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Items: 34

1.

A comparison of minimal residual disease detection in autografts among ASO-qPCR, droplet digital PCR, and next-generation sequencing in patients with multiple myeloma who underwent autologous stem cell transplantation.

Takamatsu H, Wee RK, Zaimoku Y, Murata R, Zheng J, Moorhead M, Carlton VEH, Kong KA, Takezako N, Ito S, Miyamoto T, Yokoyama K, Matsue K, Sato T, Kurokawa T, Yagi H, Terasaki Y, Ohata K, Matsumoto M, Yoshida T, Faham M, Nakao S.

Br J Haematol. 2017 Dec 22. doi: 10.1111/bjh.15002. [Epub ahead of print] No abstract available.

PMID:
29270982
2.

Prognostic value of sequencing-based minimal residual disease detection in patients with multiple myeloma who underwent autologous stem-cell transplantation.

Takamatsu H, Takezako N, Zheng J, Moorhead M, Carlton VEH, Kong KA, Murata R, Ito S, Miyamoto T, Yokoyama K, Matsue K, Sato T, Kurokawa T, Yagi H, Terasaki Y, Ohata K, Matsumoto M, Yoshida T, Faham M, Nakao S.

Ann Oncol. 2017 Oct 1;28(10):2503-2510. doi: 10.1093/annonc/mdx340.

PMID:
28945825
3.

The prognostic value of the depth of response in multiple myeloma depends on the time of assessment, risk status and molecular subtype.

Schinke C, Hoering A, Wang H, Carlton V, Thanandrarajan S, Deshpande S, Patel P, Molnar G, Susanibar S, Mohan M, Mathur P, Radhakrishnan M, Hoque S, Jo Kamimoto J, Grazziutti M, van Rhee F, Zangari M, Insuasti-Beltran G, Alapat D, Post G, Yaccoby S, Epstein J, Rasche L, Johnson S, Moorhead M, Willis T, Barlogie B, Walker B, Weinhold N, Davies FE, Morgan GJ.

Haematologica. 2017 Aug;102(8):e313-e316. doi: 10.3324/haematol.2017.165217. Epub 2017 May 18. No abstract available.

4.

Antigen presentation profiling reveals recognition of lymphoma immunoglobulin neoantigens.

Khodadoust MS, Olsson N, Wagar LE, Haabeth OA, Chen B, Swaminathan K, Rawson K, Liu CL, Steiner D, Lund P, Rao S, Zhang L, Marceau C, Stehr H, Newman AM, Czerwinski DK, Carlton VE, Moorhead M, Faham M, Kohrt HE, Carette J, Green MR, Davis MM, Levy R, Elias JE, Alizadeh AA.

Nature. 2017 Mar 30;543(7647):723-727. doi: 10.1038/nature21433. Epub 2017 Mar 22.

5.

Discovery of T Cell Receptor β Motifs Specific to HLA-B27-Positive Ankylosing Spondylitis by Deep Repertoire Sequence Analysis.

Faham M, Carlton V, Moorhead M, Zheng J, Klinger M, Pepin F, Asbury T, Vignali M, Emerson RO, Robins HS, Ireland J, Baechler-Gillespie E, Inman RD.

Arthritis Rheumatol. 2017 Apr;69(4):774-784. doi: 10.1002/art.40028.

PMID:
28002888
6.

Multiplex Identification of Antigen-Specific T Cell Receptors Using a Combination of Immune Assays and Immune Receptor Sequencing.

Klinger M, Pepin F, Wilkins J, Asbury T, Wittkop T, Zheng J, Moorhead M, Faham M.

PLoS One. 2015 Oct 28;10(10):e0141561. doi: 10.1371/journal.pone.0141561. eCollection 2015.

7.

Circulating tumour DNA and CT monitoring in patients with untreated diffuse large B-cell lymphoma: a correlative biomarker study.

Roschewski M, Dunleavy K, Pittaluga S, Moorhead M, Pepin F, Kong K, Shovlin M, Jaffe ES, Staudt LM, Lai C, Steinberg SM, Chen CC, Zheng J, Willis TD, Faham M, Wilson WH.

