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1.
Artif Cells Nanomed Biotechnol ; 44(1): 106-10, 2016.
Article in English | MEDLINE | ID: mdl-24844190

ABSTRACT

A small-scale optical device incorporated with an optical nano-antenna is designed to operate as the remote artificial eye using a tiny conjugate mirror. A basic device known as a conjugate mirror can be formed using the artificial eye device, the partially reflected light intensities from input source are interfered and the 3D whispering gallery modes formed within the ring centers, which can be modulated and propagated to the object. The image pixel is obtained at the center ring and linked with the optic nerve in the remote area via the nano-antenna, which is useful for blind people.


Subject(s)
Eye, Artificial , Imaging, Three-Dimensional/instrumentation , Optical Devices , Pattern Recognition, Automated , Distance Perception , Humans , Space Perception
2.
Artif Cells Nanomed Biotechnol ; 44(1): 240-7, 2016.
Article in English | MEDLINE | ID: mdl-25058032

ABSTRACT

Multi-wavelength generation system using an optical spin within the modified add-drop optical filter known as a PANDA ring resonator for molecular transport network security is proposed. By using the dark-bright soliton pair control, the optical capsules can be constructed and applied to securely transport the trapped molecules within the network. The advantage is that the dark and bright soliton pair (components) can securely propagate for long distance without electromagnetic interference. In operation, the optical intensity from PANDA ring resonator is fed into gold nano-antenna, where the surface plasmon oscillation between soliton pair and metallic waveguide is established.


Subject(s)
Drug Delivery Systems/methods , Optical Tweezers , Animals , Drug Delivery Systems/instrumentation , Electron Spin Resonance Spectroscopy , Humans , Magnetic Fields , Semiconductors
3.
Artif Cells Nanomed Biotechnol ; 43(4): 235-42, 2015.
Article in English | MEDLINE | ID: mdl-24393056

ABSTRACT

Multiwavelength optical capsules can be generated and controlled by using soliton/Gaussian pulses within a nonlinear device system known as a "PANDA" ring circuit and system. The security of molecule/drug transportation can be formed by the strong coupling of soliton-like pulse, where the high-capacity optical capsules can be formed using the multiwavelength solitons, which can be a good advantage and combination of drug delivery to the required targets. Moreover, the multiple access of drug delivery can be formed using the optical networks, which allows the use of various drug molecules with variety of diagnosis and therapeutic applications.


Subject(s)
Drug Carriers/chemistry , Models, Chemical
4.
Artif Cells Nanomed Biotechnol ; 43(4): 252-7, 2015.
Article in English | MEDLINE | ID: mdl-24450752

ABSTRACT

We present a new result of pattern recognition generation scheme using a small-scale optical muscle sensing system, which consisted of an optical add-drop filter incorporating two nonlinear optical side ring resonators. When light from laser source enters into the system, the device is stimulated by an external physical parameter that introduces a change in the phase of light propagation within the sensing device, which can be formed by the interference fringe patterns. Results obtained have shown that the fringe patterns can be used to form the relationship between signal patterns and fringe pattern recognitions.


Subject(s)
Models, Theoretical , Pattern Recognition, Automated
5.
ScientificWorldJournal ; 2014: 294104, 2014.
Article in English | MEDLINE | ID: mdl-24977191

ABSTRACT

Well-defined image can assist user to identify region of interest during segmentation. However, complex medical image is usually characterized by poor tissue contrast and low background luminance. The contrast improvement can lift image visual quality, but the fundamental contrast enhancement methods often overlook the sudden jump problem. In this work, the proposed bihistogram Bezier curve contrast enhancement introduces the concept of "adequate contrast enhancement" to overcome sudden jump problem in knee magnetic resonance image. Since every image produces its own intensity distribution, the adequate contrast enhancement checks on the image's maximum intensity distortion and uses intensity discrepancy reduction to generate Bezier transform curve. The proposed method improves tissue contrast and preserves pertinent knee features without compromising natural image appearance. Besides, statistical results from Fisher's Least Significant Difference test and the Duncan test have consistently indicated that the proposed method outperforms fundamental contrast enhancement methods to exalt image visual quality. As the study is limited to relatively small image database, future works will include a larger dataset with osteoarthritic images to assess the clinical effectiveness of the proposed method to facilitate the image inspection.


