Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-04T20:44:24.106582Z
Paper Citation Record · LEDGER
As of 19 August 2026, this Paper Citation Record lists 100 of 251 outbound references and 0 inbound Pith citation observations for arXiv:2509.08434.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-04T20:44:24.106582Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-19T06:32:44.657259+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
100 of 251 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 89881d49-83c8-4e41-9a91-41f6f4758efd · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plant communication,
Reference 1
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Observation f70e302a-e803-4ed3-986b-373faa06bbdb · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Electrical signal propagation within and between tomato plants,
Reference 2
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation b870d228-0d8f-47e3-893e-dddaa88a4827 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Stress-induced volatile emissions and signalling in inter-plant communication,
Reference 3
Source-reported events for the cited work
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Observation 6612d231-5711-49ea-a080-347dd1f9504f · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions How plants communicate using the underground information superhighway,
Reference 4
Source-reported events for the cited work
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Observation 9b1c80f7-787c-4f33-ab10-3c1a3a7a0891 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Mycorrhizal networks: Mechanisms, ecology and modelling,
Reference 5
Source-reported events for the cited work
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Observation cda5d9f4-4b51-4355-9d9b-2eb11c1dd848 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Aboveground plant-to-plant electrical signaling mediates network acquired acclimation,
Reference 6
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Observation 3e916e35-03b7-40bb-ab33-278c213d8074 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Flowers respond to pollinator sound within minutes by increasing nectar sugar concentration,
Reference 7
Source-reported events for the cited work
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Observation 572617a5-b10b-458a-90ef-5b2cea6b1216 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Sounds emitted by plants under stress are airborne and informative,
Reference 8
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Observation a678af86-6ddc-4136-a146-4894fb29e28e · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plant volatiles as cues and signals in plant communication,
Reference 9
Source-reported events for the cited work
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Observation c5999f00-d2a3-48b8-a180-7e4035688208 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Mild versus severe stress and bvocs: thresholds, priming and consequences,
Reference 10
Source-reported events for the cited work
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Observation ff1e7071-d301-417c-8404-005d0a2e0fe0 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Molecular communication network and its applications in crop sciences,
Reference 11
Source-reported events for the cited work
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Observation 74c97768-0cfa-47de-a7b9-3524562f9aa9 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Impact of insect herbivory on plant stress volatile emissions from trees: A synthesis of quantitative measurements and recommendations for future research,
Reference 12
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation cc340543-959d-4e44-8589-5c574235a46c · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Past and future of plant stress detection: An overview from remote sensing to positron emission tomography,
Reference 13
Source-reported events for the cited work
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Observation eec70656-0da7-4260-8bf6-4e63e9fabea0 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Root exudate signals in plant–plant interactions,
Reference 14
Source-reported events for the cited work
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Observation 3c1b78b2-a557-4d98-88c1-092320dc5ed4 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Root- emitted volatile organic compounds: can they mediate belowground plant-plant interactions?