Lancet Oncol. 2015 May;16(5):541-9. doi: 10.1016/S1470-2045(15)70106-3. Epub 2015 Apr 1. Erratum in: Lancet Oncol. 2015 May;16(5):e199.

8.

Immunoglobulin and T cell receptor gene high-throughput sequencing quantifies minimal residual disease in acute lymphoblastic leukemia and predicts post-transplantation relapse and survival.

Logan AC, Vashi N, Faham M, Carlton V, Kong K, Buño I, Zheng J, Moorhead M, Klinger M, Zhang B, Waqar A, Zehnder JL, Miklos DB.

Biol Blood Marrow Transplant. 2014 Sep;20(9):1307-13. doi: 10.1016/j.bbmt.2014.04.018. Epub 2014 Apr 24.

9.

Prognostic value of deep sequencing method for minimal residual disease detection in multiple myeloma.

Martinez-Lopez J, Lahuerta JJ, Pepin F, González M, Barrio S, Ayala R, Puig N, Montalban MA, Paiva B, Weng L, Jiménez C, Sopena M, Moorhead M, Cedena T, Rapado I, Mateos MV, Rosiñol L, Oriol A, Blanchard MJ, Martínez R, Bladé J, San Miguel J, Faham M, García-Sanz R.

Blood. 2014 May 15;123(20):3073-9. doi: 10.1182/blood-2014-01-550020. Epub 2014 Mar 19.

10.

Action potential energetics at the organismal level reveal a trade-off in efficiency at high firing rates.

Lewis JE, Gilmour KM, Moorhead MJ, Perry SF, Markham MR.

J Neurosci. 2014 Jan 1;34(1):197-201. doi: 10.1523/JNEUROSCI.3180-13.2014.

11.

Combining next-generation sequencing and immune assays: a novel method for identification of antigen-specific T cells.

Klinger M, Kong K, Moorhead M, Weng L, Zheng J, Faham M.

PLoS One. 2013 Sep 19;8(9):e74231. doi: 10.1371/journal.pone.0074231. eCollection 2013.

12.

Minimal residual disease quantification using consensus primers and high-throughput IGH sequencing predicts post-transplant relapse in chronic lymphocytic leukemia.

Logan AC, Zhang B, Narasimhan B, Carlton V, Zheng J, Moorhead M, Krampf MR, Jones CD, Waqar AN, Faham M, Zehnder JL, Miklos DB.

Leukemia. 2013 Aug;27(8):1659-65. doi: 10.1038/leu.2013.52. Epub 2013 Feb 19.

13.

Deep-sequencing approach for minimal residual disease detection in acute lymphoblastic leukemia.

Faham M, Zheng J, Moorhead M, Carlton VE, Stow P, Coustan-Smith E, Pui CH, Campana D.

Blood. 2012 Dec 20;120(26):5173-80. doi: 10.1182/blood-2012-07-444042. Epub 2012 Oct 16.

14.

Diverse somatic mutation patterns and pathway alterations in human cancers.

Kan Z, Jaiswal BS, Stinson J, Janakiraman V, Bhatt D, Stern HM, Yue P, Haverty PM, Bourgon R, Zheng J, Moorhead M, Chaudhuri S, Tomsho LP, Peters BA, Pujara K, Cordes S, Davis DP, Carlton VE, Yuan W, Li L, Wang W, Eigenbrot C, Kaminker JS, Eberhard DA, Waring P, Schuster SC, Modrusan Z, Zhang Z, Stokoe D, de Sauvage FJ, Faham M, Seshagiri S.

Nature. 2010 Aug 12;466(7308):869-73. doi: 10.1038/nature09208. Epub 2010 Jul 28.

PMID:
20668451
15.

High-throughput method for analyzing methylation of CpGs in targeted genomic regions.

Nautiyal S, Carlton VE, Lu Y, Ireland JS, Flaucher D, Moorhead M, Gray JW, Spellman P, Mindrinos M, Berg P, Faham M.

Proc Natl Acad Sci U S A. 2010 Jul 13;107(28):12587-92. doi: 10.1073/pnas.1005173107. Epub 2010 Jun 23.