Subject(s)
Algorithms , Image Enhancement/methods , Image Interpretation, Computer-Assisted/methods , Magnetic Resonance Imaging/methods , Osteoarthritis, Knee/pathology , Data Interpretation, Statistical , Humans , Reproducibility of Results , Sensitivity and Specificity
6.
ScientificWorldJournal ; 2013: 346047, 2013.
Article in English | MEDLINE | ID: mdl-24222730

ABSTRACT

A new sensor system for measuring contraction and relaxation of muscles by using a PANDA ring resonator is proposed. The small scale optical device is designed and configured to perform the coupling effects between the changes in optical device phase shift and human facial muscle movement, which can be used to form the relationship between optical phase shift and muscle movement. By using the Optiwave and MATLAB programs, the results obtained have shown that the measurement of the contraction and relaxation of muscles can be obtained after the muscle movements, in which the unique pattern of individual muscle movement from facial expression can be established. The obtained simulation results, that is, interference signal patterns, can be used to form the various pattern recognitions, which are useful for the human machine interface and the human computer interface application and discussed in detail.


Subject(s)
Algorithms , Biosensing Techniques/methods , Facial Muscles/physiology , Muscle Contraction , Myography/methods , Optical Imaging/methods , Animals , Humans , Models, Biological , Muscle Relaxation
7.
IEEE Trans Nanobioscience ; 12(3): 222-7, 2013 Sep.
Article in English | MEDLINE | ID: mdl-23955778

ABSTRACT

A generation of optical capsules and tweezers within a modified optical add-drop filter known as PANDA ring resonator with a new concept is proposed. By using dark and bright solitons, the orthogonal tweezers can be formed within the system and observed simultaneously at the output ports. Under the resonant condition, the optical capsules and tweezers generated by dark and bright soliton pair corresponding to the left-hand and right-hand rotating solitons (tweezers) can be generated. When a soliton is interacted by an object, an angular momentum of either bright or dark tweezers is imparted to the object, in which two possible spin states known as tweezer spins are exhibited. Furthermore, an array of molecular capsules and spins, i.e., trapped molecules can be generated and detected by using the proposed system, which can be used to form large scale tweezer or capsule spins. In application, the trapped molecules can be moved and rotated securely to the required destinations, which can be useful for many applications, especially, in medical diagnosis, therapy and surgery.


Subject(s)
Nanotechnology/instrumentation , Optical Tweezers
8.
Appl Opt ; 52(12): 2866-73, 2013 Apr 20.
Article in English | MEDLINE | ID: mdl-23669699

ABSTRACT

In this paper, the bifurcation behavior of light in the PANDA ring resonator is investigated using the signal flow graph (SFG) method, where the optical transfer function for the through and drop ports of the PANDA Vernier system are derived. The optical nonlinear phenomena, such as bistability, Ikeda instability, and dynamics of light in the silicon-on-insulator (SOI) PANDA ring resonator with four couplers are studied. The transmission curves for bistability and instability as a function of the resonant mode numbers and coupling coefficients for the coupler are derived by the SFG method and simulated. The proposed system has an advantage as no optical pumping component is required. Simulated results show that closed-loop bistable switching can be generated and achieved by varying mode resonant numbers in the SOI-PANDA Vernier resonator, where a smooth and closed-loop bistable switching with low relative output/input power can be obtained and realized. The minimum through-port switching time of 1.1 ps for resonant mode numbers of 5;4;4 and minimum drop port switching time of 1.96 ps for resonant mode numbers of 9;7;7 of the PANDA Vernier resonator are achieved, which makes the PANDA Vernier resonator an operative component for optical applications, such as optical signal processing and a fast switching key in photonics integrated circuits.

