Hematocrit distribution and tissue oxygenation in large microcirculatory networks

IG Gould, AA Linninger - Microcirculation, 2015 - Wiley Online Library
Objective Oxygen tension in the brain is controlled by the microcirculatory supply of RBC,
but the effect of non‐Newtonian blood flow rheology on tissue oxygenation is not well …

Hematocrit Distribution and Tissue Oxygenation in Large Microcirculatory Networks.

IG Gould, AA Linninger - Microcirculation, 2015 - search.ebscohost.com
Objective Oxygen tension in the brain is controlled by the microcirculatory supply of RBC,
but the effect of non-Newtonian blood flow rheology on tissue oxygenation is not well …

Hematocrit distribution and tissue oxygenation in large microcirculatory networks

IG Gould, AA Linninger - Microcirculation (New York, NY …, 2015 - pubmed.ncbi.nlm.nih.gov
Objective Oxygen tension in the brain is controlled by the microcirculatory supply of RBC,
but the effect of non-Newtonian blood flow rheology on tissue oxygenation is not well …

[引用][C] Hematocrit Distribution and Tissue Oxygenation in Large Microcirculatory Networks

IG Gould, AA Linninger - Microcirculation, 2015 - cir.nii.ac.jp
Hematocrit Distribution and Tissue Oxygenation in Large Microcirculatory Networks | CiNii
Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ移動 検索フォームへ移動 …

Hematocrit distribution and tissue oxygenation in large microcirculatory networks.

IG Gould, AA Linninger - Microcirculation (New York, NY: 1994), 2015 - europepmc.org
Objective Oxygen tension in the brain is controlled by the microcirculatory supply of RBC,
but the effect of non-Newtonian blood flow rheology on tissue oxygenation is not well …

Hematocrit Distribution and Tissue Oxygenation in Large Microcirculatory Networks

IG Gould, AA Linninger - Microcirculation, 2015 - infona.pl
Objective Oxygen tension in the brain is controlled by the microcirculatory supply of RBC,
but the effect of non‐Newtonian blood flow rheology on tissue oxygenation is not well …