhesion in flow displacement systems

Reference 27

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Observation d12460d6-6efa-4a9c-84d2-8c502b62beaa · outbound

This paper cites Involvement of bacterial migration in the development of complex multicellular structures in pseudomonas aeruginosa biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Involvement of bacterial migration in the development of complex multicellular structures in pseudomonas aeruginosa biofilms

Reference 28

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Observation 1493b7d7-619b-480d-a088-4c47da452bf9 · outbound

This paper cites Mechanosensing of shear by pseudomonas aeruginosa leads to increased levels of the cyclic-di-gmp signal initiating biofilm development.

Spatial organization of biomass controls intrinsic permeability of porous systems Mechanosensing of shear by pseudomonas aeruginosa leads to increased levels of the cyclic-di-gmp signal initiating biofilm development

Reference 29

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This paper cites Influence of microbial growth on hydraulic properties of pore networks.

Spatial organization of biomass controls intrinsic permeability of porous systems Influence of microbial growth on hydraulic properties of pore networks

Reference 30

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Observation 9455386b-9c7c-42fd-99ee-c13f22251fc9 · outbound

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Spatial organization of biomass controls intrinsic permeability of porous systems Influence of biofilm accumulation on porous media hydrodynamics

Reference 31

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Spatial organization of biomass controls intrinsic permeability of porous systems Modeling the impact of evolving biofilms on flow in porous media inside a microfluidic channel

Reference 32

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Observation 20d07198-fd92-4cd0-bbe6-4f92e35e50f0 · outbound

This paper cites Pore-scale hydrodynamics influence the spatial evolution of bacterial biofilms in a microfluidic porous network.

Spatial organization of biomass controls intrinsic permeability of porous systems Pore-scale hydrodynamics influence the spatial evolution of bacterial biofilms in a microfluidic porous network

Reference 33

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Observation fe119fa9-d8e8-4377-9062-323bf14693d8 · outbound

This paper cites Biomass evolution in porous media and its effects on permeability under starvation conditions.

Spatial organization of biomass controls intrinsic permeability of porous systems Biomass evolution in porous media and its effects on permeability under starvation conditions

Reference 34

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Observation 71f17beb-b123-4980-bb69-346bf4b2e1e7 · outbound

This paper cites Investigation of clogging in porous 20 media induced by microorganisms using a microfluidic application.

Spatial organization of biomass controls intrinsic permeability of porous systems Investigation of clogging in porous 20 media induced by microorganisms using a microfluidic application

Reference 35

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Spatial organization of biomass controls intrinsic permeability of porous systems Substrate and biomass transport in a porous medium

Reference 36

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Observation 22b80076-4c77-45d4-9dda-f868b98a21ba · outbound

This paper cites Contributions of biofilm-induced flow hetero- geneities to solute retention and anomalous transport features in porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Contributions of biofilm-induced flow hetero- geneities to solute retention and anomalous transport features in porous media

Reference 37

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Spatial organization of biomass controls intrinsic permeability of porous systems Biofilm structure, behavior, and hydrodynamics

Reference 38

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Observation 42e0b590-ad94-4dd5-ab9b-d50d57f7e2e8 · outbound

This paper cites Comparison of bioclogging effects in saturated porous media within one-and two-dimensional flow systems.

Spatial organization of biomass controls intrinsic permeability of porous systems Comparison of bioclogging effects in saturated porous media within one-and two-dimensional flow systems

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Observation abb811c4-d43d-4c08-9b92-4bfdd0b198be · outbound

This paper cites The effect of flow on swimming bacteria controls the initial colonization of curved surfaces.

Spatial organization of biomass controls intrinsic permeability of porous systems The effect of flow on swimming bacteria controls the initial colonization of curved surfaces

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Observation eb8c9500-acbc-46a4-9033-12a816376fc8 · outbound

This paper cites Time-resolved biofilm deformation measurements using optical coher- ence tomography.

Spatial organization of biomass controls intrinsic permeability of porous systems Time-resolved biofilm deformation measurements using optical coher- ence tomography

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Observation 23bddaae-8b19-45ab-9fd7-6226114d465e · outbound

This paper cites Effect of shear stress and growth conditions on detachment and physical properties of biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Effect of shear stress and growth conditions on detachment and physical properties of biofilms

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Observation 973431ef-b257-4056-a43d-0098979ddbd5 · outbound

This paper cites Impact of biofilm-induced heterogeneities on solute transport in porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Impact of biofilm-induced heterogeneities on solute transport in porous media

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source=pdf_text observed=2026-08-04T07:04:39.378039Z digest=sha256:958ce07013a11ce25c7f33ce4b6c7af3e4476819d5edd744591cb6616a078333

