All Stories

  1. Tracking of respiratory mechanics at multiple oscillation frequencies
  2. Enhancing Accuracy in Actigraphic Measurements: A Lightweight Calibration Method for Triaxial Accelerometers
  3. Intra-breath changes in respiratory mechanics assessed from multi-frequency oscillometry measurements
  4. Reliable readings from Arduino voltmeters
  5. Comment on ‘A low-cost cryogenic temperature measurement system using Arduino microcontroller’
  6. Comment on ‘Resistance of a digital voltmeter: teaching creative thinking through an inquiry-based lab’
  7. Voltmeter in series?
  8. How accurate is an Arduino Ohmmeter?
  9. Driving with an Arduino? Keep the lane!
  10. Phonocardiography and Photoplethysmography With Simple Arduino Setups to Support Interdisciplinary STEM Education
  11. Analysis of a Pulse Rate Variability Measurement Using a Smartphone Camera
  12. Digital phonocardiographic experiments and signal processing in multidisciplinary fields of university education
  13. IoT framework for Fluctuation Enhanced Sensing
  14. Performance and security analysis of the generalized Kirchhoff-Law-Johnson-Noise key exchange protocol
  15. Airway dynamics in COPD patients by within-breath impedance tracking: effects of continuous positive airway pressure
  16. Can the fluctuations of motion be used to estimate the performance of kayak paddlers?
  17. Tidal changes in respiratory resistance are sensitive indicators of airway obstruction in children
  18. Random noise can help to improve synchronization of excimer laser pulses
  19. Generalized Attack Protection in the Kirchhoff-Law-Johnson-Noise Secure Key Exchanger
  20. Generalized Kirchhoff-Law-Johnson-Noise (KLJN) secure key exchange system using arbitrary resistors
  21. LATE-BREAKING ABSTRACT: Measurement of respiratory system mechanics via laryngeal mask airway in children
  22. Classification of flow-dependent changes in mechanical impedance in healthy newborns
  23. Limitations of forced spirometry in the detection of bronchodilator response in asthmatic children
  24. Security and performance analysis of the Kirchhoff-Law-Johnson-Noise secure key exchange protocol
  25. Molecular and Supramolecular Parameters Dictating the Thermoelectric Performance of Conducting Polymers: A Case Study Using Poly(3-alkylthiophene)s
  26. Analysis of an Attenuator Artifact in an Experimental Attack by Gunn–Allison–Abbott Against the Kirchhoff-Law–Johnson-Noise (KLJN) Secure Key Exchange System
  27. Noninvasive continuous arterial pressure measurements in the assessment of acute, severe central hypovolemia
  28. Respiratory impedance in healthy unsedated S outh A frican infants: Effects of maternal smoking
  29. What Kind of Noise Guarantees Security for the Kirchhoff-Law–Johnson-Noise Key Exchange?
  30. Hemodynamic effects of slow breathing: Does the pattern matter beyond the rate?
  31. Assessment of respiratory mechanics with forced oscillations in healthy newborns
  32. Power Spectral Density Estimation for Wireless Fluctuation Enhanced Gas Sensor Nodes
  33. Enhanced time-domain detection of the activation frequency of atrial fibrillation
  34. Noise Properties in the Ideal Kirchhoff-Law-Johnson-Noise Secure Communication System
  35. Reasons behind the improved thermoelectric properties of poly(3-hexylthiophene) nanofiber networks
  36. Bit errors in the Kirchhoff-Law–Johnson-Noise secure key exchange
  37. Real-time analysis of mechanical and electrical resonances with open-source sound card software
  38. Low-cost photoplethysmograph solutions using the Raspberry Pi
  39. Current and voltage based bit errors and their combined mitigation for the Kirchhoff-law–Johnson-noise secure key exchange
  40. Performance estimation of kayak paddlers based on fluctuation analysis of movement signals
  41. Fluctuation enhanced gas detector for wireless sensor networks
  42. Role of Triggering Pulmonary Veins in the Maintenance of Sustained Paroxysmal Atrial Fibrillation
  43. Photosynthetic reaction centers/ITO hybrid nanostructure
  44. Unconditional Security by the Laws of Classical Physics
  45. Compact Energy Measuring System for Short Pulse Lasers
  46. Information Theoretic Security by the Laws of Classical Physics
  47. Real-time demonstration of the main characteristics of chaos in the motion of a real double pendulum
  48. ENHANCED CONTROL OF EXCIMER LASER PULSE TIMING USING TUNABLE ADDITIVE NOISE
  49. A Photoplethysmograph Experiment for Microcontroller Labs
  50. Fluctuation-Enhanced Sensing for Biological Agent Detection and Identification
  51. A high-resolution stopwatch for cents
  52. Compact USB measurement and analysis system for real-time fluctuation enhanced sensing
  53. Noise-based information processing
  54. Review of sound card photogates
  55. Edaq530: a transparent, open-end and open-source measurement solution in natural science education
  56. Sub-$10 sound card photogate variants
  57. Online Signature Verification Method Based on the Acceleration Signals of Handwriting Samples
  58. TOWARDS BRAIN-INSPIRED COMPUTING
  59. INCREASING CHEMICAL SELECTIVITY OF CARBON NANOTUBE-BASED SENSORS BY FLUCTUATION-ENHANCED SENSING
