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Genetic risk of extranodal natural killer T-cell lymphoma: a genome-wide association study in multiple populations
Journal article
Lin G.-W., Xu C., Chen K., Huang H.-Q., Chen J., Song B., Chan J.K.C., Li W., Liu W., Shih L.-Y., Chuang W.-Y., Kim W.S., Tan W., Peng R.-J., Laurensia Y., Cheah D.M.Z., Huang D., Cheng C.L., Su Y.-J., Tan S.-Y., Ng S.-B., Tang T.P.L., Han K., Wang V.Y.-F., Jia W.-H., Pei Z., Li Y.-J., Gao S., Shi Y., Hu Z., Zhang F., Zhang B., Zeng Y.-X., Shen H., He L., Ong C.K., Lim S.T., Chanock S., Kwong Y.-L., Lin D., Rothman N., Khor C.C., Lan Q., Bei J.-X., Au W.-Y., Chiu B., Fan L., Li Z., LAM T.H., Liang R., Yeh S.-P., Xu J., Ip D.K.M., Li G., Xu G., Wang X., Bai O., Cai Q.-Q., Xia Y., Chen J.-R., Luo C.-L., Xiong X.-Y., Zeng Y., Wei P.-P., Liu C.-J., Liu Y.-X., Cao Y.-L., He S., Liu Y., Ha J.C.H., Khoo L.P., Kee R.X., Tan J., Liu Y., Zhang F., Feng Y., Rao H., Chng W.J., Chan J.Y.S., Somasundaram N.D., Tao M., Ras M.F.B.H., Yeoh K.-W., Goh Y.T., Ong S.Y., Grigoropoulos N.F., Wong E.K.Y., Pang J.W.L., Lim J.Q., Chia B.K.H., Kim S.J., Yoon S.E., Choi S., Kuo C.-Y., Chen T.-Y., Su Y.-C., Huang W.-T., Lee M.-Y., Yao W., Ngan K.-C., Liu H., Lee H., Yip S.-F., Liu J., Li J., Rabkin C.S., Berndt S., Bassig B., Hu W., Zhao M., Li Y., Zhai Q., Shao Z., Qiu L., Wang J., Xu F.-P., Chen L., Hou Y., Xu S., Huang Z., Xie M., Li M., Zhong S., Zhang Y., Gu D., Wang X., Foo J.N., Li Z., Dai J., Sun L., Wang Z., Liu H., Zhou H., Sun Y., Koh W.-P., Heng C.-K., Hong C.S., Ahn J., Park K.H., Tin A., Gu J., Xia X., Li B., Yu X., International NKTCL Working Group. Genetic risk of extranodal natural killer T-cell lymphoma: a genome-wide association study in multiple populations[J]. The Lancet Oncology, 2020, 21(2), 306-316.
Authors:
Lin G.-W.
;
Xu C.
;
Chen K.
;
Huang H.-Q.
;
Chen J.
; et al.
Favorite
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TC[WOS]:
49
TC[Scopus]:
52
IF:
41.6
/
42.2
|
Submit date:2022/06/15
Ultrahigh Responsivity-Bandwidth Product in a Compact InP Nanopillar Phototransistor Directly Grown on Silicon
Journal article
Ko W.S., Bhattacharya I., Tran T.-T.D., Ng K.W., Adair Gerke S., Chang-Hasnain C.. Ultrahigh Responsivity-Bandwidth Product in a Compact InP Nanopillar Phototransistor Directly Grown on Silicon[J]. Scientific Reports, 2016, 6.
Authors:
Ko W.S.
;
Bhattacharya I.
;
Tran T.-T.D.
;
Ng K.W.
;
Adair Gerke S.
; et al.
Favorite
|
TC[WOS]:
28
TC[Scopus]:
24
|
Submit date:2019/04/08
Composition homogeneity in InGaAs/GaAs core-shell nanopillars monolithically grown on silicon
Journal article
Ng K.W., Ko W.S., Chen R., Lu F., Tran T.-T.D., Li K., Chang-Hasnain C.J.. Composition homogeneity in InGaAs/GaAs core-shell nanopillars monolithically grown on silicon[J]. ACS Applied Materials and Interfaces, 2014, 6(19), 16706-16711.
Authors:
Ng K.W.
;
Ko W.S.
;
Chen R.
;
Lu F.
;
Tran T.-T.D.
; et al.