16.

Prediction of epigenetically regulated genes in breast cancer cell lines.

Loss LA, Sadanandam A, Durinck S, Nautiyal S, Flaucher D, Carlton VE, Moorhead M, Lu Y, Gray JW, Faham M, Spellman P, Parvin B.

BMC Bioinformatics. 2010 Jun 4;11:305. doi: 10.1186/1471-2105-11-305.

17.

High-throughput, high-accuracy array-based resequencing.

Zheng J, Moorhead M, Weng L, Siddiqui F, Carlton VE, Ireland JS, Lee L, Peterson J, Wilkins J, Lin S, Kan Z, Seshagiri S, Davis RW, Faham M.

Proc Natl Acad Sci U S A. 2009 Apr 21;106(16):6712-7. doi: 10.1073/pnas.0901902106. Epub 2009 Apr 2.

18.

High quality copy number and genotype data from FFPE samples using Molecular Inversion Probe (MIP) microarrays.

Wang Y, Carlton VE, Karlin-Neumann G, Sapolsky R, Zhang L, Moorhead M, Wang ZC, Richardson AL, Warren R, Walther A, Bondy M, Sahin A, Krahe R, Tuna M, Thompson PA, Spellman PT, Gray JW, Mills GB, Faham M.

BMC Med Genomics. 2009 Feb 19;2:8. doi: 10.1186/1755-8794-2-8.

19.

Rapid identification of somatic mutations in colorectal and breast cancer tissues using mismatch repair detection (MRD).

Bentivegna S, Zheng J, Namsaraev E, Carlton VE, Pavlicek A, Moorhead M, Siddiqui F, Wang Z, Lee L, Ireland JS, Suyenaga K, Willis TD, Faham M, Seymour AB.

Hum Mutat. 2008 Mar;29(3):441-50. doi: 10.1002/humu.20672.

PMID:
18186519
20.

Effects of flexible fiberoptic endoscopy on pharyngeal swallow physiology.

Suiter DM, Moorhead MK.

Otolaryngol Head Neck Surg. 2007 Dec;137(6):956-8.

PMID:
18036429
21.

Analysis of molecular inversion probe performance for allele copy number determination.

Wang Y, Moorhead M, Karlin-Neumann G, Wang NJ, Ireland J, Lin S, Chen C, Heiser LM, Chin K, Esserman L, Gray JW, Spellman PT, Faham M.

Genome Biol. 2007;8(11):R246.

22.

Large-scale characterization of public database SNPs causing non-synonymous changes in three ethnic groups.

Ireland J, Carlton VE, Falkowski M, Moorhead M, Tran K, Useche F, Hardenbol P, Erbilgin A, Fitzgerald R, Willis TD, Faham M.

Hum Genet. 2006 Mar;119(1-2):75-83. Epub 2005 Dec 14.

PMID:
16391945
23.

Allele quantification using molecular inversion probes (MIP).

Wang Y, Moorhead M, Karlin-Neumann G, Falkowski M, Chen C, Siddiqui F, Davis RW, Willis TD, Faham M.

Nucleic Acids Res. 2005 Nov 28;33(21):e183.

24.

Optimal genotype determination in highly multiplexed SNP data.

Moorhead M, Hardenbol P, Siddiqui F, Falkowski M, Bruckner C, Ireland J, Jones HB, Jain M, Willis TD, Faham M.

Eur J Hum Genet. 2006 Feb;14(2):207-15. Erratum in: Eur J Hum Genet. 2006 Aug;14(8):976.

25.

Population structure, differential bias and genomic control in a large-scale, case-control association study.

Clayton DG, Walker NM, Smyth DJ, Pask R, Cooper JD, Maier LM, Smink LJ, Lam AC, Ovington NR, Stevens HE, Nutland S, Howson JM, Faham M, Moorhead M, Jones HB, Falkowski M, Hardenbol P, Willis TD, Todd JA.

Nat Genet. 2005 Nov;37(11):1243-6. Epub 2005 Oct 9.

PMID:
16228001
26.

