Search Results - "Oishi, A.C"

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  1. 1

    Performing gas-exchange measurements on excised branches - evaluation and recommendations by MISSIK, J.E.C., OISHI, A.C., BENSON, M.C., MERETSKY, V.J., PHILLIPS, R.P., NOVICK, K.A.

    Published in Photosynthetica (01-01-2021)
    “…In forest canopies, it is common to perform leaf-level gas-exchange measurements on recently excised branches, often without testing for excision-related…”
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    Journal Article
  2. 2

    Trenching reduces soil heterotrophic activity in a loblolly pine (Pinus taeda) forest exposed to elevated atmospheric [CO2] and N fertilization by Drake, J.E., Oishi, A.C., Giasson, M.-A., Oren, R., Johnsen, K.H., Finzi, A.C.

    Published in Agricultural and forest meteorology (01-11-2012)
    “…► The coupling between live-root-C inputs to soils and microbial activity was explored. ► Removing roots exacerbates microbial C limitation and increases N…”
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  3. 3
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    On the spectrum of soil moisture from hourly to interannual scales by Katul, G.G, Porporato, A, Daly, E, Oishi, A.C, Kim, H.S, Stoy, P.C, Juang, J.Y, Siqueira, M.B

    Published in Water resources research (01-05-2007)
    “…The spectrum of soil moisture content at scales ranging from 1 hour to 8 years is analyzed for a site whose hydrologic balance is primarily governed by…”
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  5. 5

    Hydrologic and atmospheric controls on initiation of convective precipitation events by Juang, J.Y, Porporato, A, Stoy, P.C, Siqueira, M.S, Oishi, A.C, Detto, M, Kim, H.S, Katul, G.G

    Published in Water resources research (01-03-2007)
    “…The pathway to summertime convective precipitation remains a vexing research problem because of the nonlinear feedback between soil moisture content and the…”
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  6. 6

    Contrasting responses to drought of forest floor CO₂ efflux in a loblolly pine plantation and a nearby oak-hickory forest by Palmroth, S, Maier, C.A, McCarthy, H.R, Oishi, A.C, Kim, H.S, Johnsen, K.H, Katul, G.G, Oren, R

    Published in Global change biology (01-03-2005)
    “…Forest floor CO2 efflux (F(ff)) depends on vegetation type, climate, and soil physical properties. We assessed the effects of biological factors on F(ff) by…”
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  7. 7

    Temporal variability in ¹³C of respired CO₂ in a pine and a hardwood forest subject to similar climatic conditions by Mortazavi, B, Chanton, J.P, Prater, J.L, Oishi, A.C, Oren, R, Katul, G

    Published in Oecologia (2005)
    “…Temporal variability in the ^sup 13^C of foliage (δ^sup 13^C^sub F^), soil (δ^sup 13^C^sub S^) and ecosystem (δ^sup 13^C^sub R^) respired CO^sub 2^ was…”
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