Observation 1a28ff53-7122-4cf8-b91b-fa1595d8c397 · outbound

This paper cites Intrinsic permeability of heterogeneous porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Intrinsic permeability of heterogeneous porous media

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source=pdf_text observed=2026-08-04T07:04:39.501791Z digest=sha256:f5ae545b50161486b1a8f15612e4b9fe7375c8a079f3ce9418fee179bfdb7d33

Observation 1e918fef-f666-415e-a71b-920084b10016 · outbound

This paper cites Chemotaxis under flow disorder shapes microbial dispersion in porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Chemotaxis under flow disorder shapes microbial dispersion in porous media

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source=pdf_text observed=2026-08-04T07:04:39.601122Z digest=sha256:b03e2b571f2908418c760b57b806862216e0c1a416bc82689d52624dcaaaf0be

Observation baadc0a8-9a77-4279-a77d-97c2ed1663bc · outbound

This paper cites Structure induced laminar vortices control anomalous dispersion in porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Structure induced laminar vortices control anomalous dispersion in porous media

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Observation af787c13-2064-406d-b90e-a5bdc40b88ed · outbound

This paper cites Dynamics of fluids in porous media–american elsevier pub.

Spatial organization of biomass controls intrinsic permeability of porous systems Dynamics of fluids in porous media–american elsevier pub

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source=pdf_text observed=2026-08-04T07:04:39.833483Z digest=sha256:63b4a1ca5a5084b3879ec89e24297c2fcd22ee7b31c363beba69f277998d68e7

Observation 23fcbb86-c8c5-4bdf-bf30-7c3cd8e23689 · outbound

This paper cites Material properties of biofilms—a review of methods for understanding permeability and mechanics.Reports on Progress in Physics, 78(3):036601, 2015.

Spatial organization of biomass controls intrinsic permeability of porous systems Material properties of biofilms—a review of methods for understanding permeability and mechanics.Reports on Progress in Physics, 78(3):036601, 2015

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source=pdf_text observed=2026-08-04T07:04:39.913107Z digest=sha256:fda2a162276f37e98f7eee7688d9f8b00b1642b3fad33089230c531993e4c403

Observation 2c282653-fa37-438f-9a14-db3af43c30d8 · outbound

This paper cites Biofilms: investigative methods and applications.

Spatial organization of biomass controls intrinsic permeability of porous systems Biofilms: investigative methods and applications

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source=pdf_text observed=2026-08-04T07:04:40.047343Z digest=sha256:6a70dc0824facc7ffde2dd227868d58e755d357aa66f37fe5acbe5d20b9b4d6b

Observation b81f4dc4-cddb-4037-8d6d-faf5a434df25 · outbound

This paper cites The effect of biofilm perme- ability on bio-clogging of porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems The effect of biofilm perme- ability on bio-clogging of porous media

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source=pdf_text observed=2026-08-04T07:04:40.070896Z digest=sha256:94e2fa2af7c3db3052a729834a9b4c298c281332d501bf79644dc041bae7a954

Observation c1e9c102-ea7d-44b5-9018-d99234b4e59f · outbound

This paper cites Hydraulic resistance of biofilms.

Spatial organization of biomass controls intrinsic permeability of porous systems Hydraulic resistance of biofilms

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source=pdf_text observed=2026-08-04T07:04:40.074712Z digest=sha256:2ccc28283e1968fdd168da5113ea4c4d97cba839e942c58960b3d7a50a3e5772

Observation 19efb893-b72b-4ac1-9280-8574bb8fee90 · outbound

This paper cites The permeability of biofouling layers on membranes.

Spatial organization of biomass controls intrinsic permeability of porous systems The permeability of biofouling layers on membranes

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source=pdf_text observed=2026-08-04T07:04:40.077700Z digest=sha256:fa3bbbe2ccd4f8c61851e15747b0e4e7d9e11024f9551f046f9473c3d4bd2266

Observation e949140b-9c76-4b41-ba1e-d2379b4e7e09 · outbound

This paper cites Comparison of definitions of the lag phase and the exponential phase in bacterial growth.

Spatial organization of biomass controls intrinsic permeability of porous systems Comparison of definitions of the lag phase and the exponential phase in bacterial growth

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source=pdf_text observed=2026-08-04T07:04:40.081186Z digest=sha256:3b5d26c133d79b8290658dff6ffadcf175b177a98f4f0f8b31be4bb8103d2a74

Observation e8761150-6bc2-46bb-999c-58ab20d6120b · outbound

This paper cites Laminar flow around corners triggers the formation of biofilm streamers.