Multiplexed variation scanning for 1,000 amplicons in hundreds of patients using mismatch repair detection (MRD) on tag arrays.

Faham M, Zheng J, Moorhead M, Fakhrai-Rad H, Namsaraev E, Wong K, Wang Z, Chow SG, Lee L, Suyenaga K, Reichert J, Boudreau A, Eberle J, Bruckner C, Jain M, Karlin-Neumann G, Jones HB, Willis TD, Buxbaum JD, Davis RW.

Proc Natl Acad Sci U S A. 2005 Oct 11;102(41):14717-22. Epub 2005 Oct 3.

27.

Highly multiplexed molecular inversion probe genotyping: over 10,000 targeted SNPs genotyped in a single tube assay.

Hardenbol P, Yu F, Belmont J, Mackenzie J, Bruckner C, Brundage T, Boudreau A, Chow S, Eberle J, Erbilgin A, Falkowski M, Fitzgerald R, Ghose S, Iartchouk O, Jain M, Karlin-Neumann G, Lu X, Miao X, Moore B, Moorhead M, Namsaraev E, Pasternak S, Prakash E, Tran K, Wang Z, Jones HB, Davis RW, Willis TD, Gibbs RA.

Genome Res. 2005 Feb;15(2):269-75.

28.

SNP discovery in pooled samples with mismatch repair detection.

Fakhrai-Rad H, Zheng J, Willis TD, Wong K, Suyenaga K, Moorhead M, Eberle J, Thorstenson YR, Jones T, Davis RW, Namsaraev E, Faham M.

Genome Res. 2004 Jul;14(7):1404-12.

29.

Measurement of day and night neutrino energy spectra at SNO and constraints on neutrino mixing parameters.

Ahmad QR, Allen RC, Andersen TC, Anglin JD, Barton JC, Beier EW, Bercovitch M, Bigu J, Biller SD, Black RA, Blevis I, Boardman RJ, Boger J, Bonvin E, Boulay MG, Bowler MG, Bowles TJ, Brice SJ, Browne MC, Bullard TV, Bühler G, Cameron J, Chan YD, Chen HH, Chen M, Chen X, Cleveland BT, Clifford ET, Cowan JH, Cowen DF, Cox GA, Dai X, Dalnoki-Veress F, Davidson WF, Doe PJ, Doucas G, Dragowsky MR, Duba CA, Duncan FA, Dunford M, Dunmore JA, Earle ED, Elliott SR, Evans HC, Ewan GT, Farine J, Fergani H, Ferraris AP, Ford RJ, Formaggio JA, Fowler MM, Frame K, Frank ED, Frati W, Gagnon N, Germani JV, Gil S, Graham K, Grant DR, Hahn RL, Hallin AL, Hallman ED, Hamer AS, Hamian AA, Handler WB, Haq RU, Hargrove CK, Harvey PJ, Hazama R, Heeger KM, Heintzelman WJ, Heise J, Helmer RL, Hepburn JD, Heron H, Hewett J, Hime A, Howe M, Hykawy JG, Isaac MC, Jagam P, Jelley NA, Jillings C, Jonkmans G, Kazkaz K, Keener PT, Klein JR, Knox AB, Komar RJ, Kouzes R, Kutter T, Kyba CC, Law J, Lawson IT, Lay M, Lee HW, Lesko KT, Leslie JR, Levine I, Locke W, Luoma S, Lyon J, Majerus S, Mak HB, Maneira J, Manor J, Marino AD, McCauley N, McDonald AB, McDonald DS, McFarlane K, McGregor G, Meijer Drees R, Mifflin C, Miller GG, Milton G, Moffat BA, Moorhead M, Nally CW, Neubauer MS, Newcomer FM, Ng HS, Noble AJ, Norman EB, Novikov VM, O'Neill M, Okada CE, Ollerhead RW, Omori M, Orrell JL, Oser SM, Poon AW, Radcliffe TJ, Roberge A, Robertson BC, Robertson RG, Rosendahl SS, Rowley JK, Rusu VL, Saettler E, Schaffer KK, Schwendener MH, Schülke A, Seifert H, Shatkay M, Simpson JJ, Sims CJ, Sinclair D, Skensved P, Smith AR, Smith MW, Spreitzer T, Starinsky N, Steiger TD, Stokstad RG, Stonehill LC, Storey RS, Sur B, Tafirout R, Tagg N, Tanner NW, Taplin RK, Thorman M, Thornewell PM, Trent PT, Tserkovnyak YI, Van Berg R, Van de Water RG, Virtue CJ, Waltham CE, Wang JX, Wark DL, West N, Wilhelmy JB, Wilkerson JF, Wilson JR, Wittich P, Wouters JM, Yeh M; SNO Collaboration. Sudbury Neutrino Observatory.

