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Biomedical subjects

K Arabi

Publications and source records attributed to K Arabi.

6 recordsLinked to original sources

Electronic design of a multichannel programmable implant for neuromuscular electrical stimulation.

An advanced stimulator for neuromuscular stimulation of spinal cord injured patients has been developed. The stimulator is externally controlled and powered by a single encoded radio frequency carrier and has four independently controlled bipolar stimulation channels. It offers a wide range of reprogrammability and flexibility, and can be used in many neuromuscular electrical stimulation applications. The implant system is adaptable to patient's needs and to future developments in stimulation algorithms by reprogramming the stimulator. The stimulator is capable of generating a wide range of stimulation waveforms and stimulation patterns and therefore is very suitable for selective nerve stimulation techniques. The reliability of the implant has been increased by using a forward error detection and correction communication protocol and by designing the chip for structural testability based on scan test approach. Implemented testability scheme makes it possible to verify the complete functionality of the implant before and after implantation. The stimulators architecture is designed to be modular and therefore its different blocks can be reused as standard building blocks in the design and implementation of other neuromuscular prostheses. Design for low-power techniques have also been employed to reduce power consumption of the electronic circuitry.

Computers↗

Reduction of bladder outlet resistance by selective sacral root stimulation using high-frequency blockade in dogs: an acute study.

Detrusor-sphincter dyssynergia is a main problem in supra-sacral spinal cord injured patients. The problem of high pressure voiding is also encountered in most electrically induced micturition because of the mixed somatic and autonomic fiber components of the ventral sacral root. We studied the effect of selective high-frequency blockade at the sacral nerve root in an acute spinalized canine model to prevent the deleterious consequences associated with the elevated bladder outlet resistance. A new functional electrical stimulation system which can generate one signal composed of two independent adjustable current waveforms delivered via a single bipolar electrode was used in 11 dogs. The selectivity resulted from the inhibition of the sphincteric somatic innervation by a high frequency pulse while the low frequency stimuli activated the bladder autonomic fibers. Bladder and urethral pressure as well as electromyograms of external urethral sphincter were recorded to determine whether selective high-frequency blockade occurred. Our experiments showed that we were able to achieve selective blockade of the external urethral sphincter during the simultaneous detrusor stimulation, thus obtaining a more physiologic voiding.

Animals↗

Implantable volume monitor and miniaturized stimulator dedicated to bladder control.

This paper describes a new miniaturized implantable bladder controller that is composed of 4 main parts: a volume monitoring device based on the tomography approach, a fully programmable miniaturized central processor and stimulator, a bidirectional data and power link, and an external controller. The proposed system is intended to restore both normal bladder functions (retention and voiding) to spinal cord injured patients. The system contains a mixed-signal (analog/digital) feedback loop to command the bladder functions through neuromuscular stimulation techniques. The implantable circuitry is powered by a single encoded radiofrequency carried and may have up to 8 independently controlled monopolar (4 bipolar) channels. The microstimulator is able to generate a wide range of stimulation patterns, including selective stimulation waveforms. In addition, an optical link transmits the state of the implant and volume monitoring results to the external controller.

Computer Simulation↗

Implantable multiprogrammable microstimulator dedicated to bladder control.

An implantable multiprogrammable microstimulator that is intended to restore normal bladder functions (retention and incontinence) to spinal cord injured patients is presented. The implantable microstimulator circuitry is externally controlled and is powered by a single encoded radio frequency carrier and has four bipolar (eight monopolar) independently controlled channels. It offers a higher degree of reprogrammability and flexibility and can be used in any neuromuscular applications. The implant system is adaptable to the patient's needs and to future developments in stimulation algorithms, without changing the implant. Features of the microstimulator include its capabilities to generate a wide range of waveforms and to combine up to four different programmable frequencies in each wave train. By using a forward error detection and correction communication protocol, the reliability of the implant is increased. The chip has been designed for structural testability by means of a scan-based test approach and uses circuit techniques to reduce power consumption and ensure long-term stability.

Electric Stimulation↗

Spinal brucellosis.

The findings in 44 patients with back pain and brucellosis are described. Radiological changes tended to occur in older patients with a longer duration of disease. The younger patients more often experienced an acute arthritis with sacroiliitis resembling a reactive disease. Bone scanning was more sensitive than radiographs, particularly in detecting acute sacroiliitis and hip involvement. The lumbar spine was the most frequently involved site although no part of the spine was spared. Extensive destruction of a vertebral body with little involvement of the adjacent vertebrae, lower lumbar spondylolysis and spondylolisthesis, and discitis with calcification were striking radiological findings hitherto undescribed in brucellosis. Computerized axial tomography (CAT) scanning revealed vertebral-arch destruction in three cases of spondylolisthesis. Circumferential sclerosis of the vertebral bodies was another CAT-scan finding.

Adult↗

Congenital spinal extradural cyst (lateral meningocele) simulating acute transverse myelitis. Report of a case.

Congenital spinal extradural cysts are rare and may be the cause of acute paraplegia. In their clinical features they closely resemble acute transverse myelitis. Immediate decompression of the spinal cord and removal of the cyst may lead to restoration of normal function. Myelography differentiates these two conditions by showing a cyst in communication with the spinal canal. This investigation must be mandatory.

Acute Disease↗