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1 ed with the blue dye and 65 (94.2%) with the technetium.
2 exes and their higher homologues rhenium and technetium.
3 ed the first human study of [99mTc]TRODAT-1, technetium, 2-[[2-[[[3-(4-chlorophenyl)-8-methyl-8-azabi
4 ration of 740 MBq (20 mCi) [99mTc]-TRODAT-1 (technetium, [2-[[2-[[[3-(4-chlorophenyl)-8-methyl-8-azab
6 ntravenous injection of 30 mCi (1110 MBq) of technetium 99 ((99m)Tc)-sestamibi and were imaged in cra
7 ess echocardiography (DASE) and dipyridamole Technetium 99-m (Tc-99m) sestamibi single photon emissio
14 f radionuclides with long half-lives such as technetium-99 ((99)Tc), uranium-238 ((238)U), and iodine
16 to generate solid waste forms (e.g., glass), technetium-99 (Tc) is of concern because of its volatili
17 A preconcentrating minicolumn sensor for technetium-99 detection in water consists of a packed be
19 (n=242) were compared with subsequent SPECT Technetium-99 m Sestamibi, measuring the percentage of t
21 ater at contaminated nuclear facilities with technetium-99, one of the most mobile radionuclides enco
23 e, microsphere blood flow (MBF) testing, and technetium 99m ((99m)Tc) 2 methoxyisobutylisonitrile (MI
24 determine if commonly administered doses of technetium 99m ((99m)Tc) mertiatide (MAG3) in the range
25 ), which promotes in vivo cellular uptake of technetium 99m ((99m)Tc) or iodine 124 ((124)I), as a re
26 sm who underwent preoperative imaging with a technetium 99m ((99m)Tc) sestamibi and (99m)TcO4- protoc
28 on emission computed tomography (SPECT) with technetium 99m ((99m)Tc) tropane dopamine transporter (T
29 maged owing to internally bound, or trapped, technetium 99m ((99m)Tc)-labeled hSSTr2-binding peptide
30 between the lung elimination rate of inhaled technetium 99m ((99m)Tc)-sestamibi and immunohistochemic
31 iated HIV surrogate) and 18.5-MBq (500-muCi) technetium 99m ((99m)Tc)-sulfur colloid (HIV-sized 100-n
32 e kidney MR GFR indices correlated well with technetium 99m (99mTc) diethylenetriaminepentaacetic aci
35 7-labeled egg and intravenously administered technetium 99m diisopropyl-imino-diacetic acid were imag
38 After intravenous application of 75 MBq of technetium 99m pertechnetate, freehand three-dimensional
40 inologist (S.J.M.), who decided to perform a technetium 99m sestamibi ((99m)Tc MIBI) parathyroid scan
42 cy compared with that of ultrasonography and technetium 99m sestamibi scanning may be sufficient to a
43 r injection with 25-30 mCi (925-1110 MBq) of technetium 99m sestamibi, patients were imaged with a hi
45 ratively, and 1 year later, ultrasonography, technetium 99m-dimercaptosuccinic acid (DMSA) scintigrap
46 structured psychiatric interview and resting technetium 99m-hexamethyl-propyleneamine oxime single ph
47 ctice CD16 CliniMACS isolation, labeled with technetium 99m-hexamethylpropyleneamine oxime, and then
48 uthors' goal was to evaluate the accuracy of Technetium 99m-HMPAO-labeled leukocyte imaging for scree
49 ommended dose of 740-1100 MBq (20-30 mCi) of technetium 99m-sestamibi is estimated to involve an LAR
52 ients with suspected CAD who underwent CCTA, technetium 99m/tetrofosmin-labeled SPECT, and [15O]H2O P
54 was to determine the extent to which inhaled technetium-99m ((99m)Tc)-labeled carbon nanoparticles (T
55 on, for targeting human CRC xenografts using technetium-99m ((99m)Tc)-labeled TCP-1 and fluorescent c
56 r myocardial perfusion imaging of mice using technetium-99m ((99m)Tc)-sestamibi and demonstrate the f
57 imaging and to determine whether dobutamine technetium-99m ((99m)Tc)-sestamibi single-photon emissio
58 labeled with indium-111 ((111)In)-oxine and technetium-99m ((99m)Tc)-Ultratag or (99m)Tc-Ceretec.
