Terry W. Fletcher
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Also affiliated: Arkansas Children's Hospital (2002–2005); Amgen (United States) (2002–2005); The University of Texas MD Anderson Cancer Center (2019); University of Arkansas Medical Center (2015); John L. McClellan Memorial Veterans Hospital (1996); Arkansas Department of Health (1996); Arkansas Children's Research Institute (2002–2005); The University of Texas Medical Branch at Galveston (2019)
Research Areas
Biomedical Subjects
Biography and Research Information
Metrics
- h-index: 8
- Publications: 22
- Citations: 316
Selected Publications
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Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow (2019)
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Characterization of a surgical model of lymphatic insufficiency in the rat mesentery (2017)
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ATP‐Sensitive K + Channels in Smooth Muscle Cells from Rat Mesenteric Lymph Vessels VESSELS (2017)
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High‐speed microscopy for in vivo monitoring of lymph dynamics (2017)
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Doxorubicin Acutely Inhibits Lymph Flow in Rat Mesenteric Lymph Vessels (2016)
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A novel transgenic mouse model of lysosomal storage disorder (2016)
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Doxorubicin Inhibition of Lymphatic Function is Mediated by Ryanodine Receptors and Prevented by Dantrolene (2015)
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Dobutamine Stress Testing as an Early Diagnostic for Radiation‐Induced Heart Disease (2015)
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Doxorubicin inhibits lymphatic function in vitro and in vivo (655.1) (2014)
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The β3 subunit: a key regulator of vascular calcium channel expression (1057.10) (2014)
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α1‐Adrenergic receptor (α1‐AR) activation rapidly upregulates L‐type Ca2+ channels in rat mesenteric arteries in vivo (2013)
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Serotonin uptake rates in platelets from angiotensin II-induced hypertensive mice (2013)
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Dynamic turnover of L‐type calcium channels in rat mesenteric arteries in vivo (2012)
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The β3 Subunit Contributes to Vascular Calcium Channel Upregulation and Hypertension in Angiotensin II–Infused C57BL/6 Mice (2012)
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Exposure to H 2 O 2 rapidly down‐regulates L‐type calcium channels in A7r5 cells (2008)
Collaboration Network
Top Collaborators
- The β3 Subunit Contributes to Vascular Calcium Channel Upregulation and Hypertension in Angiotensin II–Infused C57BL/6 Mice
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- Serotonin uptake rates in platelets from angiotensin II-induced hypertensive mice
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
Showing 5 of 14 shared publications
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
- Doxorubicin Inhibition of Lymphatic Function is Mediated by Ryanodine Receptors and Prevented by Dantrolene
- Doxorubicin inhibits lymphatic function in vitro and in vivo (655.1)
Showing 5 of 7 shared publications
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
- Doxorubicin Inhibition of Lymphatic Function is Mediated by Ryanodine Receptors and Prevented by Dantrolene
- Doxorubicin inhibits lymphatic function in vitro and in vivo (655.1)
Showing 5 of 6 shared publications
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
- Doxorubicin Inhibition of Lymphatic Function is Mediated by Ryanodine Receptors and Prevented by Dantrolene
- Doxorubicin Acutely Inhibits Lymph Flow in Rat Mesenteric Lymph Vessels
- The β3 Subunit Contributes to Vascular Calcium Channel Upregulation and Hypertension in Angiotensin II–Infused C57BL/6 Mice
- The β3 subunit: a key regulator of vascular calcium channel expression (1057.10)
- α1‐Adrenergic receptor (α1‐AR) activation rapidly upregulates L‐type Ca2+ channels in rat mesenteric arteries in vivo
- Dynamic turnover of L‐type calcium channels in rat mesenteric arteries in vivo
- Exposure to H 2 O 2 rapidly down‐regulates L‐type calcium channels in A7r5 cells
- The β3 Subunit Contributes to Vascular Calcium Channel Upregulation and Hypertension in Angiotensin II–Infused C57BL/6 Mice
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- The β3 subunit: a key regulator of vascular calcium channel expression (1057.10)
- α1‐Adrenergic receptor (α1‐AR) activation rapidly upregulates L‐type Ca2+ channels in rat mesenteric arteries in vivo
- Dynamic turnover of L‐type calcium channels in rat mesenteric arteries in vivo
- The β3 Subunit Contributes to Vascular Calcium Channel Upregulation and Hypertension in Angiotensin II–Infused C57BL/6 Mice
- The β3 subunit: a key regulator of vascular calcium channel expression (1057.10)
- α1‐Adrenergic receptor (α1‐AR) activation rapidly upregulates L‐type Ca2+ channels in rat mesenteric arteries in vivo
- Dynamic turnover of L‐type calcium channels in rat mesenteric arteries in vivo
- Doxorubicin Activates Ryanodine Receptors in Rat Lymphatic Muscle Cells to Attenuate Rhythmic Contractions and Lymph Flow
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
- Doxorubicin Acutely Inhibits Lymph Flow in Rat Mesenteric Lymph Vessels
- High‐speed microscopy for in vivo monitoring of lymph dynamics
- Characterization of a surgical model of lymphatic insufficiency in the rat mesentery
- ATP‐Sensitive K + Channels in Smooth Muscle Cells from Rat Mesenteric Lymph Vessels VESSELS
- Doxorubicin Inhibition of Lymphatic Function is Mediated by Ryanodine Receptors and Prevented by Dantrolene
- Doxorubicin inhibits lymphatic function in vitro and in vivo (655.1)
- Doxorubicin Inhibition of Lymphatic Function is Mediated by Ryanodine Receptors and Prevented by Dantrolene
- Doxorubicin inhibits lymphatic function in vitro and in vivo (655.1)
- Doxorubicin Inhibition of Lymphatic Function is Mediated by Ryanodine Receptors and Prevented by Dantrolene
- Doxorubicin inhibits lymphatic function in vitro and in vivo (655.1)
- The β3 Subunit Contributes to Vascular Calcium Channel Upregulation and Hypertension in Angiotensin II–Infused C57BL/6 Mice
- Exposure to H 2 O 2 rapidly down‐regulates L‐type calcium channels in A7r5 cells
- Interleukin-1 and Tumor Necrosis Factor Antagonists Attenuate Ethanol-Induced Inhibition of Bone Formation in a Rat Model of Distraction Osteogenesis
- Ethanol-Induced Inhibition of Bone Formation in a Rat Model of Distraction Osteogenesis: A Role for the Tumor Necrosis Factor Signaling Axis
- Interleukin-1 and Tumor Necrosis Factor Antagonists Attenuate Ethanol-Induced Inhibition of Bone Formation in a Rat Model of Distraction Osteogenesis
- Ethanol-Induced Inhibition of Bone Formation in a Rat Model of Distraction Osteogenesis: A Role for the Tumor Necrosis Factor Signaling Axis