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1 esence of different functional groups on the diphosphonate.
2 with liposome-encapsulated dichloromethylene diphosphonate.
3 TP analogue guanylyl-(alpha, beta)-methylene-diphosphonate.
4          Rhenium-188 (tin) hydroxyethylidine diphosphonate [188Re(Sn)HEDP] is a new radiopharmaceutic
5 AOPCP [adenosine-5'-O-(alpha,beta-methylene)-diphosphonate] (250 microm).
6 ostic performance of (99m)Tc-hydroxyethylene-diphosphonate ((99m)Tc-HDP) planar bone scintigraphy (pB
7 I)-induced improvements in (99m)Tc-methylene diphosphonate ((99m)Tc-MDP) bone scans.
8 tive studies of bone using (99m)Tc-methylene diphosphonate ((99m)Tc-MDP) have a potentially valuable
9 studies of the kinetics of (99m)Tc-methylene diphosphonate ((99m)Tc-MDP) in metastatic and metabolic
10                      99mTechnetium methylene diphosphonate (99mTc MDP) bone scintigraphy is currently
11 liposome-encapsulated drug dichloromethylene diphosphonate, a procedure which depletes macrophages fr
12   Dynamic bone scanning with (99m)Tc-labeled diphosphonates and (18)F-labeled sodium fluoride provide
13  the mechanisms of uptake of (99m)Tc-labeled diphosphonates and (18)F-sodium fluoride and discusses a
14 polyoxometalate (POM) chemistry, diphosphate/diphosphonate-based POMs represent a more recent area of
15  review we discuss in detail all diphosphate/diphosphonate-based POMs, beginning with early developme
16 )Tc-pertechnetate phantom, (99m)Tc-methylene diphosphonate bone imaging, and measurement of the bindi
17  imaging (CT or MRI, and a (99m)Tc-methylene diphosphonate bone scan) before enrollment.
18 ulfur colloid bone marrow scanning and 99mTc-diphosphonate bone scanning.
19 ploratory analysis, paired (99m)Tc-methylene diphosphonate bone scans ((99m)Tc-BS) were available for
20 nfection, multiphase (99m)Tc-hydroxyethylene diphosphonate bone scans were negative early, but late-p
21                     (99m)Tc-hydroxymethylene diphosphonate bone scans were only positive at day 14 in
22               Conventional (99m)Tc-methylene diphosphonate bone scans, (201)Tl tumor imaging, and PET
23 MIBG-nonavid disease, replace technetium-99m diphosphonate bone scintigraphy for osteomedullary metas
24 ), 111In-pentetreotide, and Tc-99m-methylene diphosphonate bone scintigraphy in 30 patients with SDHB
25 olid state for the octabromoacetamide 4a and diphosphonate cavitand 13 by single-crystal X-ray analys
26 ed of their macrophages by dichloromethylene diphosphonate (Cl(2)MDP) injection.
27 linium chloride (GdCl3) or dichloromethylene diphosphonate (Cl2MDP) to assess the effects of macropha
28 n of liposome-encapsulated dichloromethylene diphosphonate (CL2MDP).
29 n of liposome-encapsulated dichloromethylene diphosphonate (Cl2MDP-liposomes or clodronate-liposomes)
30  injection of clodronate- (dichloromethylene diphosphonate) containing liposomes before fully allogen
31 used liposome-encapsulated dichloromethylene diphosphonate determined the role of macrophages.
32 the GTP analog guanylyl beta,gamma-methylene-diphosphonate (GMP-PCP) (i.e. the presumed signaling-act
33 tubules with guanylyl-(alpha,beta)-methylene-diphosphonate (GMPCPP).
34 yzable GTP analogue guanylyl-(a,b)-methylene-diphosphonate (GMPCPP).
35 phate > MANT-guanylyl-(beta,gamma-methylene)-diphosphonate > MANT-guanosine 5'-O-2-(thio)diphosphate.
36 y encapsulated clodronate (dichloromethylene diphosphonate) has previously been found to be a potent
37       Although (18)F-labeled NaF and (99m)Tc-diphosphonate have a similar patient dosimetry, (18)F-fl
38 ty and efficacy of (186)Re-hydroxyethylidene diphosphonate (HEDP) as an adjuvant to external-beam rad
39 , 89Sr-chloride, 186Re-1,1 hydroxyethylidene diphosphonate (HEDP), and 153Sm-ethylene diamine tetrame
40 hy, bone damages by (99m)Tc-hydroxymethylene diphosphonate imaging, inflammation by (18)F-FDG PET, an
41 nts after a single 600-MBq (99m)Tc-methylene diphosphonate injection.
42  PBS (L-PBS), or liposomal dichloromethylene diphosphonate (L-Cl2MDP), a preparation which leads to s
43 on of liposomes containing dichloromethylene diphosphonate (L-Cl2MDP).
44 ium complexes with multifunctional bipyridyl diphosphonate ligands as well as initial water oxidation
45 c and 75-125 microCi 111In), 99mTc-methylene diphosphonate (MDP) (3-5 mCi) and 67Ga-citrate (500 micr
46 tracers (18)F-fluoride and (99m)Tc-methylene diphosphonate (MDP) are an alternative method to biochem
47                              99mTc-methylene diphosphonate (MDP) bone scanning was performed before t
48 tive studies of bone using (99m)Tc-methylene diphosphonate (MDP) reflect bone remodeling.
49 minent soft-tissue uptake of 99mTc-methylene diphosphonate (MDP) within the prostate bed was found af
50 ltriglicine chelator (MAG3), 99mTc-methylene diphosphonate (MDP), 99mTc-hexamethylpropylene amine oxi
51  included the combination of 99mTc-methylene diphosphonate scintigraphy, CT, or MRI.
52 of (18)F-fluoride PET, compared with (99m)Tc-diphosphonate scintigraphy, support the reconsideration
53 F-fluoride PET is more accurate than (99m)Tc-diphosphonate SPECT for identifying both malignant and b
54                Technetium 99m hydroxymethane diphosphonate SPECT/CT bone tracer uptake was volumetric
55 llar liposome-encapsulated dichloromethylene diphosphonate, the common bile duct was ligated and divi
56 capped with guanylyl (alpha, beta)-methylene diphosphonate-tubulin subunits.
57 scintigraphy using (99m)Tc-labeled methylene diphosphonate was performed, and early-phase knee scans
58 ethyl(2,5-diiodo-1,4-phenylene)bis(methylene)diphosphonate with 10-hexyl-10H-phenothiazine-3-carbalde

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