9.
Artif Cells Nanomed Biotechnol ; 41(2): 92-7, 2013 Apr.
Article in English | MEDLINE | ID: mdl-22991968

ABSTRACT

Acne vulgaris is adebilitating dermatologic disease, and is conventionally treated by laser therapy using a microring resonator system. An evolving understanding of laser-tissue interactions involving Propioni bacterium acneproducing porphyrins, and the development of lasers to target the sebaceous glands, has led to the development of an escalating number of laser light for acne treatment. The results show that the full width at half maximum of the proposed laser pulse of 0.15 nm can be generated using a microring resonator system. The power of the laser is 200 W and the wavelength laser is 1,032 nm, which is proposed as a treatment of acne vulgaris diseases.


Subject(s)
Acne Vulgaris/radiotherapy , Low-Level Light Therapy/instrumentation , Low-Level Light Therapy/methods , Sebaceous Glands/radiation effects , Humans , Lasers , Light , Treatment Outcome
10.
Appl Opt ; 51(21): 5111-8, 2012 Jul 20.
Article in English | MEDLINE | ID: mdl-22858951

ABSTRACT

A new method of photodetector performance enhancement using an embedded optical accelerator circuit within the photodetector is proposed. The principle of optical tweezer generation using a light pulse within a PANDA ring is also reviewed. By using a modified add-drop optical filter known as a PANDA microring resonator, which is embedded within the photodetector circuit, the device performance can be improved by using an electron injection technique, in which electrons can be trapped by optical tweezers generated by a PANDA ring resonator. Finally, electrons can move faster within the device via the optical waveguide without trapping center in the silicon bulk to the contact, in which the increase in photodetector current is seen. Simulation results obtained have shown that the device's light currents are increased by the order of four, and the switching time is increased by the order of five. This technique can be used for better photodetector performance and other semiconductor applications in the future.

11.
Int J Nanomedicine ; 7: 2873-81, 2012.
Article in English | MEDLINE | ID: mdl-22745550

ABSTRACT

Auscultation of the heart is accompanied by both electrical activity and sound. Heart auscultation provides clues to diagnose many cardiac abnormalities. Unfortunately, detection of relevant symptoms and diagnosis based on heart sound through a stethoscope is difficult. The reason GPs find this difficult is that the heart sounds are of short duration and separated from one another by less than 30 ms. In addition, the cost of false positives constitutes wasted time and emotional anxiety for both patient and GP. Many heart diseases cause changes in heart sound, waveform, and additional murmurs before other signs and symptoms appear. Heart-sound auscultation is the primary test conducted by GPs. These sounds are generated primarily by turbulent flow of blood in the heart. Analysis of heart sounds requires a quiet environment with minimum ambient noise. In order to address such issues, the technique of denoising and estimating the biomedical heart signal is proposed in this investigation. Normally, the performance of the filter naturally depends on prior information related to the statistical properties of the signal and the background noise. This paper proposes Kalman filtering for denoising statistical heart sound. The cycles of heart sounds are certain to follow first-order Gauss-Markov process. These cycles are observed with additional noise for the given measurement. The model is formulated into state-space form to enable use of a Kalman filter to estimate the clean cycles of heart sounds. The estimates obtained by Kalman filtering are optimal in mean squared sense.


Subject(s)
Algorithms , Phonocardiography/methods , Signal Processing, Computer-Assisted , Heart Murmurs/physiopathology , Heart Sounds/physiology , Humans , Signal-To-Noise Ratio
12.
Opt Express ; 20(12): 12640-8, 2012 Jun 04.
Article in English | MEDLINE | ID: mdl-22714292

ABSTRACT

In this paper, we propose a novel design of an electron accelerator on-chip by using a small scale device known as a PANDA microring resonator, which can be embedded within the solar cell device, where the trapped electron can be accelerated and moved faster to the final destination. Therefore, the solar cell efficiency can be improved. In principle, a PANDA microring can generate the optical tweezers for hole tapping and transportation. The transported holes can be accelerated and moved via the optical waveguide to the solar cell device contact, where the effect of defects in silicon bulk can be solved. Therefore, this technique can be used to improve the solar cells performance. In practice, the accelerator unit can be embedded within the solar cell device, which allows the trapped holes moving to the required destination. This is claimed to be a novel technique by using a PANDA microring to accelerate the holes for solar cell performance improvement. Finally, this technique is the starting point of using a PANDA microring to enhance the performance of semiconductor device.

