Showing posts with label Biomedical Engineering. Show all posts
Showing posts with label Biomedical Engineering. Show all posts

Tuesday, 1 November 2011

IEEE MEDICAL ELECTRONICS PROJECTS - 2011

25.)DNA-based molecular devices 
26.)A Neuro–Fuzzy Inference System for sEMG-Based Identification of Hand Motion Commands 
27.)The design of automatic flipping-body nursing bed 
28.)The design of pulsating vacuum sterilizer 
29.)A lightweight security protocol for ultra-low power ASIC implementation for wireless Implantable Medical Devices 
30.)Development of EMG circuit to study the relationship between flexor digitorum superficialis muscle activity and hand grip strength 
31.)Low-power amplifier for in-vivo EEG signal recording 
32.)A mobile haptic interface for neuro-rehabilitation 
33.)Modified Kinematic Technique for Measuring Pathological Hyperextension and Hypermobility of the Interphalangeal Joints 
34.)Sensor Network for Endotracheal Pressure Measurements in Hospital Environments 
35.)System for control of limb straining in rehabilitation process 
36.) Ultra-Low-Power and Robust Digital-Signal-Processing Hardware for Implantable Neural Interface Microsystems 
37.) A zero configured HomeCare gateway using ZigBee 
38.)Automatic sleep spindle detection in raw EEG signal of newborn babies 
39.)Control of myoelectric prosthetic hand based on surface EMG 
40.)Using a SSVEP-BCI to command a robotic wheelchair 
41.)A reliable ultra low power merged LNA and Mixer design for medical implant communication services 
42.)Design of wireless drive and control system for capsule micro-robot 
43.)A 53-nW 9.12-ENOB 1-kS/s SAR ADC in 0.13-μm CMOS for medical implant devices 
44.)On using impedance plethysmography for estimation of blood flow 
45.)An add-on solution to take measures automatically from critical care urine meters 
46.)Kinematics simulation of upper limb rehabilitant robot based on virtual reality techniques 
47.)An Articulatory Silicon Vocal Tract for Speech and Hearing Prostheses 
48.)Design and simulation of a three-phase generator for use with smart systems in medical microinstrumentation 
49.) The Application of Laser Welding on Left Ventricular Assist Device (LVAD) 
50.) Bionic pancreas 
51.)Bionic hand enhancement methods for precise motion 
52.)Multi-usage of microwave Doppler radar in pervasive healthcare systems for elderly 
53.)Development of Cardiac Prescreening Device for Rural Population Using Ultralow-Power Embedded System 
54.)Growing Cells Atop Microelectronic Chips: Interfacing Electrogenic Cells In Vitro With CMOS-Based Microelectrode Arrays 
55.)A configurable and low-power mixed signal SoC for portable ECG monitoring applications 
56.)Induced voltage to an implantable cardiac pacemaker in a voxcel human model by a near-field intra-body communication device 
57.)New instrumentation for cardiovascular risk assessment: The role of pulse wave velocity 
58.)Low-Power Wireless Micromanometer System for Acute and Chronic Bladder-Pressure Monitoring 
59.)Continuous 3D control of a virtual helicopter using a motor imagery based BCI 
60.)A 75μW real-time scalable network controller and a 25μW ExG sensor IC for compact sleep-monitoring applications 
61.)Ratiometric Artifact Reduction in Low Power Reflective Photoplethysmography 
62.)A data glove based sensor interface to expressively control musical processes 
63.)The system of pulse monitoring based on Windows Mobile 
64.)A 20 pJ/b (10 µW) digital receiver based on a new modulation (SAS) for retinal prosthesis application 
65.)Portable datalogger for intracranial pressure monitoring and intelligent diagnosis 66.)Implementation of a portable electronic system for providing pain relief to patellofemoral pain syndrome patients 
67.) Microcontroller based realization of gait speed estimation for electronic above knee prostheses 
68.) A 10.2 Mbps Pulse Harmonic Modulation Based Transceiver for Implantable Medical Devices 
69.) An EKG system-on-chip for portable time-frequency HRV analysis 
70.) Novel fully electronic active real-time millimeter-wave imaging system based on a planar multistatic sparse array 

Wednesday, 8 September 2010

Change of Web Address

Dear Friends,

We are happy to announce that the biomedical engineering website www.mybiomedical.blogspot.com is moved to a new address www.topbiomedical.com . We thank you for your support and visits to our biomedical website and expect your future visits to our new address www.topbiomedical.com

Wednesday, 12 August 2009

DOWNLOAD BIOMEDICAL CAREER EBOOK AND VIDEO

What exactly do biomedical engineers do? Or more precisely, what don’t biomedical engineers do? This 20-page booklet examines exciting careers in biomedical engineering, details educational pathways and course requirements, and describes options for students looking to gain some firsthand experience in the field.

Click here to download Designing a Career in Biomedical Engineering.

BIOMEDICAL VIDEO

This 20-minute video describes the emerging field of biomedical bngineering from an industry perspective.

Click here to download the Biomedical engineering video.

Sunday, 28 September 2008

BIOMEDICAL ENGINEERING FROM THE QURAN

Friday, 22 June 2007

DISCIPLINE OF BIOMEDICAL ENGINEERING

1. TRANSPORT PHENOMENA
To monitor, measure, and model biochemical processes

2. BIOMECHANICS
Study of static and fluid mechanics associated with physiologic systems

3. BIOMATERIALS
Design and development of bioimplantable materials . Examples, Catheters, guide wires, Pacemakers, Heart valves etc.
UrinaryCatheter

biomaterials in bloodstream
(CLICK TO ENLARGE)


4. BIOSENSORS
Detection of Biologic events and their conversion to electrical signals

5. PHYSIOLOGIC MODELING, SIMULATION & CONTROL
Use of computer simulations to develop an understanding of physiologic relationships

6. BIOMEDICAL INSTRUMENTATION
To monitor and measure physiologic events; involves development of biosensors

7. MEDICAL & BIOLOGIC ANALYSIS
To detect, classify, and analyze bioelectric signals

8. REHABILITATION ENGINEERING
Design and development of therapeutic and rehabilitation devices and procedures

9. PROSTHETIC DEVICES & ARTIFICIAL ORGANS
Design and development of devices for replacement or augmentation of bodily function

artificial heart

(TOTAL ARTIFICIAL HEART)

10. MEDICAL INFORMATICS
Of patient-related data, interpret results and assist in clinical decision making, including expert systems and neural networks

11. MEDICAL IMAGING
To provide graphic displays of anatomic detail and physiologic function

rib_x-ray
(X-RAY IMAGE OF HUMAN RIBS)

12. BIOTECHNOLOGY
To create and modify biologic material for beneficial ends, include tissue engineering

13. CLINICAL ENGINEERING
Design and development of clinically related facilities, devices, systems, and procedures

14. BIOLOGIC EFFECTS OF ELECTROMAGNETIC FIELDS
Study of the effects of electromagnetic fields on biologic tissue

BIOMEDICAL BOOKS

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