-
1
-
-
69749095953
-
Comparison of regional patch collection vs whole body washdown for measuring sweat sodium and potassium loss during exercise
-
Baker, L. B., and Stofan., J. R., Hamilton, A. A. & Horswill, C. A., 2009. Comparison of regional patch collection vs. whole body washdown for measuring sweat sodium and potassium loss during exercise. Journal of Applied Physiology, 107, 887-895.
-
(2009)
Journal of Applied Physiology
, vol.107
, pp. 887-895
-
-
Baker, L.B.1
Stofan, J.R.2
Hamilton, A.A.3
Horswill, C.A.4
-
2
-
-
0017625144
-
Sweating: Its composition and effects in body fluids
-
Costill, D. L., 1977. Sweating: Its Composition and Effects in Body Fluids. Annals of the New York Academy of Sciences, 301, 160-174.
-
(1977)
Annals of the New York Academy of Sciences
, vol.301
, pp. 160-174
-
-
Costill, D.L.1
-
3
-
-
77949684516
-
Biosensing textiles for personalised healthcare management
-
IEEE Transactions on
-
Coyle, S., King-Tong, L., Moyna, N., O'gorman, D., Diamond, D., Di Francesco, F., Costanzo, D., Salvo, P., Trivella, M. G., De Rossi, D. E., Taccini, N., Paradiso, R., Porchet, J. A., Ridolfi, A., Luprano, J., Chuzel, C., Lanier, T., Revol-Cavalier, F., Schoumacker, S., Mourier, V., Chartier, I., Convert, R., De-Moncuit, H. & Bini, C., 2010. Biosensing Textiles for Personalised Healthcare Management. Information Technology in Biomedicine, IEEE Transactions on, 14, 364-370.
-
(2010)
Information Technology in Biomedicine
, vol.14
, pp. 364-370
-
-
Coyle, S.1
King-Tong, L.2
Moyna, N.3
O'gorman, D.4
Diamond, D.5
Di Francesco, F.6
Costanzo, D.7
Salvo, P.8
Trivella, M.G.9
De Rossi, D.E.10
Taccini, N.11
Paradiso, R.12
Porchet, J.A.13
Ridolfi, A.14
Luprano, J.15
Chuzel, C.16
Lanier, T.17
Revol-Cavalier, F.18
Schoumacker, S.19
Mourier, V.20
Chartier, I.21
Convert, R.22
De-Moncuit, H.23
Bini, C.24
more..
-
4
-
-
84888587352
-
Biosensors in medical diagnostics
-
Gia CA
-
Gia, 2012. Biosensors in Medical Diagnostics. Global strategic business report. CA.
-
(2012)
Global Strategic Business Report
-
-
-
5
-
-
77955523935
-
CentimeterLong and large-scale micropatterns of reduced graphene oxide films: Fabrication and sensing applications
-
He, Q., and Sudibya., H. G., Yin, Z., Wu, S., Li, H., Boey, F., Huang, W., Chen, P. & Zhang, H., 2010. CentimeterLong and Large-Scale Micropatterns of Reduced Graphene Oxide Films: Fabrication and Sensing Applications. ACS Nano, 4, 3201-3208.
-
(2010)
ACS Nano
, vol.4
, pp. 3201-3208
-
-
He, Q.1
Sudibya, H.G.2
Yin, Z.3
Wu, S.4
Li, H.5
Boey, F.6
Huang, W.7
Chen, P.8
Zhang, H.9
-
6
-
-
84888612922
-
Growth of graphene oxide using ethanol CVD
-
Huang, J., Harvey, J., Chen, H., Fam, W. H. D., Nimmo, M. A. & Tok, I. Y. A., 2013a. Growth of Graphene Oxide Using Ethanol CVD. Procedia Engineering.