Reference 15
Source-reported events for the cited work
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Observation 44561351-c483-4cb8-a395-c0fcfed7fe63 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Research progress on electrical signals in higher plants,
Reference 16
Source-reported events for the cited work
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Observation dcb68537-1b87-4d15-a9c3-f34da0443a6b · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Mycorrhizal networks: a review of their extent, function, and importance,
Reference 17
Source-reported events for the cited work
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Observation 41cbb006-8601-445c-bdf6-d913cf95c038 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Interplant communication via hyphal networks,
Reference 18
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 4ee34071-0918-4d53-874d-606da9e35644 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Green symphonies: a call for studies on acoustic communication in plants,
Reference 19
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 3e4de0ae-de93-4cf3-b904-25ffb4939831 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Sound perception in plants: from ecological significance to molecular understanding,
Reference 20
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 2fb9f005-beed-41ff-97f3-33b984451d2d · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Odor- based molecular communications: State-of-the-art, vision, challenges, and frontier directions,
Reference 21
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation be4f2b1b-e239-4734-8100-63170b590c5c · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions An end-to-end model of plant pheromone channel for long range molecular communication,
Reference 22
Source-reported events for the cited work
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Observation f19bffb7-da58-43d4-961e-65d4aa51132f · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions End-to-End Mathematical Modeling of Stress Communication Between Plants
Reference 23
Source-reported events for the cited work
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Observation 27638abd-fbd0-4032-ac28-258f9f695ca9 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions MC for Agriculture: A Framework for Nature-inspired Sustainable Pest Control
Reference 24
Source-reported events for the cited work
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Observation 73af490a-21e4-4653-96bc-e1ea01b4d99e · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Decoding and engineering the phytobiome communication for smart agriculture,
Reference 25
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation b60d13a8-7a40-4747-88ca-420b5aa4b33d · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Out of sight but not out of mind: Alternative means of communication in plants,
Reference 26
Source-reported events for the cited work
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Observation e70c56d8-01c1-4406-a593-a7c67cd181b1 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plant-mycorrhiza communication and myc- orrhizae in inter-plant communication,
Reference 27
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 0310c721-db3b-4ac7-adf8-13b4ec792d0e · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Methyl jasmonate is blowing in the wind, but can it act as a plant–plant airborne signal?
Reference 28
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 9e7d3a5b-c9d0-4dcb-8a96-ec9b70065797 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Physiological and physic- ochemical controls on foliar volatile organic compound emissions,
Reference 29
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 2720a6cc-2a51-43ba-9a42-823206014dec · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions A new modeling approach for estimating abiotic and biotic stress-induced de novo emissions of biogenic volatile organic compounds from plants,
Reference 30
Source-reported events for the cited work
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Observation 16c5bbb2-b363-404c-ac23-dcc6d8a3a953 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Sustainable and Precision Agriculture with the Internet of Everything (IoE)
Reference 31
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Observation 2bd53440-f0b5-4f18-8918-7278e5a3d123 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plant communication: mediated by individual or blended vocs?
Reference 32
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation e063df53-04bd-4a34-b11d-2cf655dea0a9 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions V olatile emissions fromAlnus glutinosainduced by herbivory are quantitatively related to the extent of damage,
Reference 33
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation ba3c5147-5465-4a8f-8d7c-62fa4e015c4b · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Fruit tree model for uptake of organic compounds from soil and air,
Reference 34
Source-reported events for the cited work
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Observation 8b3bcffc-37af-431b-9d7f-46287802e7b0 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions The roles of stomatal conductance and compound volatility in controlling the emission of volatile organic compounds from leaves,
Reference 35
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Observation 9cf0bc8a-cb81-41e5-b8b8-176c900e53bd · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions The role of volatiles in plant communication,
Reference 36
Source-reported events for the cited work
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Observation 25e7ddd2-e0cb-4340-afbf-7cd7b5d348f2 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Leaf uptake of methyl ethyl ketone and croton aldehyde by castanopsis sieboldii and viburnum odoratissimum saplings,
Reference 37
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 91a8b045-5441-4f95-bbf1-c4a419eb2a8f · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions A portion of plant airborne communication is endorsed by uptake and metabolism of volatile organic compounds,
Reference 38
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation b76d3dc4-7365-436d-a352-028599def8cf · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions V olatile organic compounds in the roots and rhizosphere of pinus spp
Reference 39
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 0fe40396-a391-4223-aaee-aacff13c6060 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Soil physical properties related to soil structure,
Reference 40
Source-reported events for the cited work
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Observation 5e29ce8d-96ed-487b-a178-13c5bcfc4888 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions An in situ method for real-time measurement of gas transport in soil,
Reference 41
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Unavailable: canonical work link unavailable.
