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Glucose Intolerance—‘Life’s Real Luxury?’
Aquatic Animal Nutrition
◽
10.1007/978-3-030-87227-4_15
◽
2022
◽
pp. 329-348
Author(s):
Christian E. W. Steinberg
Keyword(s):
Glucose Intolerance
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References
Effect of Physical Activity on Age-Related Glucose Intolerance
Clinics in Geriatric Medicine
◽
10.1016/s0749-0690(18)30585-8
◽
1990
◽
Vol 6
(4)
◽
pp. 849-863
◽
Cited By ~ 12
Author(s):
Ami Laws
◽
Gerald M. Reaven
Keyword(s):
Physical Activity
◽
Glucose Intolerance
◽
Age Related
Download Full-text
Female 5[beta]-reductase knockout mice are protected from diet induced obesity, insulin resistance and glucose intolerance
Endocrine Abstracts
◽
10.1530/endoabs.41.oc12.2
◽
2016
◽
Author(s):
Laura Gathercole
◽
Matthew Chapman
◽
Dean Larner
◽
Petra Klusonova
◽
Trevor Penning
◽
...
Keyword(s):
Insulin Resistance
◽
Glucose Intolerance
◽
Knockout Mice
◽
Diet Induced Obesity
Download Full-text
Using diaserein on the patients with glucose intolerance
Endocrine Abstracts
◽
10.1530/endoabs.49.ep710
◽
2017
◽
Author(s):
Kenan Cadirci
◽
Kadri Yildiz
Keyword(s):
Glucose Intolerance
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1663-P: Monophasic Glucose Response Curve Reflective of Glucose Intolerance in Young Mexican Americans
Diabetes
◽
10.2337/db19-1663-p
◽
2019
◽
Vol 68
(Supplement 1)
◽
pp. 1663-P
Author(s):
JASMIN JENKINS
◽
CESAR MEZA
◽
MANUEL AMADOR
◽
ANDREW J. MCAINCH
◽
SUDIP BAJPEYI
Keyword(s):
Glucose Intolerance
◽
Mexican Americans
◽
Response Curve
◽
Glucose Response
Download Full-text
Hyperproinsulinemia in OGlcNAc Transferase Deficient Mice Is Associated with Loss of CPE and eIF4G1, but ß-Cell Deletion of eIF4G1 Induces Glucose Intolerance Independent of CPE Dysregulation
Diabetes
◽
10.2337/db18-2167-p
◽
2018
◽
Vol 67
(Supplement 1)
◽
pp. 2167-P
Author(s):
SEOKWON JO
◽
AMBER D. LOCKRIDGE
◽
EMILYN ALEJANDRO
Keyword(s):
Glucose Intolerance
◽
Deficient Mice
◽
Cell Deletion
Download Full-text
Deletion of SLC4A4 in Pancreatic ß Cells Protects from High-Fat Diet–Induced Glucose Intolerance and ß-Cell Dysfunction
Diabetes
◽
10.2337/db18-2117-p
◽
2018
◽
Vol 67
(Supplement 1)
◽
pp. 2117-P
Author(s):
MATTHEW BROWN
◽
HEATHER L. HOLMES
◽
KUNTOL RAKSHIT
◽
MICHAEL F. ROMERO
◽
ALEKSEY MATVEYENKO
Keyword(s):
Glucose Intolerance
◽
High Fat Diet
◽
High Fat
◽
Cell Dysfunction
Download Full-text
1445-P: Metabolic Syndrome Subtypes Point to Distinct Origins of Glucose Intolerance
Diabetes
◽
10.2337/db20-1445-p
◽
2020
◽
Vol 69
(Supplement 1)
◽
pp. 1445-P
Author(s):
CHRISTY LUKOSE
◽
ERIN CAMPBELL
◽
DAVID P. CISTOLA
Keyword(s):
Metabolic Syndrome
◽
Glucose Intolerance
Download Full-text
Hemoglobin AIc as an indicator of the degree of glucose intolerance in diabetes
Diabetes
◽
10.2337/diabetes.25.3.230
◽
1976
◽
Vol 25
(3)
◽
pp. 230-232
◽
Cited By ~ 61
Author(s):
R. J. Koenig
◽
C. M. Peterson
◽
C. Kilo
◽
A. Cerami
◽
J. R. Williamson
Keyword(s):
Glucose Intolerance
Download Full-text
Faculty Opinions recommendation of L-alanyl-L-glutamine dipeptide-supplemented total parenteral nutrition reduces infectious complications and glucose intolerance in critically ill patients: the French controlled, randomized, double-blind, multicenter study.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.11514.468993
◽
2006
◽
Author(s):
Paul van Leeuwen
Keyword(s):
Parenteral Nutrition
◽
Total Parenteral Nutrition
◽
Critically Ill
◽
Glucose Intolerance
◽
Multicenter Study
◽
Critically Ill Patients
◽
Infectious Complications
◽
Double Blind
Download Full-text
Faculty Opinions recommendation of Muscle-specific Pikfyve gene disruption causes glucose intolerance, insulin resistance, adiposity, and hyperinsulinemia but not muscle fiber-type switching.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.718014202.793477662
◽
2013
◽
Author(s):
Alex Toker
◽
Kristin Brown
Keyword(s):
Insulin Resistance
◽
Glucose Intolerance
◽
Muscle Fiber
◽
Gene Disruption
◽
Fiber Type
◽
Muscle Fiber Type
Download Full-text
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