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1 Cerebral cortex was snap frozen.
2 or intraperitoneal injection of cocaine and snap frozen.
3 r either transmission electron microscopy or snap frozen.
4 ter lobectomy, tumor and lung specimens were snap frozen.
5 muscles from both hindlimbs were removed and snap-frozen.
6 eft carotids and contralateral controls were snap-frozen.
8 % of gestation, newborn and adult sheep were snap frozen after four 6-mg dexamethasone or placebo inj
10 thy human limbal tissue that was immediately snap-frozen after excision from patients undergoing cata
13 equencing and small RNA profiling on matched snap-frozen and FFPE specimens exposed to different dela
14 a subset of RNAs was found to differ between snap-frozen and FFPE specimens in a consistent manner ac
16 1 day prior to birth) and foetal brains were snap-frozen and genome-wide gene expression data generat
23 control and FSHD deltoid and biceps muscles, snap-frozen at resting length, were cryosectioned, indir
25 titative proteomics and phosphoproteomics on snap-frozen biopsies of hepatocellular carcinoma (HCC) a
30 and age-matched oxygen-treated animals were snap frozen for immunohistochemical analysis with antibo
31 ted LNs were divided into two parts: one was snap-frozen for OSNA and the other underwent rapidly fro
34 mogeneous ex vivo tumor samples, sections of snap frozen human breast cancer murine xenografts were s
35 brain microvessel preparations isolated from snap-frozen human and mouse tissues by laser capture mic
37 t such spot acidification in ex vivo stained snap-frozen human squamous cell carcinoma tissue correla
39 te (3.2%) tubes, centrifuged, and the plasma snap frozen in liquid N2 and stored at -80 degrees C.
40 kidneys (n = 4, each group) were harvested, snap frozen in liquid nitrogen, and analyzed for CaR mes
43 sh specimens of 62 periampullary tumors were snap-frozen in liquid nitrogen and adjacent tissue was f
47 ammation-dependent way, and investigated 299 snap-frozen intestinal biopsies from inflamed and non-in
48 al hepatic gene expression was determined in snap-frozen liver biopsy specimens from 4 groups: (1) pa
49 cific CD8(+) T cells in peripheral blood and snap-frozen liver biopsy specimens of two chimpanzees (P
50 of protein targets in commercially available snap-frozen lung, liver, kidney, and spleen of European
51 similar studies, our data were obtained from snap-frozen needle HCC biopsies (n=52) matched with thei
52 leus-plantaris muscle group was isolated and snap frozen, or underwent 30 min of electrically evoked
54 more efficiently than long amplicons both in snap-frozen (P = 0.0006) and FFPE (P = 0.0152) tissues.
55 A, total RNA, and protein were isolated from snap-frozen pieces of duodenal biopsy samples from CVID
56 tumors, we sequenced RNA transcripts in five snap frozen retinoblastomas which invaded the optic nerv
57 njection, at which time brains were removed, snap frozen, sectioned and quantitatively analyzed for f
58 eated mice bearing HER2 + breast tumors were snap-frozen, sectioned, and imaged using autoradiography
59 rectus EOMs attached and TAs were dissected, snap frozen, serially sectioned, and stained for acetylc
60 oduced results similar to that obtained from snap-frozen specimens, although the protein quantity was
64 reperfusion, LPO was determined by assay of snap frozen tissue for thiobarbituric acid (TBA) concent
66 eeze-fracture electron microscopy of unfixed snap-frozen tissue samples confirmed this supramolecular
70 anomas, using early-passage cell strains and snap-frozen tissues (n = 18 and n = 24, respectively) co
71 with low protein synthesis rates, including snap-frozen tissues and immune cells from an individual'