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Items: 1 to 20 of 108

1.

Enhanced cholinergic response in pancreata of nonhuman primates with impaired glucose tolerance shown on [18F]fluorobenzyltrozamicol positron emission tomography.

Clark PB, Kavanagh K, Gage HD, Garg P, Garg S, Calles-Escandon J, Wagner JD, Morton K.

Diabetes Technol Ther. 2009 Jul;11(7):451-5. doi: 10.1089/dia.2008.0113.

2.

Dual radiotracer analysis of cholinergic neuronal changes in prediabetic mouse pancreas.

Clark PB, Plaza MJ, Kraas J, Burbank N, Elster AW 2nd, Garg P, Garg S, Gage HD, Calles-Escandon J, Wagner JD, Morton K.

Diabetes Technol Ther. 2009 Feb;11(2):107-11. doi: 10.1089/dia.2008.0024.

3.

Imaging of cholinergic terminals using the radiotracer [18F](+)-4-fluorobenzyltrozamicol: in vitro binding studies and positron emission tomography studies in nonhuman primates.

Mach RH, Voytko ML, Ehrenkaufer RL, Nader MA, Tobin JR, Efange SM, Parsons SM, Gage HD, Smith CR, Morton TE.

Synapse. 1997 Apr;25(4):368-80.

PMID:
9097396
4.

Neurofunctional imaging of the pancreas utilizing the cholinergic PET radioligand [18F]4-fluorobenzyltrozamicol.

Clark PB, Gage HD, Brown-Proctor C, Buchheimer N, Calles-Escandon J, Mach RH, Morton KA.

Eur J Nucl Med Mol Imaging. 2004 Feb;31(2):258-60.

PMID:
15129709
5.

Morphine-induced spinal cholinergic activation: in vivo imaging with positron emission tomography.

Gage HD, Gage JC, Tobin JR, Chiari A, Tong C, Xu Z, Mach RH, Efange SM, Ehrenkaufer RL, Eisenach JC.

Pain. 2001 Mar;91(1-2):139-45.

PMID:
11240086
6.

Reproducibility of repeated measures of cholinergic terminal density using.

Gage HD, Voytko ML, Ehrenkaufer RL, Tobin JR, Efange SM, Mach RH.

J Nucl Med. 2000 Dec;41(12):2069-76.

8.

p-[18F]fluorobenzyltrozamicol ([18F]FBT): molecular decomposition- reconstitution approach to vesamicol receptor radioligands for positron emission tomography.

Efange SM, Mach RH, Khare A, Michelson RH, Nowak PA, Evora PH.

Appl Radiat Isot. 1994 Apr;45(4):465-72.

PMID:
8186771
10.

Impaired fasting glycaemia vs impaired glucose tolerance: similar impairment of pancreatic alpha and beta cell function but differential roles of incretin hormones and insulin action.

Faerch K, Vaag A, Holst JJ, Glümer C, Pedersen O, Borch-Johnsen K.

Diabetologia. 2008 May;51(5):853-61. doi: 10.1007/s00125-008-0951-x. Epub 2008 Mar 4.

PMID:
18317726
11.

Brazilian individuals with impaired glucose tolerance are characterized by impaired insulin secretion.

Pimenta WP, Santos ML, Cruz NS, Aragon FF, Padovani CR, Gerich JE.

Diabetes Metab. 2002 Dec;28(6 Pt 1):468-76.

12.

Study of genetic prediabetic south Indian subjects. Importance of hyperinsulinemia and beta-cell dysfunction.

Snehalatha C, Ramachandran A, Satyavani K, Latha E, Viswanathan V.

Diabetes Care. 1998 Jan;21(1):76-9.

PMID:
9538973
13.
14.

Risk of future diabetes is as high with abnormal intermediate post-glucose response as with impaired glucose tolerance.

Viswanathan V, Clementina M, Nair BM, Satyavani K.

J Assoc Physicians India. 2007 Dec;55:833-7.

PMID:
18405128
15.

In vivo insulin sensitivity and secretion in obese youth: what are the differences between normal glucose tolerance, impaired glucose tolerance, and type 2 diabetes?

Bacha F, Gungor N, Lee S, Arslanian SA.

Diabetes Care. 2009 Jan;32(1):100-5. doi: 10.2337/dc08-1030. Epub 2008 Oct 3.

17.

Cholinergic activity of aged rhesus monkeys revealed by positron emission tomography.

Voytko ML, Mach RH, Gage HD, Ehrenkaufer RL, Efange SM, Tobin JR.

Synapse. 2001 Jan;39(1):95-100.

PMID:
11071714
18.

Beta-cell function is a major contributor to oral glucose tolerance in high-risk relatives of four ethnic groups in the U.S.

Jensen CC, Cnop M, Hull RL, Fujimoto WY, Kahn SE; American Diabetes Association GENNID Study Group..

Diabetes. 2002 Jul;51(7):2170-8.

20.

Insulin secretion and anti-GAD65 antibodies in subjects with impaired glucose tolerance.

Tankova T, Dakovska L, Kirilov G, Koev D.

Exp Clin Endocrinol Diabetes. 2001;109(7):355-60.

PMID:
11573145

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