Spatial organization of biomass controls intrinsic permeability of porous systems Laminar flow around corners triggers the formation of biofilm streamers

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source=pdf_text observed=2026-08-04T07:04:40.084253Z digest=sha256:3d669cfdde57f6443d661d113a30a472b846e48c8f620818c4cfd2125454d8f2

Observation 5bd43ca7-df31-466d-8bf6-bddbd979b2c6 · outbound

This paper cites Unraveling the biophysical underpinnings to the success of multispecies biofilms in porous environments.

Spatial organization of biomass controls intrinsic permeability of porous systems Unraveling the biophysical underpinnings to the success of multispecies biofilms in porous environments

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source=pdf_text observed=2026-08-04T07:04:40.087149Z digest=sha256:7aa00efc496c166c86d86779534c3053ab65d7431263b86b5e09f0ea6ee7a4dc

Observation 7a2cb7fc-9424-4736-b02b-8cb1fa9b7ff2 · outbound

This paper cites Morphogenesis of biofilms in porous media and control on hydrodynamics.

Spatial organization of biomass controls intrinsic permeability of porous systems Morphogenesis of biofilms in porous media and control on hydrodynamics

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source=pdf_text observed=2026-08-04T07:04:40.089943Z digest=sha256:a50ca4b5a389e47c70fbe25b0009c79e694070fe58b1aea6dfc667dfcd88bfbb

Observation f3909853-72af-44ca-b4f0-6ea4c27e6fd4 · outbound

This paper cites Brock biology of microorganisms, volume 11.

Spatial organization of biomass controls intrinsic permeability of porous systems Brock biology of microorganisms, volume 11

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source=pdf_text observed=2026-08-04T07:04:40.092769Z digest=sha256:f15340fdd5e6706a8b5c0ff7a24b1ad730f36ad472d945bb33c041725aff4d8d

Observation 3cb0e9b1-e51c-4faf-8d5e-eb0736225018 · outbound

This paper cites Quantitative modelling of nutrient-limited growth of bacterial colonies in microfluidic cultivation.

Spatial organization of biomass controls intrinsic permeability of porous systems Quantitative modelling of nutrient-limited growth of bacterial colonies in microfluidic cultivation

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source=pdf_text observed=2026-08-04T07:04:40.095612Z digest=sha256:762fc70fc53990dac3faa47463df8c8e166749f9d11514509385528784ca5af4

Observation 865d1369-3e4e-4a9e-b342-81f7606a1c9d · outbound

This paper cites Stochastic model for filtration by porous materials.

Spatial organization of biomass controls intrinsic permeability of porous systems Stochastic model for filtration by porous materials

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source=pdf_text observed=2026-08-04T07:04:40.098579Z digest=sha256:f9b2511ac85c5c564a7bc74cf5ace34972c3035c73462dfb745e10e61c4969ba

Observation 724d7f10-6214-4bf1-9e58-db96f90dd7f0 · outbound

This paper cites Dynamics of fluids in porous media.

Spatial organization of biomass controls intrinsic permeability of porous systems Dynamics of fluids in porous media

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source=pdf_text observed=2026-08-04T07:04:40.101475Z digest=sha256:38c2f619939f1c82eab1b4ff8a6ad037ffa63c22ae43495383dc28c0dc5e48d6

Observation b84352b3-24fb-4e7c-b9d4-9f61130b8dea · outbound

This paper cites The implications of groundwater velocity variations on microbial transport and wellhead protection–review of field evidence.

Spatial organization of biomass controls intrinsic permeability of porous systems The implications of groundwater velocity variations on microbial transport and wellhead protection–review of field evidence

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source=pdf_text observed=2026-08-04T07:04:40.104431Z digest=sha256:ff43fc670a4943cd6c6d3c9504b007b1226c8695c45ff5af28dc56214406e047

Observation d0913b08-a6e8-40aa-be9e-3a75d5aa3782 · outbound

This paper cites Combining fluidic devices with microscopy and flow cytometry to study microbial transport in porous media across spatial scales.

Spatial organization of biomass controls intrinsic permeability of porous systems Combining fluidic devices with microscopy and flow cytometry to study microbial transport in porous media across spatial scales

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source=pdf_text observed=2026-08-04T07:04:40.107407Z digest=sha256:9ff50ca75cee675b40ea389ce54ea86fb1e736b4d6960e0c343eafdf0b519eab

Observation 457cdcee-7be1-42c6-af2c-c7a85081fa5e · outbound

This paper cites The rna chaperone hfq enables the environmental stress tolerance super-phenotype of p seudomonas putida.

