Open Access. Powered by Scholars. Published by Universities.®
Biomedical Devices and Instrumentation Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Institution
-
- Purdue University (10)
- California Polytechnic State University, San Luis Obispo (8)
- City University of New York (CUNY) (6)
- Kettering University (4)
- University of Kentucky (4)
-
- Marquette University (3)
- Technological University Dublin (3)
- University of Arkansas, Fayetteville (3)
- University of Connecticut (3)
- Virginia Commonwealth University (3)
- West Virginia University (3)
- Southern Methodist University (2)
- The University of Southern Mississippi (2)
- University of Malaya (2)
- American University in Cairo (1)
- Brigham Young University (1)
- California State University, San Bernardino (1)
- Clemson University (1)
- Dartmouth College (1)
- Grand Valley State University (1)
- Kennesaw State University (1)
- Liberty University (1)
- Louisiana State University (1)
- New Jersey Institute of Technology (1)
- Nova Southeastern University (1)
- Old Dominion University (1)
- Tashkent State Technical University (1)
- The University of Akron (1)
- Tower Health (1)
- University at Albany, State University of New York (1)
- Keyword
-
- Neuromodulation (5)
- EEG (4)
- Stroke (4)
- Machine Learning (3)
- Bioengineering and Biomedical Engineering (2)
-
- Biomedical Engineering (2)
- Biomedical engineering (2)
- Biophysics (2)
- Biopotential (2)
- Biopotential recording (2)
- Brain Stimulation (2)
- Chronic Pain (2)
- Connectivity (2)
- ECG (2)
- EKG (2)
- EMG (2)
- Electrical Stimulation (2)
- Electrophysiology (2)
- Eye movement (2)
- FEA (2)
- Machine learning (2)
- Mechanical Engineering (2)
- Nerve stimulation (2)
- Neuroscience (2)
- Pain (2)
- Polyimide (2)
- Rehabilitation (2)
- Sensors (2)
- Spinal Cord Injury (2)
- Spinal cord injury (2)
- Publication Year
- Publication
-
- The Summer Undergraduate Research Fellowship (SURF) Symposium (10)
- Master's Theses (9)
- Dissertations and Theses (6)
- Mechanical Engineering Patents (4)
- Theses and Dissertations--Biomedical Engineering (4)
-
- Graduate Theses, Dissertations, and Problem Reports (ETD) (3)
- Theses and Dissertations (3)
- Conference Papers (2)
- Dissertations (1934 -) (2)
- Electronic Theses and Dissertations (2)
- Graduate Theses and Dissertations (2)
- Honors Scholar Theses (2)
- Student Works (2020-2029) (2)
- All Theses (1)
- Biomedical Engineering (1)
- Biomedical Engineering Faculty Publications and Presentations (1)
- Biomedical Engineering Western Regional Conference (1)
- Center for Bioelectronics Publications (1)
- Chemical Technology, Control and Management (1)
- Communications of the IIMA (1)
- Dartmouth College Ph.D Dissertations (1)
- Department of Engineering Mechanics: Dissertations, Theses, and Student Research (1)
- Dissertations (1)
- Doctoral (1)
- Electronic Theses & Dissertations (2024 - present) (1)
- HCA-NSU MD Research Day (1)
- Honors Theses (1)
- Honors Theses and Capstones (1)
- LSU Doctoral Dissertations (1)
- Master's Theses (2009 -) (1)
- Publication Type
- File Type
Articles 61 - 77 of 77
Full-Text Articles in Biomedical Devices and Instrumentation
An Implantable Device To Regulate Urination Through Deep Brain Stimulation, Jesse E. Bucksot, Muhammad A. Arafat, Pedro Irazoqui
An Implantable Device To Regulate Urination Through Deep Brain Stimulation, Jesse E. Bucksot, Muhammad A. Arafat, Pedro Irazoqui
The Summer Undergraduate Research Fellowship (SURF) Symposium
