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1 adenocarcinoma, squamous-cell carcinoma, and large-cell carcinoma.
2 olar carcinoma, squamous cell carcinoma, and large-cell carcinoma.
3  in approximately 40% of adenocarcinomas and large cell carcinomas.
4 E cells including squamous, adeno, small and large cell carcinomas.
5  squamous cell carcinomas (1.6%), five of 39 large-cell carcinomas (12.8%), and two of 20 adenosquamo
6 lified in 70% of squamous carcinomas, 38% of large cell carcinomas, 19% of adenocarcinomas, and 67% o
7 , 21 squamous cell carcinomas (42%) and four large cell carcinomas (8%).
8  histological spectrum (adeno-, squamous and large-cell carcinoma) and more frequent metastasis compa
9 ied in 88% of squamous carcinomas, in 42% of large cell carcinomas, and in 11% of adenocarcinomas of
10 mately 50% of human lung adenocarcinomas and large cell carcinomas, and Kras2 mutations were detected
11 squamous cell carcinomas, 38.5% (5 of 13) of large-cell carcinomas, and 60% (3 of 5) of small-cell lu
12 adenocarcinoma, squamous cell carcinoma, and large cell carcinoma) caused up-regulation of CCR2/CCL2
13 rcinoma, squamous cell, and undifferentiated large cell carcinomas comparing the highest with the low
14 stingly, all of the lung adenocarcinomas and large cell carcinomas containing a Kras2 mutation exhibi
15 ge cell carcinoma (H460) and drug resistance large cell carcinoma (COR-L23/5010) observing a concomit
16 d clustering of lung development data showed large-cell carcinoma gene orthologues were in a cluster
17 alveolar epithelial cancer cell line (A549); large cell carcinoma (H460) and drug resistance large ce
18  to the group consisting of four ACs and six large-cell carcinomas (LCCs).
19 ) and irregular margin (n = 3, 60%); and for large cell carcinoma (n = 1), solid attenuation and spic
20 d a greater likelihood of having squamous or large cell carcinoma (odds ratio = 5.93).
21 SCLC, and was limited to adenocarcinomas and large-cell carcinomas of the lung.
22 quamous cell carcinomas (SQCs) (P = 0.03) or large cell carcinomas (P = 0.002) [standardized uptake v
23 g adenocarcinoma, but it was not detected in large cell carcinoma, small cell carcinoma, or atypical
24 H of chromosome arm 12p was more frequent in large cell carcinoma than squamous cell carcinoma, indic
25 2%] tumors were adenocarcinoma, one (5%) was large cell carcinoma, two (10%) were bronchoalveolar car
26  AUC for patients who had either squamous or large cell carcinomas was significantly lower than that
27 hen the 17 human lung ACs and six human lung large cell carcinomas were examined, it was found that 1
28 om the remaining four human lung ACs and six large cell carcinomas, which exhibited a different patte

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