Observation 75252adb-b21f-44fb-b67e-148fb2aaa83e · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Soil-gas phase transport and structure parameters for a soil under different management regimes and at two moisture levels,
Reference 42
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Observation a4d281a2-7441-4d7b-b556-14ab2eb267d3 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Linking particle and pore size distribution parameters to soil gas transport properties,
Reference 43
Source-reported events for the cited work
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Observation f08c6658-54ae-41ce-b834-a13fed17231f · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Sorption, transport, and degradation of quinoline in unsaturated soil,
Reference 44
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 4ef1d9bb-53f0-4c28-8dce-7af546f335f3 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions The effect of the nutrient intensity and buffering power of a soil, and the absorbing power, size and root hairs of a root, on nutrient absorption by diffusion,
Reference 45
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 9941b300-9b5f-4d23-abfe-e8ad416281ed · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plant–plant communication through common mycorrhizal networks,
Reference 46
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Observation dd51eb97-4361-4e35-80f8-72b9b15a9f91 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Inter-plant communication of tomato plants through underground common mycorrhizal networks,
Reference 47
Source-reported events for the cited work
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Observation f1eca809-af7c-41cb-8fdb-ab6f38dacb4c · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Hijacking common mycorrhizal networks for herbivore-induced defence signal transfer between tomato plants,
Reference 48
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Observation 7edf1b82-68b2-4984-8aae-4db8691c03b4 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Defoliation of interior douglas fir elicits carbon transfer and stress signalling to ponderosa pine neighbors through ectomycorrhizal networks,
Reference 49
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Unavailable: canonical work link unavailable.
Observation a9053224-ca53-4a2c-9362-e9a66dbd26e9 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Underground signals carried through common mycelial networks warn neighbouring plants of aphid attack,
Reference 50
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-19T06:32:44.657259+00:00.
Observation f3f7d6ce-e784-420a-a1af-53a1bee17ebf · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions The fungal fast lane: Common mycorrhizal networks extend bioactive zones of allelochemicals in soils,
Reference 51
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation e1e1abd0-5b2e-43eb-8860-86df3b423f7d · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions System potentials, a novel electrical long- distance apoplastic signal in plants, induced by wounding,
Reference 52
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-19T06:32:44.657259+00:00.
Observation f7b9dfa1-70b4-4253-97ba-350e1796cc7e · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Electrotonic signal transduction between aloe vera plants using underground pathways in soil: Experimental and analytical study,
Reference 53
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Observation 952b946a-aae7-4ae7-a8be-836c1f8b69ae · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Electrical signal transmission in the plant-wide web,
Reference 54
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Observation 6429b36f-b2d7-4ad8-9312-1381c3c446c0 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Variation potential in higher plants: Mechanisms of generation and propagation,
Reference 55
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Observation 5f71e77e-8f25-4615-b505-a07b9eac7229 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Electrical signals in higher plants: Mechanisms of generation and propagation,
Reference 56
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Observation 3e5576d2-6dc1-47cb-a12e-53142cf9144f · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plant acoustics: in the search of a sound mechanism for sound signaling in plants,
Reference 57
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Observation 2ea15864-7174-4b99-85f2-1ea436ed225b · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Exposure to sound vibrations lead to transcriptomic, proteomic and hormonal changes in arabidopsis,
Reference 58
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correction dated 2016-11-24. Source: crossref record 10.1038/srep37484->10.1038/srep33370:correction, observed 2026-07-11T02:55:50.182618+00:00. This notice travels one citation hop only.