13.
IEEE Trans Nanobioscience ; 11(2): 119-24, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22411055

ABSTRACT

A novel system of nanofluidics trapping and delivery, which is known as a tissue culture system is proposed. By using the intense optical pulse(i.e., a soliton pulse) and a system constructed by a liquid core waveguide, the optical vortices (gradient optical fields/wells) can be generated, where the trapping tools in the same way as the optical tweezers in the PANDA ring resonator can be formed. By controlling the suitable parameters, the intense optical vortices can be generated within the PANDA ring resonator, in which the nanofluidics can be trapped and moved (transported) dynamically within the Tissue culture system(a wavelength router), which can be used for tissue culture and delivery in the hydroponic plant system.


Subject(s)
Hydroponics/instrumentation , Nanotechnology/instrumentation , Optical Tweezers , Tissue Culture Techniques/instrumentation , Microfluidic Analytical Techniques/instrumentation , Tissue Culture Techniques/methods
14.
IEEE Trans Nanobioscience ; 11(2): 125-30, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22411056

ABSTRACT

In this paper, the novel type of transistor known as a hybrid transistor is proposed, in which all types of transistors can be formed by using a microring resonator called a PANDA microring resonator. In principle, such a transistor can be used to form for various transistor types by using the atom/molecule trapping tools, which is named by an optical tweezer, where in application all type of transistors, especially, molecule and photon transistors can be performed by using the trapping tools, which will be described in details.


Subject(s)
Nanotechnology/instrumentation , Optical Tweezers , Transistors, Electronic , Computers, Molecular , Photons
15.
Article in English | MEDLINE | ID: mdl-22384850

ABSTRACT

In this investigation, a new design based on a PANDA ring resonator as an optical trapping tool for tangle protein, molecular motor storage, and delivery is proposed. The optical vortices are generated and the trapping mechanism is controlled in the same way as the conventional optical tweezers. The trapping force is produced by a combination of the gradient field and scattering photons. The required molecular volume is trapped and moved dynamically within the molecular network. The tangle protein and molecular motor can be transported and delivered to the required destinations for Alzheimer's diagnosis by molecular buffer and bus network.


Subject(s)
Alzheimer Disease/diagnosis , Amyloid beta-Peptides/metabolism , Axons/metabolism , Microtubules/metabolism , Molecular Motor Proteins/metabolism , Neurofibrillary Tangles/metabolism , Optical Tweezers , tau Proteins/metabolism , Amyloid beta-Peptides/chemistry , Axons/chemistry , Buffers , Electron Spin Resonance Spectroscopy , Humans , Microtubules/chemistry , Molecular Motor Proteins/chemistry , Protein Transport , tau Proteins/chemistry
16.
Int J Nanomedicine ; 7: 773-9, 2012.
Article in English | MEDLINE | ID: mdl-22359455

ABSTRACT

In this study, we have generated terahertz (THz) frequency by a novel design of microring resonators for medical applications. The dense wavelength-division multiplexing can be generated and obtained by using a Gaussian pulse propagating within a modified PANDA ring resonator and an add/drop filter system. Our results show that the THz frequency region can be obtained between 40-50 THz. This area of frequency provides a reliable frequency band for THz pulsed imaging.