Spatial organization of biomass controls intrinsic permeability of porous systems The rna chaperone hfq enables the environmental stress tolerance super-phenotype of p seudomonas putida

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source=pdf_text observed=2026-08-04T07:04:40.110259Z digest=sha256:ac461f3d6d3cc58f82fc92d7b22780b0ce781782ef7d0bca629c197809f09e56

Observation bf98ea0a-e0c9-415d-b2a3-4bab88e1a948 · outbound

This paper cites Complete genome sequence and comparative analysis of the metabolically versatile pseudomonas putida kt2440.

Spatial organization of biomass controls intrinsic permeability of porous systems Complete genome sequence and comparative analysis of the metabolically versatile pseudomonas putida kt2440

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source=pdf_text observed=2026-08-04T07:04:40.113087Z digest=sha256:09f3547717d4ee7f14e19f43ada685a1b207e5dbe6c14cdf12cdceb2490199dc

Observation c6cea566-580c-48a4-9c66-72657aaeddba · outbound

This paper cites The revisited genome of pseudomonas putida kt2440 enlightens its value as a robust metabolic chassis.

Spatial organization of biomass controls intrinsic permeability of porous systems The revisited genome of pseudomonas putida kt2440 enlightens its value as a robust metabolic chassis

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source=pdf_text observed=2026-08-04T07:04:40.116194Z digest=sha256:873f08bb70e48d4ba7acee5faf15a62752f0f43fe333da6f04fc5f2794046100

Observation aa745e6b-fa56-454f-8d6d-18035a3e6355 · outbound

This paper cites Inducible and tunable gene expression systems for pseudomonas putida kt2440.

Spatial organization of biomass controls intrinsic permeability of porous systems Inducible and tunable gene expression systems for pseudomonas putida kt2440

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source=pdf_text observed=2026-08-04T07:04:40.118927Z digest=sha256:bfed294ed86f325cafc8a191e80691625ea1f0ecb135a168303bf0dcbf4f0a97

Observation d60ff655-1c37-45ca-9e3d-35fcf4463a17 · outbound

This paper cites Trait-specific dispersal of bacteria in heterogeneous porous environments: from pore to porous medium scale.

Spatial organization of biomass controls intrinsic permeability of porous systems Trait-specific dispersal of bacteria in heterogeneous porous environments: from pore to porous medium scale

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source=pdf_text observed=2026-08-04T07:04:40.121703Z digest=sha256:9d86d1bfd88cf09e00af5f384eaffdeb55e061c93bf362f04f60ebcfd6f7e99c

Observation 60ff0cbd-8c19-4953-9065-df249445e355 · outbound

This paper cites Ultraviolet control of bacterial biofilms in microfluidic chips.

Spatial organization of biomass controls intrinsic permeability of porous systems Ultraviolet control of bacterial biofilms in microfluidic chips

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source=pdf_text observed=2026-08-04T07:04:40.124454Z digest=sha256:e087dd8f8ea6f14840f635c1ec34658f01b35d596a84bc3e4cf0d954a8821b49

Observation 830be2b3-23aa-4f6c-aaad-311a5a3b9d3d · outbound

This paper cites Les fontaines publiques de la ville de Dijon: exposition et application.

Spatial organization of biomass controls intrinsic permeability of porous systems Les fontaines publiques de la ville de Dijon: exposition et application

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source=pdf_text observed=2026-08-04T07:04:40.127225Z digest=sha256:24cef9db9c955cad827908d1572ea694e5a46d641be3fb8a794c299e707f2034

Observation e46e2be1-a8b0-45da-aeb8-f066193e1be6 · outbound

This paper cites Theoretical microfluidics, volume 18.

Spatial organization of biomass controls intrinsic permeability of porous systems Theoretical microfluidics, volume 18

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source=pdf_text observed=2026-08-04T07:04:40.130310Z digest=sha256:6d191725a36af921c83730ae9c908ea8e93164dfec04dda4f5a5c65aae51fa49

Pith citing papers

Observation 61286664-1a67-4d96-86c2-55606e8b2bfe · inbound

Pore-shape and its spatial organization control intrinsic permeability of porous media cites this paper.

Pore-shape and its spatial organization control intrinsic permeability of porous media Spatial organization of biomass controls intrinsic permeability of porous systems

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No event found in the named queried sources as of 2026-08-21T06:32:19.484+00:00.

source=pdf_text observed=2026-06-26T19:00:48.948758Z digest=sha256:a7376b5c6e0b7b82af2eeb5703288a1c2ff8d683fbe6674ffa18403ade6f1f2a