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      ACKNOWLEDGMENTS                                Farouil A, Blanchonette I. A pilot evaluation of
        We acknowledge the support of the National   an electronic textile for lower limb monitoring
      Institute of Standards and Technology (NIST), U.S.   and interactive biofeedback. Procedia Engineer.
      Department of Commerce, in providing the neutron   2011;13:513–518.
      research facilities used in this work. The statements,   7.   Rautaray SS, Agrawal A. Interaction with virtual
      findings, conclusions, and recommendations     game through hand gesture recognition. In: 2011
      are those of the author(s) and do not necessarily   International Conference on Multimedia, Signal
      reflect the view of NIST or the U.S. Department of   Processing and Communication Technologies
      Commerce. N.J.W and R.X. acknowledge support   (IMPACT); 2011 Dec 17-19, Aligarh (India):
      of cooperative agreements 70NANB12H239 and     IEEE. 244-247.
      70NANB15H260 from NIST, U.S. Department of   8.   Xiao X, Yuan L, Zhong J, Ding T, Liu Y, Cai
      Commerce. R.X. also acknowledges support from the   Z, Rong Y, Han H, Zhou J, Wang ZL. High-
      National Science Foundation Graduate Research Fel-  strain sensors based on ZnO nanowire/
      lowship Program under Grant No. 1247394. Y.X. and   polystyrene hybridized flexible films. Adv Mater
      K. Z. Gao acknowledge the support of U. S. Depart-  2011;23:5440–5444.
      ment of Energy (DoE), Office of Science, Office of   9.   Lu N, Lu C, Yang S, Rogers J. Highly sensitive
      Basic Energy Sciences, under DoE contract number   skin-mountable strain gauges based entirely on
      DE-AC02-06CH11357.                             elastomers. Adv Funct Mater. 2012;22:4044–4050.
                                                  10.   Amjadi M, Pichitpajongkit A, Lee S, Ryu S, Park
      REFERENCES                                     I. Highly stretchable and sensitive strain sensor
                                                     based on silver nanowire-elastomer nanocom-
      1.  Liu CX, Choi JW. An embedded PDMS nano-    posite. ACS Nano. 2014;8:5154–5163.
          composite strain sensor toward biomedical  11.   Hammock ML, Chortos A, Tee BCK, Tok JBH,
          applications. In: Proceedings of the 31st Annual   Bao Z. 25th anniversary article: the evolution of
          International Conference of the IEEE Engineer-  electronic skin (E-Skin): a brief history, design
          ing in Medicine and Biology Society. EMBC   considerations, and recent progress. Adv Mater.
          2009 31st Annual International Conference of   2013:25:5997–6038.
          the IEEE Engineering in Medicine and Biology  12.   Sun JY, Keplinger C, Whitesides GM, Suo Z.
          Society; 2009 Sep 3-6; Minneapolis (MN). p.   Ionic skin. Adv Mater. 2014;26:7608–7614.
          6391–6394.                              13.  Chortos A, Liu J, Bao Z. Pursuing prosthetic
      2.   Kang I, Schulz MJ, Kim JH, Shanov V, Shi D.   electronic skin. Nat Mater. 2016;1–14.
          A carbon nanotube strain sensor for struc-  14.  Wang L, Hu W, Tan T. Recent developments
          tural health monitoring. Smart Mater Struct.   in human motion analysis. Pattern Recogn.
          2006;15:737–748.                           2003;36:585–601.
      3.   Giorgino T, Tormene P, Lorussi F, De Rossi D,  15.  Moeslund TB, Granum E. A survey of computer
          Quaglini S. Sensor evaluation for wearable strain   vision-based human motion capture. Comput
          gauges in neurological rehabilitation. IEEE T   Vis Image Und. 2001;81:231–268.
          Neur Sys Reh. 2009;17:409–415.          16.  Field M, Stirling D, Naghdy F, Pan Z. Motion
      4.  Lorussi F, Scilingo EP, Tesconi M, Tognetti A, De   capture in robotics review. In: 2009 IEEE Interna-
          Rossi D. Strain sensing fabric for hand posture   tional Conference on Control and Automation.
          and gesture monitoring. IEEE T Inf Technol B.   ICCA 2009 IEEE; Christchurch (New Zealand),
          2005;9:372–381.                            2009 Dec 9-11. p. 1697–1702
      5.   Liu X, Choi JW. Patterning conductive PDMS  17.  Yamada T, Hayamizu Y, Yamamoto Y, Yomogida
          nanocomposite in an elastomer using micro-  Y, Izadi-Najafabadi A, Futaba DN, Hata K. A
          contact printing. J Micromech Microeng.    stretchable carbon nanotube strain sensor for
          2009;19:85019.                             human-motion detection. Nat Nanotechnol.
      6.   Helmer RJN, Farrow D, Ball K, Phillips E,   2011;6:296–301.
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