Phys Rev Lett. 2002 Jul 1;89(1):011302. Epub 2002 Jun 13.

PMID:
12097026
30.

Direct evidence for neutrino flavor transformation from neutral-current interactions in the Sudbury Neutrino Observatory.

Ahmad QR, Allen RC, Andersen TC, D Anglin J, Barton JC, Beier EW, Bercovitch M, Bigu J, Biller SD, Black RA, Blevis I, Boardman RJ, Boger J, Bonvin E, Boulay MG, Bowler MG, Bowles TJ, Brice SJ, Browne MC, Bullard TV, Bühler G, Cameron J, Chan YD, Chen HH, Chen M, Chen X, Cleveland BT, Clifford ET, Cowan JH, Cowen DF, Cox GA, Dai X, Dalnoki-Veress F, Davidson WF, Doe PJ, Doucas G, Dragowsky MR, Duba CA, Duncan FA, Dunford M, Dunmore JA, Earle ED, Elliott SR, Evans HC, Ewan GT, Farine J, Fergani H, Ferraris AP, Ford RJ, Formaggio JA, Fowler MM, Frame K, Frank ED, Frati W, Gagnon N, Germani JV, Gil S, Graham K, Grant DR, Hahn RL, Hallin AL, Hallman ED, Hamer AS, Hamian AA, Handler WB, Haq RU, Hargrove CK, Harvey PJ, Hazama R, Heeger KM, Heintzelman WJ, Heise J, Helmer RL, Hepburn JD, Heron H, Hewett J, Hime A, Howe M, Hykawy JG, Isaac MC, Jagam P, Jelley NA, Jillings C, Jonkmans G, Kazkaz K, Keener PT, Klein JR, Knox AB, Komar RJ, Kouzes R, Kutter T, Kyba CC, Law J, Lawson IT, Lay M, Lee HW, Lesko KT, Leslie JR, Levine I, Locke W, Luoma S, Lyon J, Majerus S, Mak HB, Maneira J, Manor J, Marino AD, McCauley N, McDonald AB, McDonald DS, McFarlane K, McGregor G, Meijer Drees R, Mifflin C, Miller GG, Milton G, Moffat BA, Moorhead M, Nally CW, Neubauer MS, Newcomer FM, Ng HS, Noble AJ, Norman EB, Novikov VM, O'Neill M, Okada CE, Ollerhead RW, Omori M, Orrell JL, Oser SM, Poon AW, Radcliffe TJ, Roberge A, Robertson BC, Robertson RG, Rosendahl SS, Rowley JK, Rusu VL, Saettler E, Schaffer KK, Schwendener MH, Schülke A, Seifert H, Shatkay M, Simpson JJ, Sims CJ, Sinclair D, Skensved P, Smith AR, Smith MW, Spreitzer T, Starinsky N, Steiger TD, Stokstad RG, Stonehill LC, Storey RS, Sur B, Tafirout R, Tagg N, Tanner NW, Taplin RK, Thorman M, Thornewell PM, Trent PT, Tserkovnyak YI, Van Berg R, Van de Water RG, Virtue CJ, Waltham CE, Wang JX, Wark DL, West N, Wilhelmy JB, Wilkerson JF, Wilson JR, Wittich P, Wouters JM, Yeh M; SNO Collaboration. Sudbury Neutrino Observatory.

Phys Rev Lett. 2002 Jul 1;89(1):011301. Epub 2002 Jun 13.