-
(2013)
Procedia Engineering
-
-
Huang, J.1
Harvey, J.2
Chen, H.3
Fam, W.H.D.4
Nimmo, M.A.5
Tok, I.Y.A.6
-
7
-
-
84889060070
-
Novel biosensor for interleukin-6 detection
-
Huang, J., Harvey, J., Fam, W. H. D., Nimmo, M. A Tok, I. Y. A., 2013b. Novel Biosensor for Interleukin-6 Detection. Procedia Engineering.
-
(2013)
Procedia Engineering
-
-
Huang, J.1
Harvey, J.2
Fam, W.H.D.3
Nimmo, M.A.4
Tok, I.Y.A.5
-
8
-
-
84880126281
-
The extended growth of graphene oxide flakes using ethanol CVD
-
Huang, J., Larisika, M., Fam, W. H. D., He, Q., Nimmo, M. A., Nowak, C. & Tok, A. I. Y., 2013c. The extended growth of graphene oxide flakes using ethanol CVD. Nanoscale, 5, 2945-2951.
-
(2013)
Nanoscale
, vol.5
, pp. 2945-2951
-
-
Huang, J.1
Larisika, M.2
Fam, W.H.D.3
He, Q.4
Nimmo, M.A.5
Nowak, C.6
Tok, A.I.Y.7
-
9
-
-
84888623850
-
-
Huang, J., Larisika, M., Nowak, C. & Tok, I. Y. A., 2013d. New Methods in Aqueous Graphene (Graphene Oxide) Synthesis for Biosensor Devices.
-
(2013)
New Methods in Aqueous Graphene (Graphene Oxide) Synthesis for Biosensor Devices
-
-
Huang, J.1
Larisika, M.2
Nowak, C.3
Tok, I.Y.A.4
-
10
-
-
84867398639
-
An improved synthesis route to graphene for molecular sensor applications
-
Larisika, M., Huang, J., Tok, A., Knoll, W. & Nowak, C., 2012. An improved synthesis route to graphene for molecular sensor applications. Materials Chemistry and Physics, 136, 304-308.
-
(2012)
Materials Chemistry and Physics
, vol.136
, pp. 304-308
-
-
Larisika, M.1
Huang, J.2
Tok, A.3
Knoll, W.4
Nowak, C.5
-
11
-
-
77955521750
-
Thread as a versatile material for low-cost microfluidic diagnostics
-
Li, X., Tian, J. & Shen, W., 2009. Thread as a Versatile Material for Low-Cost Microfluidic Diagnostics. ACS Applied Materials & Interfaces, 2, 1-6.
-
(2009)
ACS Applied Materials & Interfaces
, vol.2
, pp. 1-6
-
-
Li, X.1
Tian, J.2
Shen, W.3
-
12
-
-
61649093984
-
Graphene-based single-bacterium resolution biodevice and DNA transistor: Interfacing graphene derivatives with nanoscale and microscale biocomponents
-
Mohanty, N. & Berry, V., 2008. Graphene-Based Single-Bacterium Resolution Biodevice and DNA Transistor: Interfacing Graphene Derivatives with Nanoscale and Microscale Biocomponents. Nano Letters, 8, 4469-4476.
-
(2008)
Nano Letters
, vol.8
, pp. 4469-4476
-
-
Mohanty, N.1
Berry, V.2
-
13
-
-
7444220645
-
Electric field effect in atomically thin carbon films
-
Novoselov, K. S., and Geim., A. K., Morozov, S. V., Jiang, D., Zhang, Y., and Dubonos., S. V., Grigorieva, I. V. & Firsov, A. A., 2004. Electric Field Effect in Atomically Thin Carbon Films. Science, 306, 666-669.