  60. Kinetic bacteriochlorophyll fluorometer
  61. Carbon nanotube based sensors and fluctuation enhanced sensing
  62. Separating Chemical Signals of Adsorption– Desorption and Diffusive Processes
  63. Fluctuation-Enhanced Sensing With Zero-Crossing Analysis for High-Speed and Low-Power Applications
  64. Prediction of acute volume loss in spontaneously breathing subjects
  65. Fluctuation enhanced gas sensing on functionalized carbon nanotube thin films
  66. Drift effect of fluctuation enhanced gas sensing on carbon nanotube sensors
  67. Inkjet printed resistive and chemical‐FET carbon nanotube gas sensors
  68. Improving the performance of functionalized carbon nanotube thin film sensors by fluctuation enhanced sensing
  69. UTILISING JITTER NOISE IN THE PRECISE SYNCHRONISATION OF LASER PULSES
  70. Johnson(-like)–Noise–Kirchhoff-loop based secure classical communicator characteristics, for ranges of two to two thousand kilometers, via model-line
  71. Respiratory effects on the reproducibility of cardiovascular autonomic parameters
  72. Utilising jitter noise in the precise synchronisation of laser pulses
  73. Thermal noise informatics: totally secure communication via a wire, zero-power communication, and thermal noise driven computing
  74. SPECTRAL ANALYSIS PROBLEMS OF HEART RATE AND BLOOD PRESSURE FLUCTUATIONS
  75. Novel Applications of Noise in Sensing and Communications
  76. Marked signal improvement by stochastic resonance for aperiodic signals in the double-well system
  77. Characterization of Polypyrrole−Silver Nanocomposites Prepared in the Presence of Different Dopants
  78. Cross-spectral analysis of signal improvement by stochastic resonance in bistable systems
  79. Signal processing problems of neurocardiological fluctuations
  80. DIGITAL SIGNAL PROCESSOR (DSP) BASED 1/f a NOISE GENERATOR
  81. Signal-to-noise ratio gain in stochastic resonators driven by colored noises
  82. Digital signal processor (DSP)-based 1/f α noise generator
  83. Human autonomic responses to blood donation
  84. Signal-to-noise ratio gain in stochastic resonators driven by coloured noises
  85. Oesophageal acid stimulation in humans: Does it alter baroreflex function?
  86. Mechanism of signal-to-noise ratio gain in a monostable threshold stochastic resonators
  87. Level-crossing time statistics of Gaussian 1/fαnoises
  88. Biased percolation approach to failure propagation in nanostructures and prediction of the total failure by electronic noise analysis
  89. SIGNAL-TO-NOISE RATIO GAIN IN NON-DYNAMICAL AND DYNAMICAL BISTABLE STOCHASTIC RESONATORS
  90. Autonomic responses to blood donation
  91. HIGH SIGNAL-TO-NOISE RATIO GAIN BY STOCHASTIC RESONANCE IN A DOUBLE WELL
  92. Amplitude truncation of Gaussian 1/fα noises: Results and problems
  93. HIGH SIGNAL-TO-NOISE RATIO GAIN BY STOCHASTIC RESONANCE IN A DOUBLE WELL
  94. HOW CAN NOISE "SMELL" AND REMEMBER THAT "SMELL": SAMPLING-AND-HOLD ELECTRONIC NOSE
  95. COLORED NOISE DRIVEN STOCHASTIC RESONANCE IN A DOUBLE WELL AND IN A FITZHUGH-NAGUMO NEURONAL MODEL
  96. Severe cardiovascular autonomic dysfunction in a patient with Guillain-Barre syndrome: a case report
  97. A self-adaptive stochastic resonator with logarithmic transfer
  98. Signal-to-noise ratio gain by stochastic resonance in a bistable system
  99. Amplitude truncation of Gaussian 1/fα noises
  100. Excess thermal-noise in the electrical breakdown of random resistor networks
  101. A high-sensitivity, near-infrared tunable-diode-laser-based photoacoustic water-vapour-detection system for automated operation
  102. Particle aggregation in complex aquatic systems
  103. Higher order stochastic resonance in a level-crossing detector
  104. On the anomalous behavior of the relative amplitude of RTS noise
  105. A biased percolation model for the analysis of electronic-device degradation
  106. A percolative simulation of dielectric-like breakdown
  107. Biased percolation and electrical breakdown
  108. Effect of postural changes on arterial baroreflex sensitivity assessed by the spontaneous sequence method and Valsalva manoeuvre in healthy subjects
  109. Diffusive fluctuations, long-time and short-time cross-correlations in the motion of vortice-pancakes in different layers of YBCO/PBCO superlattices
  110. A stochastic resonator is able to greatly improve signal-to-noise ratio
  111. Biased percolation and abrupt failure of electronic devices
  112. Nonlinear aspects of laser-driven oxidation of metals
  113. A method for testing first-order Markovian property of noise phenomena including 1/ƒ noise
  114. Non-dynamical stochastic resonance: Theory and experiments with white and various coloured noises
  115. The mechanism of blood pressure variability
  116. Non-Dynamical Stochastic Resonance: Theory and Experiments with White and Arbitrarily Coloured Noise
  117. I/f noise in systems showing stochastic resonance
  118. Scaling spontaneous fluctuations in high-Tc superconductor films
  119. noise generated by scaled Brownian motion
  120. A biased percolation model for the analysis of electronic-device degradation