Favorite
|
TC[WOS]:
9
TC[Scopus]:
9
|
Submit date:2019/04/08
Alloy Ordering
Core-shell
Iii-v Nanopillar
Laser
Nanowire
Three-dimensional whispering gallery modes in InGaAs nanoneedle lasers on silicon
Journal article
Tran T.-T.D., Chen R., Ng K.W., Ko W.S., Lu F., Chang-Hasnain C.J.. Three-dimensional whispering gallery modes in InGaAs nanoneedle lasers on silicon[J]. Applied Physics Letters, 2014, 105(11).
Authors:
Tran T.-T.D.
;
Chen R.
;
Ng K.W.
;
Ko W.S.
;
Lu F.
; et al.
Favorite
|
TC[WOS]:
10
TC[Scopus]:
9
|
Submit date:2019/04/08
Metastable growth of pure wurtzite InGaAs microstructures
Journal article
Ng K.W., Ko W.S., Lu F., Chang-Hasnain C.J.. Metastable growth of pure wurtzite InGaAs microstructures[J]. Nano Letters, 2014, 14(8), 4757-4762.
Authors:
Ng K.W.
;
Ko W.S.
;
Lu F.
;
Chang-Hasnain C.J.
Favorite
|
TC[WOS]:
14
TC[Scopus]:
16
|
Submit date:2019/04/08
Core-shell
Iii-v
Nanowire
Phase Purity
Wurtzite
Nanophotonic integrated circuits from nanoresonators grown on silicon
Journal article
Chen R., Ng K.W., Ko W.S., Parekh D., Lu F., Tran T.-T.D., Li K., Chang-Hasnain C.. Nanophotonic integrated circuits from nanoresonators grown on silicon[J]. Nature Communications, 2014, 5.
Authors:
Chen R.
;
Ng K.W.
;
Ko W.S.
;
Parekh D.
;
Lu F.
; et al.
Favorite
|
TC[WOS]:
51
TC[Scopus]:
68
|
Submit date:2019/04/08
The effect of inner surface roughness and heating on friction factor in horizontal mini-tubes
Conference paper
Tam L.M., Tam H.K., Ghajar A.J., Ng W.S., Wu C.K.. The effect of inner surface roughness and heating on friction factor in horizontal mini-tubes[C], 2014.
Authors:
Tam L.M.
;
Tam H.K.
;
Ghajar A.J.
;
Ng W.S.
;
Wu C.K.
Favorite
|
|
Submit date:2019/02/13
Convection
Friction factor
Inner surface roughness
Mini-tube
Nano/Micro scale measurement and simulation
InP nanowire avalanche photodiode and bipolar junction phototransistor integrated on silicon substrate
Conference paper
Ko W.S., Bhattacharya I., Tran T., Ng K.W., Chang-Hasnain C.. InP nanowire avalanche photodiode and bipolar junction phototransistor integrated on silicon substrate[C], 2014.
Authors:
Ko W.S.
;
Bhattacharya I.
;
Tran T.
;
Ng K.W.
;
Chang-Hasnain C.
Favorite
|
TC[WOS]:
2
TC[Scopus]:
2
|
Submit date:2019/04/08
Valence band splitting in wurtzite InGaAs nanoneedles studied by photoluminescence excitation spectroscopy
Journal article
Wang X., Zardo I., Spirkoska D., Yazji S., Ng K.W., Ko W.S., Chang-Hasnain C.J., Finley J.J., Abstreiter G.. Valence band splitting in wurtzite InGaAs nanoneedles studied by photoluminescence excitation spectroscopy[J]. ACS Nano, 2014, 8(11), 11440-11446.
Authors:
Wang X.
;
Zardo I.
;
Spirkoska D.
;
Yazji S.
;
Ng K.W.
; et al.
Favorite
|
TC[WOS]:
9
TC[Scopus]:
9
|
Submit date:2019/04/08
Band Structure
Ingaas Nanoneedle
Photoluminescence Excitation Spectroscopy
Raman Spectroscopy
Wurtzite
Single crystalline InGaAs nanopillar grown on polysilicon with dimensions beyond the substrate grain size limit
Journal article
Ng K.W., Tran T.-T.D., Ko W.S., Chen R., Lu F., Chang-Hasnain C.J.. Single crystalline InGaAs nanopillar grown on polysilicon with dimensions beyond the substrate grain size limit[J]. Nano Letters, 2013, 13(12), 5931-5937.
Authors:
Ng K.W.
;
Tran T.-T.D.
;
Ko W.S.
;
Chen R.
;
Lu F.
; et al.
Favorite
|
TC[WOS]:
18
TC[Scopus]:
18
|
Submit date:2019/04/08
Gaas Nanopillar
Gaas Nanowire
Nanolaser
Poly-si
Silicon