Subject(s)
Optics and Photonics/instrumentation , Terahertz Imaging/instrumentation , Terahertz Imaging/methods , Histocytochemistry/instrumentation , Humans , Male , Models, Theoretical , Prostatic Neoplasms/chemistry , Terahertz Radiation
17.
Int J Nanomedicine ; 6: 2925-32, 2011.
Article in English | MEDLINE | ID: mdl-22131837

ABSTRACT

BACKGROUND: A novel nanomicro syringe system was proposed for drug storage and delivery using a PANDA ring resonator and atomic buffer. A PANDA ring is a modified optical add/drop filter, named after the well known Chinese bear. In principle, the molecule/drug is trapped by the force generated by different combinations of gradient fields and scattering photons within the PANDA ring. A nanomicro needle system can be formed by optical vortices in the liquid core waveguide which can be embedded on a chip, and can be used for long-term treatment. By using intense optical vortices, the required genes/molecules can be trapped and transported dynamically to the intended destinations via the nanomicro syringe, which is available for drug delivery to target tissues, in particular tumors. The advantage of the proposed system is that by confining the treatment area, the effect can be decreased. The use of different optical vortices for therapeutic efficiency is also discussed.


Subject(s)
Drug Delivery Systems/instrumentation , Molecular Targeted Therapy/instrumentation , Nanotechnology/instrumentation , Optical Tweezers , Animals , Drug Delivery Systems/methods , Humans , Mice , Models, Theoretical , Needles , Neoplasms/drug therapy , Syringes
18.
IEEE Trans Nanobioscience ; 10(2): 106-12, 2011 Jun.
Article in English | MEDLINE | ID: mdl-21518667

ABSTRACT

A novel design of nanoscopic volume transmitter and receiver for drug delivery system using a PANDA ring resonator is proposed. By controlling some suitable parameters, the optical vortices (gradient optical fields/wells) can be generated and used to form the trapping tools in the same way as the optical tweezers. By using the intense optical vortices generated within the PANDA ring resonator, the nanoscopic volumes (drug) can be trapped and moved (transport) dynamically within the wavelength router or network. In principle, the trapping force is formed by the combination between the gradient field and scattering photons, which is reviewed. The advantage of the proposed system is that a transmitter and receiver can be formed within the same system (device), which is called a transceiver, which is available for nanoscopic volume (drug volume) trapping and transportation (delivery).


Subject(s)
Drug Delivery Systems/methods , Nanotechnology/instrumentation , Optical Tweezers
19.
IEEE Trans Nanobioscience ; 9(4): 258-62, 2010 Dec.
Article in English | MEDLINE | ID: mdl-21266312

ABSTRACT

We propose a novel system of the dynamic optical tweezers generated by a dark soliton in the fiber optic loop. A dark soliton known as an optical tweezer is amplified and tuned within the microring resonator system. The required tunable tweezers with different widths and powers can be controlled. The analysis of dark-bright soliton conversion using a dark soliton pulse propagating within a microring resonator system is analyzed. The dynamic behaviors of soliton conversion in add/drop filter is also analyzed. The control dark soliton is input into the system via the add port of the add/drop filter. The dynamic behavior of the dark-bright soliton conversion is observed. The required stable signal is obtained via a drop and throughput ports of the add/drop filter with some suitable parameters. In application, the trapped light/atom and transportation can be realized by using the proposed system.


Subject(s)
Computer Simulation , Fiber Optic Technology , Optical Tweezers , Optics and Photonics/methods , Equipment Design , Humans , Miniaturization , Models, Theoretical
20.
Biomed Opt Express ; 2(1): 159-68, 2010 Dec 17.
Article in English | MEDLINE | ID: mdl-21326646

ABSTRACT

We propose a novel drug delivery system (DDS) by using a PANDA ring resonator to form, transmit and receive the microscopic volume by controlling some suitable ring parameters. The optical vortices (gradient optical field/well) can be generated and used to form the trapping tool in the same way as the optical tweezers. The microscopic volume (drug) can be trapped and moved (transported) dynamically within the wavelength router or network. In principle, the trapping force is formed by the combination between the gradient field and scattering photons, which has been reviewed. The advantage of the proposed system is that a transmitter and receiver can be formed within the same system, which is called transceiver, in which the use of such a system for microscopic volume (drug volume) trapping and transportation (delivery) can be realized.

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