59 affinity for apoptotic cells in vitro, with technetium-99m (99mTc) as a radionuclide imaging agent t
60 3) chelator has been shown to stably complex technetium-99m (99mTc) for nuclear imaging and radiorhen
61 ulty, we have studied a radiopharmaceutical, technetium-99m (99mTc) Infecton, which is based on the a
63 ke of thallium-201 (201Tl) at rest with rest technetium-99m (99mTc) sestamibi uptake in the same pati
66 LV) function and infarct size as assessed by technetium-99m (Tc-99m) sestamibi perfusion tomographic
67 e addition of electrocardiographically gated technetium-99m (Tc-99m) sestamibi single-photon emission
70 clinical use and cost-analysis of acute rest technetium-99m (Tc-99m) tetrofosmin single-photon emissi
71 photon emission computed tomographic (SPECT) technetium-99m (Tc-99m) tracer imaging in patients with
73 Our objective is to prove that injection of technetium-99m (Tc99) sulfur colloid in a subareolar man
75 tent SSTR-binding peptides were labeled with technetium-99m and assessed in an in vivo study with tum
76 hese defects were compared with risk area on technetium-99m autoradiography and infarct size on tissu
77 r short-axis slices of equal thickness using technetium-99m autoradiography and tissue staining, resp
80 ulted in the formation of '3+1' mixed-ligand technetium-99m complexes [TcO(SN(R)S)(SNX(2))] in high r
83 territory caused significant acceleration of technetium-99m diethylenetriamine pentaacetic acid (Tc-9
84 ade it the radiotracer of choice compared to technetium-99m diethylenetriamine pentaacetic acid (Tc-9
86 aphy scans for MIBG-nonavid disease, replace technetium-99m diphosphonate bone scintigraphy for osteo
87 xenon-133 in 261 patients and with injected technetium-99m hexamethyl-propyleneamine oxime (HMPAO) i
91 he 41 mice, 6, 6, and 5 received intravenous technetium-99m labeled CRIP for micro-single-photon emis
92 stress and time control were estimated using technetium-99m labelled autologous red blood cells and g
94 The better quality of images obtained with technetium-99m mercaptoacetyltriglycine (Tc-99m MAG3) ha
96 m, collected via apheresis, and labeled with technetium-99m radioisotope for single-photon emission c
97 mine transporter levels were measured with a technetium-99m radiolabeled analog of cocaine, TRODAT-1,
98 gh specificity of SPECT/CT examination using technetium-99m radiolabeled red blood cells (Tc-99m-RBC)
101 rfusion imaging with thallium-201 (n=173) or technetium-99m sestamibi (n=72) and either dipyridamole
102 The technique involved injecting 20 mCi technetium-99m sestamibi 2 hours before surgery and perf
103 s suggest that early perfusion imaging using technetium-99m sestamibi enables reliable risk stratific
104 t ventricular (LV) function from post-stress technetium-99m sestamibi gated SPECT performed >15 min a
105 ts who underwent rest thallium-201/adenosine technetium-99m sestamibi MPS, 254 (4.1%) were lost to fo
106 wall thickening from three-dimensional gated technetium-99m sestamibi myocardial perfusion single-pho
107 assess the diagnostic efficacy of adenosine technetium-99m sestamibi myocardial perfusion single-pho
109 easurement of infarct size by serum markers, technetium-99m sestamibi single-photon emission computed
110 cardiac magnetic resonance (CMR) imaging or technetium-99m sestamibi single-photon emission computed
111 cise variables of rest thallium-201/exercise technetium-99m sestamibi single-photon emission computed
114 the ability of early perfusion imaging using technetium-99m sestamibi to predict adverse cardiac outc
118 erfusion images using either thallium-201 or technetium-99m sestamibi, and no previous coronary revas
120 and after 300 mL of Ensure was measured with technetium-99m single-photon emission computed tomograph
121 review of studies where either Rb-82 PET or technetium-99m SPECT with both attenuation correction an
122 technique involved the injection of 4 ml of technetium-99m sulfur colloid (1 mCi [37 MBq]) into the
128 methodology for determining the transport of technetium-99m, a gamma-emitting metastable isomer of (9
129 nanobodies were generated, radiolabeled with technetium-99m, and screened in vitro on mouse and human
130 autologous PBMCs were isolated, labeled with technetium-99m, and visualized 3, 4.5, and 6 h post-infu
131 inoembryonic antigen (CEA) Fab' labeled with technetium-99m, in the presurgical evaluation of patient
133 od cells (RBCs), labeled with chromium-51 or technetium-99m, were separately coated to equal levels w
135 mor/nontumor ratios indicate that such small technetium-99m-based molecular probes can be developed a
137 synthesized for incorporating the well-known technetium-99m-binding hydrazinonicotinamide ligand into
154 maging of metastatic melanoma has shown that technetium-99m-labeled AADT-(CH2)2-NEt2 (99mTc-1) has th
155 the deposition and clearance of an ultrafine technetium-99m-labeled aerosol in 10 patients with chron
157 tivity in experimental atherosclerosis using technetium-99m-labeled broad matrix metalloproteinase in
158 ocyte accumulation was assessed by uptake of technetium-99m-labeled chemotactic peptide (fMLFK) and c
