Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Larry M Cai"'
Glioma cells with the IDH1 mutation modulate metabolic fractional flux through pyruvate carboxylase.
Autor:
Jose L Izquierdo-Garcia, Larry M Cai, Myriam M Chaumeil, Pia Eriksson, Aaron E Robinson, Russell O Pieper, Joanna J Phillips, Sabrina M Ronen
Publikováno v:
PLoS ONE, Vol 9, Iss 9, p e108289 (2014)
Over 70% of low-grade gliomas carry a heterozygous R132H mutation in the gene coding for isocitrate dehydrogenase 1 (IDH1). This confers the enzyme with the novel ability to convert α-ketoglutarate to 2-hydroxyglutarate, ultimately leading to tumori
Externí odkaz:
https://doaj.org/article/e71394f6686c4aada919e509ccd25bb9
Autor:
Achille Mileto, Daniel S. Hippe, Ryan B. O’Malley, Carolyn L. Wang, Jennifer Xiao, Mladen Zecevic, William P. Shuman, Manjiri Dighe, Giuseppe V Toia, Adam G. Chandler, Larry M Cai, D Zamora
Publikováno v:
Radiology. 298:611-619
Background Virtual unenhanced (VUE) images obtained by using a dual-energy CT (DECT) multimaterial decomposition algorithm hold promise for diagnostic use in the abdomen in lieu of true unenhanced (TUE) images. Purpose To assess VUE images obtained f
Publikováno v:
European Radiology. 31:4330-4339
As the access of radiology practices to dual-energy CT (DECT) has increased worldwide, seamless integration into clinical workflows and optimized use of this technology are desirable. In this article, we provide basic concepts of commercially availab
Autor:
D Zamora, Daniel S Hippe, Anushri Parakh, Carolyn L. Wang, Martin L. Gunn, Larry M Cai, Avinash Kambadakone, Sherry S. Wang, Jennifer Xiao, Jinjin Cao, Achille Mileto, Giuseppe V Toia
Publikováno v:
AJR. American journal of roentgenology. 218(4)
Background: Clinical use of the dual-energy CT (DECT) iodine quantification technique is hindered by between-platform (i.e., across different manufacturers) variability in iodine concentration (IC), particularly at low iodine levels. Objective: To de
Publikováno v:
European radiology. 31(6)
Although dual-energy CT (DECT) may prove useful in a variety of abdominal imaging tasks, renal mass evaluation represents the area where this technology can be most impactful in abdominal imaging compared to routinely performed contrast-enhanced-only