Cooperative Raman Spectroscopy for Real-Time In Vivo Nano-Biosensing
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Zhi Sun | Josep Miquel Jornet | Qiaoqiang Gan | Hongzhi Guo | J. Jornet | Zhi Sun | Qiaoqiang Gan | Hongzhi Guo
[1] S. A. Prahl,et al. A Monte Carlo model of light propagation in tissue , 1989, Other Conferences.
[2] Y. Wang,et al. Single-mode laser by parity-time symmetry breaking , 2014, Science.
[3] Mark A. Eckert,et al. Novel Molecular and Nanosensors for In Vivo Sensing , 2013, Theranostics.
[4] R. Dasari,et al. Single Molecule Detection Using Surface-Enhanced Raman Scattering (SERS) , 1997 .
[5] Sarit S. Agasti,et al. Gold nanoparticles in chemical and biological sensing. , 2012, Chemical reviews.
[6] A. D. Wyner,et al. Capacity and error exponent for the direct detection photon channel. II , 1988 .
[7] Emil Jovanov,et al. Issues in wearable computing for medical monitoring applications: a case study of a wearable ECG monitoring device , 2000, Digest of Papers. Fourth International Symposium on Wearable Computers.
[8] Jeffrey H. Shapiro,et al. Capacity of wireless optical communications , 2003, IEEE J. Sel. Areas Commun..
[9] Jeho Park,et al. Surface Plasmon Resonance: A Versatile Technique for Biosensor Applications , 2015, Sensors.
[10] James C. Lin. Electromagnetic Fields in Biological Systems , 2012 .
[11] Josep Miquel Jornet,et al. Modeling and Performance Analysis of Metallic Plasmonic Nano-Antennas for Wireless Optical Communication in Nanonetworks , 2017, IEEE Access.
[12] Shlomo Shamai,et al. Bounds on the capacity of a spectrally constrained Poisson channel , 1993, IEEE Trans. Inf. Theory.
[13] Shyama Rath,et al. Nanoparticle size, oxidation state, and sensing response of tin oxide nanopowders using Raman spectroscopy , 2014 .
[14] Brendan Jennings,et al. Performance Analysis of Plant Monitoring Nanosensor Networks at THz Frequencies , 2016, IEEE Internet of Things Journal.
[15] Nikolaos G. Bourbakis,et al. A Survey on Wearable Sensor-Based Systems for Health Monitoring and Prognosis , 2010, IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and Reviews).
[16] S. Jacques. Corrigendum: Optical properties of biological tissues: a review , 2013 .
[17] Jordi Riu,et al. Nanosensors in environmental analysis. , 2006, Talanta.
[18] Nan Zhang,et al. Ultrabroadband Metasurface for Efficient Light Trapping and Localization: A Universal Surface‐Enhanced Raman Spectroscopy Substrate for “All” Excitation Wavelengths , 2015 .
[19] Ian F. Akyildiz,et al. Monaco: fundamentals of molecular nano-communication networks , 2012, IEEE Wireless Communications.
[20] David Tse,et al. Fundamentals of Wireless Communication , 2005 .
[21] Bhavya Sharma,et al. Surface-Enhanced Raman Spectroscopy Biosensing: In Vivo Diagnostics and Multimodal Imaging. , 2016, Analytical chemistry.
[22] Joachim C. Erdmann,et al. Recurrence rate correlation in scattered light intensity , 1978 .
[23] H. Asada,et al. The ring sensor: a new ambulatory wearable sensor for twenty-four hour patient monitoring , 1998, Proceedings of the 20th Annual International Conference of the IEEE Engineering in Medicine and Biology Society. Vol.20 Biomedical Engineering Towards the Year 2000 and Beyond (Cat. No.98CH36286).
[24] L Wang,et al. MCML--Monte Carlo modeling of light transport in multi-layered tissues. , 1995, Computer methods and programs in biomedicine.
[25] Patricia Casal,et al. Towards in vivo biosensors for low-cost protein sensing , 2013 .
[26] Özgür B. Akan,et al. Body area nanonetworks with molecular communications in nanomedicine , 2012, IEEE Communications Magazine.
[27] Alejandro Ribeiro,et al. Bandwidth-constrained distributed estimation for wireless sensor networks-part II: unknown probability density function , 2006, IEEE Transactions on Signal Processing.
[28] S. Jacques. Optical properties of biological tissues: a review , 2013, Physics in medicine and biology.
[29] J. Jornet,et al. Intra-Body Optical Channel Modeling for In Vivo Wireless Nanosensor Networks , 2016, IEEE Transactions on NanoBioscience.