Urinary Incontinence (UI) is a disease in which patients lose control of their bladder. It is particularly common in elderly women having a prevalence of as much as 30% to 50% [1]. Many of these patients are left without successful treatment. A recent study has shown a new option for treatment that consists of deep brain stimulation (DBS) at a site known as the periaqueductal gray (PAG) [2, 3]. To test the effectiveness of this treatment, chronic stimulation of the PAG should be used in animals to see if it can reliably prevent micturition in the long term. A device …
Implantable Device For Wireless Regulation Of The Bladder Through Pelvic Nerve Stimulation, Kelsey C. Bayer, Chris Quinkert, Pedro Irazoqui
Implantable Device For Wireless Regulation Of The Bladder Through Pelvic Nerve Stimulation, Kelsey C. Bayer, Chris Quinkert, Pedro Irazoqui
The Summer Undergraduate Research Fellowship (SURF) Symposium
Urinary incontinence (UI) is the involuntarily urination that usually effects older people or is the result of an injury. UI affects more than eleven million people and the cost of incontinence management in the United States in 2000 was $19.5 billion. Where conventional physical therapies have failed, pelvic nerve stimulation is a promising form of regulating the bladder long term. Piezoresistive pressure sensors consist of two variable resistance values and two known resistance values that are represented on a daughterboard. This unknown resistance represents the change in pressure. The filling and voiding of the bladder was characterized through acute surgeries. …
Method And Apparatus For Treating Centralized Pain, Jeffrey Hargrove
Method And Apparatus For Treating Centralized Pain, Jeffrey Hargrove
Mechanical Engineering Patents
A method for alleviating centralized pain in human subjects includes assessing the brain of a subject suffering from pain, diagnosing abnormal brain function associated with centralized pain, locating at least one area of abnormal brain function associated with the centralized pain, and alleviating the abnormal brain function by applying a cortical stimulation signal to tissues corresponding to the at least one area of abnormal brain function.
Design And Creation Of A Device To Induce Vergence Eye Movements, Jacob B. Jaminet, Paul A. Wetzel
Design And Creation Of A Device To Induce Vergence Eye Movements, Jacob B. Jaminet, Paul A. Wetzel
Undergraduate Research Posters
Automated eye-tracking systems can detect and analyze eye movements as a means to accurately diagnose more than 20 neurological diseases including mild traumatic brain injury. Mild traumatic brain injury is an occurrence of injury to the head resulting from blunt trauma or from acceleration or deceleration forces. Eye movement refers to the voluntary or involuntary movement of the eyes, helping in acquiring, fixating and tracking visual stimuli. There are three types of voluntary eye movement to track objects: smooth pursuit, vergence shifts and saccades. Vergence shifts are eye movements where the eyes move in opposite directions: moving to the midline …
Development Of A Heart Rate Variability Measurement System Using Embedded Electronics, Naresh Kumar Velmurugan
Development Of A Heart Rate Variability Measurement System Using Embedded Electronics, Naresh Kumar Velmurugan
Graduate Theses and Dissertations
Recent advances in embedded electronics have a remarkable influence on the health care system. One of the most important applications is to monitor the health care of the patients at anytime and anyplace. In the last two decades, many researchers have focused mainly on heart rate variability (HRV) measurements. Patient's heart rate variability should be continuously monitored to help them in case of emergency. Under these circumstances, patients are required to have a HRV measuring kit for a constant observation.
