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The Journal of Prevention of Alzheimer'S Disease
|
November 29, 2017
B-Vitamin Therapy for Kidney Transplant Recipients Lowers Homocysteine and Improves Selective Cognitive Outcomes in the Randomized FAVORIT Ancillary Cognitive Trial
T M Scott, G Rogers, D E Weiner, et al.
The American Journal of Clinical Nutrition
|
March 10, 2001
Iron status of the free-living, elderly Framingham Heart Study cohort: an iron-replete population with a high prevalence of elevated iron stores
D J Fleming, P F Jacques, K L Tucker, et al.
Transplantation
|
August 10, 1999
Determinants of fasting plasma total homocysteine levels among chronic stable renal transplant recipients
A G Bostom, R Y Gohh, A J Beaulieu, et al.
Journal of Renal Nutrition : the Official Journal of the Council on Renal Nutrition of the National Kidney Foundation
|
November 9, 2000
Determinants of plasma total homocysteine levels in Korean chronic renal transplant recipients
H Han, J T Dwyer, J Selhub, et al.
Diabetes Care
|
July 27, 2001
Fasting plasma homocysteine levels in the insulin resistance syndrome: the Framingham offspring study
J B Meigs, P F Jacques, J Selhub, et al.
Annals of Internal Medicine
|
September 4, 1999
Serum total homocysteine concentrations in the third National Health and Nutrition Examination Survey (1991-1994): population reference ranges and contribution of vitamin status to high serum concentrations
J Selhub, P F Jacques, I H Rosenberg, et al.
Annals of Internal Medicine
|
September 4, 1999
Nonfasting plasma total homocysteine levels and stroke incidence in elderly persons: the Framingham Study
A G Bostom, I H Rosenberg, H Silbershatz, et al.
Circulation
|
January 1, 1996
Relation between folate status, a common mutation in methylenetetrahydrofolate reductase, and plasma homocysteine concentrations
P F Jacques, A G Bostom, R R Williams, et al.
Atherosclerosis
|
December 1, 1994
High dose ascorbate supplementation fails to affect plasma homocyst(e)ine levels in patients with coronary heart disease
A G Bostom, L Yanek, A L Hume, et al.
Archives of Internal Medicine
|
May 21, 1999
Nonfasting plasma total homocysteine levels and all-cause and cardiovascular disease mortality in elderly Framingham men and women
A G Bostom, H Silbershatz, I H Rosenberg, et al.
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of 10
Search research articles
Search
Showing results (61-70 of 94) with videos related to
Sort By:
Page
of 10
The Journal of Prevention of Alzheimer'S Disease
|
November 29, 2017
B-Vitamin Therapy for Kidney Transplant Recipients Lowers Homocysteine and Improves Selective Cognitive Outcomes in the Randomized FAVORIT Ancillary Cognitive Trial
T M Scott, G Rogers, D E Weiner, et al.
The American Journal of Clinical Nutrition
|
March 10, 2001
Iron status of the free-living, elderly Framingham Heart Study cohort: an iron-replete population with a high prevalence of elevated iron stores
D J Fleming, P F Jacques, K L Tucker, et al.
Transplantation
|
August 10, 1999
Determinants of fasting plasma total homocysteine levels among chronic stable renal transplant recipients
A G Bostom, R Y Gohh, A J Beaulieu, et al.
Journal of Renal Nutrition : the Official Journal of the Council on Renal Nutrition of the National Kidney Foundation
|
November 9, 2000
Determinants of plasma total homocysteine levels in Korean chronic renal transplant recipients
H Han, J T Dwyer, J Selhub, et al.
Diabetes Care
|
July 27, 2001
Fasting plasma homocysteine levels in the insulin resistance syndrome: the Framingham offspring study
J B Meigs, P F Jacques, J Selhub, et al.
Annals of Internal Medicine
|
September 4, 1999
Serum total homocysteine concentrations in the third National Health and Nutrition Examination Survey (1991-1994): population reference ranges and contribution of vitamin status to high serum concentrations
J Selhub, P F Jacques, I H Rosenberg, et al.
Annals of Internal Medicine
|
September 4, 1999
Nonfasting plasma total homocysteine levels and stroke incidence in elderly persons: the Framingham Study
A G Bostom, I H Rosenberg, H Silbershatz, et al.
Circulation
|
January 1, 1996
Relation between folate status, a common mutation in methylenetetrahydrofolate reductase, and plasma homocysteine concentrations
P F Jacques, A G Bostom, R R Williams, et al.
Atherosclerosis
|
December 1, 1994
High dose ascorbate supplementation fails to affect plasma homocyst(e)ine levels in patients with coronary heart disease
A G Bostom, L Yanek, A L Hume, et al.
Archives of Internal Medicine
|
May 21, 1999
Nonfasting plasma total homocysteine levels and all-cause and cardiovascular disease mortality in elderly Framingham men and women
A G Bostom, H Silbershatz, I H Rosenberg, et al.
Page
of 10