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Sound vibration-triggered epigenetic modulation induces plant root immunity against *ralstonia solanacearum*,
Reference 59
Source-reported events for the cited work
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Observation 8c86aadf-1844-4abb-bed4-e381db984993 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plants respond to leaf vibrations caused by insect herbivore chewing,
Reference 60
Source-reported events for the cited work
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Observation a56d68f5-9dda-43fd-a96f-daf8afe2a434 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Root phonotropism: early signalling events following sound perception in *arabidopsis* roots,
Reference 61
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Observation e0b4bdcf-29e4-47fe-90e3-bbc944de68e0 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Tuned in: plant roots use sound to locate water,
Reference 62
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Observation e03955b2-4cfa-4192-b997-172658b8f494 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Acoustic radiation force on a long cylinder, and potential sound transduction by tomato trichomes,
Reference 63
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Observation 3c4d5e53-9a25-4c7a-a6d5-90c2c21c3f27 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Arabidopsis leaf trichomes as acoustic antennae,
Reference 64
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Life behind the wall: sensing mechan- ical cues in plants,
Reference 65
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Observation 87d7e15f-bc5d-4290-ac2d-80726f27717a · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Biosynthesis, function and metabolic engineering of plant volatile organic compounds,
Reference 66
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Observation 740d6069-b347-4336-81a6-e0cda5c6edba · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Nonlinear differential equation model for quantification of transcriptional regulation applied to microarray data of saccharomyces cerevisiae,
Reference 67
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Observation b857ea96-6729-4f56-a24c-d92db6cf893a · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Leaf-level models of constitu- tive and stress-driven volatile organic compound emissions,
Reference 68
Source-reported events for the cited work
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Observation 3fdc7db6-8a44-4dc6-bb2d-a8eaf56c6f07 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions A global model of natural volatile organic compound emissions,
Reference 69
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Observation 4141f68b-747f-4ffb-aa2d-7b66dbcd2830 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions The model of emissions of gases and aerosols from nature version 2.1 (megan2.1): an extended and updated framework for modeling biogenic emissions,
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Observation f69e57d9-e2a5-4c79-b3a3-e829aea904ce · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Plant production and emission of volatile organic compounds,
Reference 71
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Observation 9aca19f4-21a2-46d1-a7d1-2417f079bbe9 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Modulation techniques for communication via diffusion in nanonetworks,
Reference 72
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Observation 6d48eec1-77c7-4d98-84e6-f03e0a86cd53 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Multi ratio shift keying (mrsk) for molecular communication,
Reference 73
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Observation 03b8e37d-9e96-4c45-8cc6-3ff7eb1c152a · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Parame- ter analysis in macro-scale molecular communications using advection- diffusion,
Reference 74
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Observation 66972638-c246-4b9f-bb40-fe946b4cc85f · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Transformed fourier and fick equations for the control of heat and mass diffusion,
Reference 75
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Observation 3838105a-5d8c-424b-9444-aad645ffea64 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Analytical solutions for advection and advection-diffusion equations with spatially variable coefficients,
Reference 76
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Observation ddb7348f-e20e-4043-af45-efe55221da98 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Analytical solutions to one- dimensional advection–diffusion equation with variable coefficients in semi-infinite media,
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Approximate solutions of the advection–diffusion equation for spatially variable flows,
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Generalized analytical solutions of the advection-dispersion equation with variable flow and transport coefficients,
Reference 79
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Laminar and turbulent flow,
Reference 80
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions A puff model using a three-dimensional analytical solution for the pollutant diffusion process,
Reference 81
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions The effect of ozone fumigation on the biogenic volatile organic compounds (bvocs) emitted fromBrassica napusabove- and below-ground,
Reference 82
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Reference 83
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions New concepts for dynamic plant uptake models,
Reference 84
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Observation 4b47ab01-63bb-4546-b66f-74f1f0a36252 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions A novel and simple model of the uptake of organic chemicals by vegetation from air and soil,
Reference 86
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Observation 68ea3b06-edb6-459d-8e79-5b86493ade7b · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Generic one-compartment model for uptake of organic chemicals by foliar vegetation,
Reference 87
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions A fugacity model of chemical uptake by plants from soil and air,
Reference 88
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Reference 89
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Unresolved cited work
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions A comprehensive survey of recent advancements in molecular communi- cation,
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Reference 92
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Challenges in modelling the rhizosphere at different scales,
Reference 94
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Reference 95
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Reference 96
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Reference 97
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Observation 2c26da62-6eb3-4290-a395-e741603eea61 · outbound
Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Three-porosity model for predicting the gas diffusion coefficient in undisturbed soil,
Reference 98
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Observation 2452ffb1-f80a-4af5-84d0-232ed3a1cdd1 · outbound
Reference 99
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Information and Communication Theoretical Foundations of the Internet of Plants, Principles, Challenges, and Future Directions Linking soil microbial activity to water- and air-phase contents and diffusivities,
Reference 100
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