PMID:
12097025
31.

Measurement of the rate of nu(e) + d --> p + p + e(-) interactions produced by (8)B solar neutrinos at the Sudbury Neutrino Observatory.

Ahmad QR, Allen RC, Andersen TC, Anglin JD, Bühler G, Barton JC, Beier EW, Bercovitch M, Bigu J, Biller S, Black RA, Blevis I, Boardman RJ, Boger J, Bonvin E, Boulay MG, Bowler MG, Bowles TJ, Brice SJ, Browne MC, Bullard TV, Burritt TH, Cameron K, Cameron J, Chan YD, Chen M, Chen HH, Chen X, Chon MC, Cleveland BT, Clifford ET, Cowan JH, Cowen DF, Cox GA, Dai Y, Dai X, Dalnoki-Veress F, Davidson WF, Doe PJ, Doucas G, Dragowsky MR, Duba CA, Duncan FA, Dunmore J, Earle ED, Elliott SR, Evans HC, Ewan GT, Farine J, Fergani H, Ferraris AP, Ford RJ, Fowler MM, Frame K, Frank ED, Frati W, Germani JV, Gil S, Goldschmidt A, Grant DR, Hahn RL, Hallin AL, Hallman ED, Hamer A, Hamian AA, Haq RU, Hargrove CK, Harvey PJ, Hazama R, Heaton R, Heeger KM, Heintzelman WJ, Heise J, Helmer RL, Hepburn JD, Heron H, Hewett J, Hime A, Howe M, Hykawy JG, Isaac MC, Jagam P, Jelley NA, Jillings C, Jonkmans G, Karn J, Keener PT, Kirch K, Klein JR, Knox AB, Komar RJ, Kouzes R, Kutter T, Kyba CC, Law J, Lawson IT, Lay M, Lee HW, Lesko KT, Leslie JR, Levine I, Locke W, Lowry MM, Luoma S, Lyon J, Majerus S, Mak HB, Marino AD, McCauley N, McDonald AB, McDonald DS, McFarlane K, McGregor G, McLatchie W, Meijer Drees R, Mes H, Mifflin C, Miller GG, Milton G, Moffat BA, Moorhead M, Nally CW, Neubauer MS, Newcomer FM, Ng HS, Noble AJ, Norman EB, Novikov VM, O'Neill M, Okada CE, Ollerhead RW, Omori M, Orrell JL, Oser SM, Poon AW, Radcliffe TJ, Roberge A, Robertson BC, Robertson RG, Rowley JK, Rusu VL, Saettler E, Schaffer KK, Schuelke A, Schwendener MH, Seifert H, Shatkay M, Simpson JJ, Sinclair D, Skensved P, Smith AR, Smith MW, Starinsky N, Steiger TD, Stokstad RG, Storey RS, Sur B, Tafirout R, Tagg N, Tanner NW, Taplin RK, Thorman M, Thornewell P, Trent PT, Tserkovnyak YI, Van Berg R, Van de Water RG, Virtue CJ, Waltham CE, Wang JX, Wark DL, West N, Wilhelmy JB, Wilkerson JF, Wilson J, Wittich P, Wouters JM, Yeh M; SNO Collaboration. Sudbury Neutrino Observatory.

Phys Rev Lett. 2001 Aug 13;87(7):071301. Epub 2001 Jul 25.

PMID:
11497878
32.

Light-reflecting concentrators for photomultipliers with curved photocathodes.

Moorhead ME, Tanner NW.

Appl Opt. 1996 Jul 1;35(19):3478-87. doi: 10.1364/AO.35.003478.

PMID:
21102738
33.

The quantitative distribution of 5-hydroxytryptamine in the invertebrates, especially in their nervous systems.

WELSH JH, MOORHEAD M.

J Neurochem. 1960 Sep;6:146-69. No abstract available.

PMID:
13784287
34.

Identification and assay of 5-hydroxytryptamine in molluscan tissues by fluorescence method.

WELSH JH, MOORHEAD M.

Science. 1959 May 29;129(3361):1491-2.

PMID:
13658984

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