Thermal Impact of an Active 3-D Microelectrode Array Implanted in the Brain
暂无分享,去创建一个
[1] H. H. Pennes. Analysis of tissue and arterial blood temperatures in the resting human forearm. , 1948, Journal of applied physiology.
[2] Y. Jaluria,et al. An Introduction to Heat Transfer , 1950 .
[3] H. Y. Fan. Properties of semiconductors , 1958 .
[4] G. J. Trezek,et al. A Probe Technique for Determining the Thermal Conductivity of Tissue , 1972 .
[5] J. Wallmark,et al. Properties of Semiconductors , 1974 .
[6] H. F. Bowman,et al. Theory, measurement, and application of thermal properties of biomaterials. , 1975, Annual review of biophysics and bioengineering.
[7] H. F. Bowman,et al. Thermal Conductivity and Thermal Diffusivity of Biomaterials: A Simultaneous Measurement Technique , 1977 .
[8] W. Dewey,et al. Cellular responses to combinations of hyperthermia and radiation. , 1977, Radiology.
[9] J Bures,et al. Spreading depression elicited by thermal effects of ultrasonic irradiation of cerebral cortex in rats. , 1977, Journal of neurobiology.
[10] H. F. Bowman,et al. Heat transfer and thermal dosimetry. , 1981, The Journal of microwave power.
[11] H. F. Bowman,et al. The simultaneous measurement of thermal conductivity, thermal diffusivity, and perfusion in small volumes of tissue. , 1984, Journal of biomechanical engineering.
[12] Jonathan W. Valvano,et al. Thermal conductivity and diffusivity of biomaterials measured with self-heated thermistors , 1985 .
[13] Begnaud Francis Hildebrand,et al. Introduction to numerical analysis: 2nd edition , 1987 .
[14] J Werner,et al. Temperature profiles with respect to inhomogeneity and geometry of the human body. , 1988, Journal of applied physiology.
[15] R. Leggett,et al. Reference values for resting blood flow to organs of man. , 1989, Clinical physics and physiological measurement : an official journal of the Hospital Physicists' Association, Deutsche Gesellschaft fur Medizinische Physik and the European Federation of Organisations for Medical Physics.
[16] Francis A. Duck,et al. Physical properties of tissue : a comprehensive reference book , 1990 .
[17] K. Horch,et al. A silicon-based, three-dimensional neural interface: manufacturing processes for an intracortical electrode array , 1991, IEEE Transactions on Biomedical Engineering.
[18] M. Rosenfeld,et al. Correlation between skull thickness asymmetry and scalp potential estimated by a numerical model of the head , 1995, IEEE Transactions on Biomedical Engineering.
[19] T. Seese,et al. Characterization of tissue morphology, angiogenesis, and temperature in the adaptive response of muscle tissue to chronic heating. , 1998, Laboratory investigation; a journal of technical methods and pathology.
[20] S. C. DeMarco,et al. Computed SAR and Thermal Elevation in a 0 . 25-mm 2-D Model of the Human Eye and Head in Response to an Implanted Retinal Stimulator — Part I : Models and Methods , 2001 .
[21] Tamer S. Issa,et al. DBS and diathermy interaction induces severe CNS damage , 2001, Neurology.
[22] Arnold Neumaier,et al. Introduction to Numerical Analysis , 2001 .
[23] G. Lazzi,et al. SAR distribution and thermal elevation in a human head model due to the operation of the data telemetry link and implanted chip in a retinal prosthesis , 2003, IEEE Antennas and Propagation Society International Symposium. Digest. Held in conjunction with: USNC/CNC/URSI North American Radio Sci. Meeting (Cat. No.03CH37450).
[24] P S Ruggera,et al. In vitro assessment of tissue heating near metallic medical implants by exposure to pulsed radio frequency diathermy. , 2003, Physics in medicine and biology.
[25] S. C. DeMarco,et al. Computed SAR and thermal elevation in a 0.25-mm 2-D model of the human eye and head in response to an implanted retinal stimulator - part I: models and methods , 2003 .
[26] Kullervo Hynynen,et al. Patterns of thermal deposition in the skull during transcranial focused ultrasound surgery , 2004, IEEE Transactions on Biomedical Engineering.
[27] Michael B. Smith,et al. Model of local temperature changes in brain upon functional activation. , 2004, Journal of applied physiology.
[28] James D. Weiland,et al. Thermal elevation in the human eye and head due to the operation of a retinal prosthesis , 2004, IEEE Transactions on Biomedical Engineering.
[29] Y. Ibata,et al. Effects of heating on electrical activities of guinea pig olfactory cortical slices , 2004, Pflügers Archiv.
[30] G. Lazzi,et al. Thermal effects of bioimplants , 2005, IEEE Engineering in Medicine and Biology Magazine.
[31] Otto J. Prohaska,et al. Stimulus-activated changes in brain tissue temperature in the anesthetized rat , 1989, Metabolic Brain Disease.
[32] K. E. Jones,et al. A glass/silicon composite intracortical electrode array , 2006, Annals of Biomedical Engineering.
[33] H. Reichl,et al. Biocompatible hybrid flip chip microsystem integration for next generation wireless neural interfaces , 2006, 56th Electronic Components and Technology Conference 2006.
[34] M. Bikson,et al. Bio-Heat Transfer Model of Deep Brain Stimulation Induced Temperature changes , 2006, 2006 International Conference of the IEEE Engineering in Medicine and Biology Society.
[35] S Kim,et al. Switchable Polymer Based Thin Film Coils as a Power Module for Wireless Neural Interfaces. , 2007, Sensors and actuators. A, Physical.
[36] F. Solzbacher,et al. Characterization of Parylene-C film as an encapsulation material for neural interface devices , 2007 .
[37] R.R. Harrison,et al. A Low-Power Integrated Circuit for a Wireless 100-Electrode Neural Recording System , 2006, IEEE Journal of Solid-State Circuits.
[38] P. Lettieri,et al. An introduction to heat transfer , 2007 .