159 the results of experiments with intravenous technetium-99m-labeled deimmunized antifibrin Fab' fragm
161 urinary tract infection; renal scanning with technetium-99m-labeled dimercaptosuccinic acid has also
162 hrombi (DVTs) were formed in five dogs, then technetium-99m-labeled Fab' ( approximately 400 mg, appr
164 computed tomographic imaging, using RP805, a technetium-99m-labeled MMP-specific tracer, followed by
165 hma (FEV1, 76.8 +/- 11.4% predicted) inhaled technetium-99m-labeled monodisperse albuterol aerosols (
184 gen (CEA) Fab antibody fragment labeled with technetium-99m-pertechnetate (99mTc), was injected intra
190 size with cardiac marker release patterns or technetium-99m-sestamibi single-photon emission computed
195 -)-N2,N2',S2,S2'] oxo-[1R-(exo-exo)]- [99mTc]technetium,[99mTc]TRODAT-1 (13), displayed the highest i
196 Andersen cascade validation data showed that technetium and albuterol were coassociated on each impac
198 ed from the actinides via valence control of technetium (as Tc(VII)) in a ferric hydroxide coprecipit
201 ed to include not only thallium-201 but also technetium-based imaging agents such as sestamibi and te
204 nonhuman primates of second-generation (99m)technetium-based tropane ligands that bind potently and
205 psilon-(Hynic-Boc)-Lys is a highly versatile technetium-binding amino acid for incorporation into pep
209 VP (AVP(an)) have been synthesized using the technetium complexes with tetradentate tripodal chelator
210 ioactive metal-based complexes of copper and technetium designed as diagnostic imaging agents to dete
216 l was radiolabeled with 500 micro Ci of (99m)Technetium-diethylene triaminepentaacetic acid, and 10 m
217 predicted renal parenchymal disease on (99m)Technetium-dimercaptosuccinic acid ((99m)Tc-DMSA) scinti
222 estigate NI, assessed by extravasation of 99-Technetium-gluceptate (99Tc-G), as well as the role of m
224 The PMCD method was evaluated with data from technetium human albumin macroaggregates ((99m)Tc-MAA) e
225 in in vitro and in vivo, two novel phosphine technetium(III) complexes were designed and characterize
227 ddition of myocardial imaging agents such as technetium improves the sensitivity and specificity but
234 s study suggest that subareolar injection of technetium is as accurate as peritumoral injection of bl
239 gated hyperbilirubinemia, failure to excrete technetium-labeled mebrofenin from the liver into the sm
241 n the past decade such as the development of technetium-labeled perfusion tracers and portable compac
242 ing techniques as well as the development of technetium-labeled perfusion tracers now permit combined
243 ries can be detected on SPECT images using a technetium-labeled radiotracer that targets apoptosis.
252 ite similar baseline PaO(2), brain uptake of technetium macroaggregated albumin ((99m)TcMAA), or meas
254 d and had defects in emptying, based on (99m)technetium-mebrofenin scintigraphy or post-prandial vari
256 lear and important implications for limiting technetium migration under conditions where magnetite is
258 developed for simultaneous determination of technetium, neptunium, plutonium, and uranium in large v
264 een investigated at high pH to determine the technetium retention mechanism(s) on formation and oxida
265 (D) chelates capable of binding M(CO)3+ (M = technetium, rhenium) was conjugated to lisinopril by acy
268 ardiography and myocardial scintigraphy with technetium sestamibi (MIBI) and meta-[(123)I]iodobenzylg
269 ic solution was developed to convert reduced technetium species to pertechnetate in samples with high
272 gnostic ability than either treadmill-ECG or technetium-stress for the detection of obstructive angio
273 atients underwent technetium stress testing (technetium-stress), treadmill-ECG, and EBCT coronary sca
274 intraoperative radiolymphoscintigraphy using technetium sulfur colloid and a hand-held gamma-detectin
277 here is disagreement over the reliability of technetium Tc 99m (99mTc)-labeled erythrocyte scintigrap
279 with thallous chloride TI 201 (thallium) or technetium Tc 99m sestamibi for detection and/or evaluat
287 lized through site-specific rhenium (Re) and technetium (Tc) metal coordination, were structurally ch
289 IIa platelet inhibitor DMP-444, labeled with technetium (Tc)-99 m, to identify platelet-rich thrombus
290 liminary reports have demonstrated that (99m)technetium (Tc)-labeled cyclic [Cys(3,4,10), D-Phe7]alph
291 travenous infusion of the radioactive tracer Technetium- Tc 99 m Hexamethylpropyleneamine Oxime (Tc-9
292 tomography, magnetic resonance imaging, and technetium thallium scans were 48%/21%, 52%/16%, 48%/14%
294 s, 3d (IC(50) = 9 nM), was radiolabeled with technetium tricarbonyl ({(99m)Tc(CO)(3)}(+)) to afford t
296 Bis(N-ethoxy,N-ethyldithiocarbamato)nitrido technetium (V) ((99m)Tc) ((99m)TcN-NOET) is a myocardial
298 ptoethyl)amino)acetyl)-2-aminoethanethiolato]technetium(V) oxide), a DAT imaging agent that has emerg
300 tical procedure involves preconcentration of technetium with coprecipitation, online separation using
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