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Regulation of tissue oxygen levels in the mammalian lens
Richard McNulty
, Huan Wang
, Richard T. Mathias
, Beryl J. Ortwerth
, Roger J.W. Truscott
,
Steven Bassnett
Department of Ophthalmology and Visual Sciences
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
Institute of Clinical and Translational Sciences (ICTS)
DBBS - Molecular Cell Biology
DBBS - Developmental, Regenerative and Stem Cell Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
156
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Scopus citations
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Keyphrases
Oxygen Consumption
100%
Mitochondria
100%
Oxygen Level
100%
Tissue Oxygenation
100%
Lens nucleus
66%
Oxygen Consumption Rate
33%
Nuclear Cataract
33%
Clinical Significance
33%
Cellular Components
33%
High Incidence
33%
Fiber Cells
33%
Cell Layer
33%
Causes of Blindness
33%
Oxygen Partial Pressure
33%
Postsurgical
33%
Intraocular Surgery
33%
Hypoxia
33%
Two-photon Microscopy
33%
Opacification
33%
Mitochondrial Inhibitors
33%
Mitochondrial Respiration
33%
Mitochondrial Metabolism
33%
As(III)
33%
Bovine Lens
33%
Effective Diffusion Coefficient
33%
Tissue Temperature
33%
Dissolved Oxygen
33%
Oxygen-rich
33%
Long-term Preservation
33%
Consumption Model
33%
O2 Pressure
33%
Oxygen Diffusion Coefficient
33%
Oxygen Budget
33%
Flooding
33%
Typical Values
33%
Steep Gradient
33%
Nursing and Health Professions
Oxygen Tissue Level
100%
Oxygen Consumption
100%
Mitochondrion
75%
Diffusion
50%
Cataract
25%
Hypoxia
25%
Partial Pressure
25%
Eye Surgery
25%
Dissolved Oxygen
25%
Medicine and Dentistry
Oxygen Consumption
100%
Mitochondrion
75%
Lens Nucleus
50%
Mitochondrial Respiration
50%
Cataract
25%
Eye Surgery
25%
Hypoxia
25%
Dissolved Oxygen
25%
Neuroscience
Mitochondrion
100%
Mitochondrial Respiration
66%
Nucleus
66%
Cataract
33%
Veterinary Science and Veterinary Medicine
Metabolic Pathway
100%