The proposed project focuses on the development of a heart rate variability measurement system with the use of embedded electronics. …
Cutaneous Electrode Positioning, Jeffrey Hargrove, Susan R. Briggs
Cutaneous Electrode Positioning, Jeffrey Hargrove, Susan R. Briggs
Mechanical Engineering Patents
A device and method for positioning a cutaneous electrode for delivery of electrical stimulation to a subject's head. A harness is worn on a subject's head with a first band of the harness worn in a closed loop around the subject's head and around a desired contact location on the subject's head. A tensioning strap of the harness is worn across the desired contact location and connected at spaced-apart attachment locations of the strap to spaced-apart attachment locations of the harness such that an electrode disposed over the desired contact location on the subject's head is held in place by …
Medical Applications Of Mrc, Kyle Thackston, Henry Mei, Pedro Irazoqui
Medical Applications Of Mrc, Kyle Thackston, Henry Mei, Pedro Irazoqui
The Summer Undergraduate Research Fellowship (SURF) Symposium
Consistent powering is a limiting reagent for many medical implants and sensors. Powering in-vivo devices in animal studies requires either transcutaneous wiring (limiting mobility and increasing the chance of infection) or an implanted battery (limited lifetime and limits size of device). Wireless power transfer (WPT) would be able to overcome these challenges and permit the use of more advanced implantable devices in a research setting. Magnetic resonance coupling (MRC), an advanced form of inductive charging, allows good transfer efficiencies over significant air gaps, but works best a specific location and frequency, limiting mobility in animal studies. Using band-pass filter theory, …
Brain-Related Chronic Pain Disorder Treatment Method And Apparatus, Jeffrey Hargrove, Robert M. Ford, Buckley D. Beranek
Brain-Related Chronic Pain Disorder Treatment Method And Apparatus, Jeffrey Hargrove, Robert M. Ford, Buckley D. Beranek
Mechanical Engineering Patents
A method for treating brain-related chronic pain disorders in human subjects includes assessing the brain function of a subject suffering from chronic pain, diagnosing a chronic pain-related abnormal brain condition, and mitigating the abnormal brain activity by applying an electrical stimulation signal to tissues corresponding to at least one area of abnormal brain activity.
Dynamic Balance Control During Treadmill Walking In Chronic Stroke Survivors, Eric Richard Walker
Dynamic Balance Control During Treadmill Walking In Chronic Stroke Survivors, Eric Richard Walker
Dissertations (1934 -)
Maintaining dynamic balance is an important component of walking function that is likely impaired in chronic stroke survivors, evidenced by an increased prevalence of falls. Dynamic balance control requires maintaining the center of mass (COM) within the base of support during movement. During walking, dynamic balance control is achieved largely by modifying foot placement to adjust the base of support. However, chronic stroke survivors have difficulty with both precision control of foot placement, as well as reduced control of COM movement. The objective of this dissertation was to characterize dynamic balance control strategies during walking in chronic stroke survivors. Additionally, …
Multimodal Wearable Sensors For Human-Machine Interfaces, Mark Nolan
Multimodal Wearable Sensors For Human-Machine Interfaces, Mark Nolan
Doctoral
Certain areas of the body, such as the hands, eyes and organs of speech production, provide high-bandwidth information channels from the conscious mind to the outside world. The objective of this research was to develop an innovative wearable sensor device that records signals from these areas more conveniently than has previously been possible, so that they can be harnessed for communication. A novel bioelectrical and biomechanical sensing device, the wearable endogenous biosignal sensor (WEBS), was developed and tested in various communication and clinical measurement applications.
One ground-breaking feature of the WEBS system is that it digitises biopotentials almost …
Tracking Points On A Pacing Lead In A Beating Heart, Avinash Ramesh Varma
Tracking Points On A Pacing Lead In A Beating Heart, Avinash Ramesh Varma
Master's Theses
Heart failure is a common condition during which the pumping action of the heart is affected because the heart does not contract or relax properly. Heart failure affects about 5 million Americans, with 550,000 new cases diagnosed each year. Cardiac resynchronization therapy (CRT) is used to treat symptoms and other complications associated with a heart failure. While performing CRT, Implantation of a pacing lead in the left ventricle of the heart is a very challenging surgical procedure performed with fluoroscopy. The target location is often difficult to reach through the tortuous coronary venous anatomy, which varies greatly among individuals. Placement …