-
(2004)
Science
, vol.306
, pp. 666-669
-
-
Novoselov, K.S.1
Geim, A.K.2
Morozov, S.V.3
Jiang, D.4
Zhang, Y.5
Dubonos, S.V.6
Grigorieva, I.V.7
Firsov, A.A.8
-
14
-
-
70349975898
-
Electrolyte-gated graphene field-effect transistors for detecting pH and protein adsorption
-
Ohno, Y., Maehashi, K., Yamashiro, Y. & Matsumoto, K., 2009. Electrolyte-Gated Graphene Field-Effect Transistors for Detecting pH and Protein Adsorption. Nano Letters, 9, 3318-3322.
-
(2009)
Nano Letters
, vol.9
, pp. 3318-3322
-
-
Ohno, Y.1
Maehashi, K.2
Yamashiro, Y.3
Matsumoto, K.4
-
15
-
-
0033665646
-
Variations in regional sweat composition in normal human males
-
Patterson, M. J., Galloway, S. D. R. & Nimmo, M. A., 2000. Variations in Regional Sweat Composition in Normal Human Males. Experimental Physiology, 85, 869-875.
-
(2000)
Experimental Physiology
, vol.85
, pp. 869-875
-
-
Patterson, M.J.1
Galloway, S.D.R.2
Nimmo, M.A.3
-
16
-
-
77955483542
-
Thread as a matrix for biomedical assays
-
Reches, M., and Mirica., K. A., Dasgupta, R., Dickey, M. D., Butte, M. J. & Whitesides, G. M., 2010. Thread as a Matrix for Biomedical Assays. ACS Applied Materials & Interfaces, 2, 1722-1728.
-
(2010)
ACS Applied Materials & Interfaces
, vol.2
, pp. 1722-1728
-
-
Reches, M.1
Mirica, K.A.2
Dasgupta, R.3
Dickey, M.D.4
Butte, M.J.5
Whitesides, G.M.6
-
17
-
-
77954945205
-
A wearable electrochemical sensor for the real-time measurement of sweat sodium concentration
-
Schazmann, B., Morris, D., Slater, C., Beirne, S., Fay, C., Reuveny, R., Moyna, N. & Diamond, D., 2010. A wearable electrochemical sensor for the real-time measurement of sweat sodium concentration. Analytical Methods, 2, 342-348.
-
(2010)
Analytical Methods
, vol.2
, pp. 342-348
-
-
Schazmann, B.1
Morris, D.2
Slater, C.3
Beirne, S.4
Fay, C.5
Reuveny, R.6
Moyna, N.7
Diamond, D.8
-
18
-
-
34548388792
-
Detection of individual gas molecules adsorbed on graphene
-
Schedin, F., and Geim., A. K., Morozov, S. V., Hill, E. W., Blake, P., Katsnelson, M. I. & Novoselov, K. S., 2007. Detection of individual gas molecules adsorbed on graphene. Nat Mater, 6, 652-655.
-
(2007)
Nat Mater
, vol.6
, pp. 652-655
-
-
Schedin, F.1
Geim, A.K.2
Morozov, S.V.3
Hill, E.W.4
Blake, P.5
Katsnelson, M.I.6
Novoselov, K.S.7
-
19
-
-
84877019918
-
Fabricating electroconductive cotton textiles using graphene
-
Shateri-Khalilabad, M. & Yazdanshenas, M. E., 2013. Fabricating electroconductive cotton textiles using graphene. Carbohydrate Polymers, 96, 190-195.
-
(2013)
Carbohydrate Polymers
, vol.96
, pp. 190-195
-
-
Shateri-Khalilabad, M.1
Yazdanshenas, M.E.2
-
20
-
-
55449132007
-
Sweat electrolyte concentrations obtained from within occlusive coverings are falsely high because sweat itself leaches skin electrolytes
-
Weschler, L. B., 2008. Sweat electrolyte concentrations obtained from within occlusive coverings are falsely high because sweat itself leaches skin electrolytes. Journal of Applied Physiology, 105, 1376-1377.
-
(2008)
Journal of Applied Physiology
, vol.105
, pp. 1376-1377
-
-
Weschler, L.B.1
|