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10 merged results for "Physarum Polycephalum"

Partial results: at least one source did not answer. Available results are shown rather than treating an upstream outage as zero matches.

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  1. Mathematical modeling for a primitive form of habituation in an amoeba.

    Nishi K, Tero A, Nishigami Y, Nakagaki T · 2026 · Journal of mathematical biology

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1007/s00285-026-02438-7

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  2. Inducing chirality in slime mold - spontaneous alternation behavior may reveal spatial memory in Physarum polycephalum.

    Kuttner L, Freiberg J · 2026 · Protist

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1016/j.protis.2026.126156

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  3. Bioinspired algorithm based on Physarum polycephalum for the formation of decentralized mesh networks in multi-robot systems.

    Martinelli D, de Oliveira AS, Kalempa VC · 2025 · Scientific reports

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1038/s41598-025-33456-y

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  4. Physarum-based approach to distributed optimal transport on graphs.

    Oishi K, Jimbo T, Kikuchi S, Date Y · 2026 · Scientific reports

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1038/s41598-026-61965-x

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  5. Passage through the sclerotial stage does not impose persistent transcriptional reprogramming in Physarum.

    Tsuchida K, Masui M, Kono N · 2026 · Mycologia

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1080/00275514.2026.2683309

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  6. Confinement and hydraulic resistance appear to separately govern motility and path selection in Physarum polycephalum.

    Kharal SP, Mohibullah M, McDermott T, Easley C · 2026 · Journal of the Royal Society, Interface

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1098/rsif.2025.0873

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  7. Slow modulation of the contraction patterns in Physarum polycephalum.

    Saiseau R, Busson V, Durand M · 2026 · Journal of the Royal Society, Interface

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1098/rsif.2025.0971

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  8. Learning Without Neurons: A Review of Associative Memory in Protists.

    Jorwal Y · 2026 · The Journal of eukaryotic microbiology

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.1111/jeu.70120

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    • supportingOpen access status: Normalized open-access status: open. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  9. Bacterial expression of human small GTPases induces stochastic predatory responses and motility interference in Physarum polycephalum.

    Saiki R, Iimura R, Ichimura M, Osada Y · 2026 · PloS one

    limited evidence Transparent signal score 43/100 · policy 1.0.0

    Found in pubmed · DOI 10.1371/journal.pone.0359275

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer
  10. Ergot Alkaloids Affect Foraging Activity of the Slime Mold Physarum polycephalum.

    Sexstone JR, Jones AM, Panaccione DG · 2026 · Toxins

    limited evidence Transparent signal score 45/100 · policy 1.0.0

    Found in pubmed · DOI 10.3390/toxins18070282

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    • cautionMetadata completeness: 5 of 6 scored descriptive metadata groups are present; missing fields increase uncertainty. Source: Normalized work metadata; license: Caller-provided; provenance license not supplied to scorer