Method And Apparatus For Utilizing Amplitude-Modulated Pulse-Width Modulation Signals For Neurostimulation And Treatment Of Neurological Disorders Using Electrical Stimulation, Jeffrey Hargrove, Theodore Stokes, Mary L. Esty
Method And Apparatus For Utilizing Amplitude-Modulated Pulse-Width Modulation Signals For Neurostimulation And Treatment Of Neurological Disorders Using Electrical Stimulation, Jeffrey Hargrove, Theodore Stokes, Mary L. Esty
Mechanical Engineering Patents
A computing device-controlled system is described for the generation of amplitude-modulated pulse-width modulation (AMPWM) signals for use in treating neurological dysfunction via cranial neurostimulation, where the AMPWM signal is specifically designed to minimize the electrical impedance of the tissues of the head. A low-frequency carrier signal is determined for the AMPWM signal by measuring EEG activity at a reference site or sites, generally corresponding with the location of suspected brain dysfunction. Carrier signal frequency is variably related to critical frequency components of the EEG power spectral density, determined from statistical analysis of amplitudes and variability, and dynamically changed as a …
Effect Of Extracellular Matrix (Ecm) Protein Micropatterns On The Behavior Of Human Neuroblastoma Cells, Ishwari Poudel
Effect Of Extracellular Matrix (Ecm) Protein Micropatterns On The Behavior Of Human Neuroblastoma Cells, Ishwari Poudel
Department of Engineering Mechanics: Dissertations, Theses, and Student Research
Recent advances in patterning techniques and emerging surface microtechnologies have allowed cell micropatterning to control spatial location of the cells on a surface as well as cell shape, attachment area, and number of contacting neighbor cells. These parameters play important roles in cell cellular behaviors. Cell micropatterning has thus become one of the most important strategies for biomedical applications, such as, tissue engineering, diagnostic immunoassays, lab-on-chip devices, bio-sensing, etc., and cell biology studies as well. For neuronal cells, there have been attempts to distribute neuronal cells on specific patterns to control cell-to-cell interaction. However, there have been very limited understanding …
Novel Bioelectrical Measurement Using A Digital Biopotential Monode, Mark Nolan, Edward Burke, Eugene Coyle
Novel Bioelectrical Measurement Using A Digital Biopotential Monode, Mark Nolan, Edward Burke, Eugene Coyle
Conference Papers
In conventional biopotential recording, two or more electrodes are placed on the body. A unipolar lead records the time-varying electrical potential at a single point (relative to a reference potential) via one signal electrode. A bipolar lead records the time-varying potential difference between two points via two signal electrodes. In each case, the signal electrodes are connected to high impedance amplifier inputs, while an additional electrode provides a low-impedance path between the amplifier and human subject. Bipolar leads are usually preferred since interference appearing at both signal electrodes can be eliminated using an instrumentation amplifier with high CMRR. A drawback …
The Electrical Properties Of Human Tissue For The Diagnosis And Treatment Of Melanoma Skin Cancer, Glenn Cameron Stante
The Electrical Properties Of Human Tissue For The Diagnosis And Treatment Of Melanoma Skin Cancer, Glenn Cameron Stante
Master's Theses
This thesis discusses the research, experimental methods, and data gathered for the investigation of a novel method for the diagnosis of melanoma skin cancer. First, a background about human skin tissue is presented. Then, a detailed description of melanoma along with current diagnosis techniques and treatment options are presented. In the experimental methods, the electrical properties of several types of tissue were analyzed, the purpose of which was to discover if a tissue type can be distinguished by its electrical properties alone. This would allow for the diagnosis of melanoma to be done by examining the electrical properties of the …
An Investigation Of The Use Of A High Resolution Adc As A Digital Biopotential Amplifier, Damon Berry, Frank Duignan, Richard Hayes
An Investigation Of The Use Of A High Resolution Adc As A Digital Biopotential Amplifier, Damon Berry, Frank Duignan, Richard Hayes
Conference Papers
Sigma delta analogue to digital converters have been used in many signal processing applications including some commercially available systems for sampling of bio-signals Bio-potential amplifiers have traditionally utilised specialised highquality analogue components to amplify bio-signals.
The central aim of this work is to investigate the benefits of using high-resolution sigma delta conversion as a digital amplification stage in the signal path of a bio-potential amplifier. A number of system arrangements specific to bio-potential measurement are presented and discussed. These arrangements are designed to use the high resolution capacity of the sigma delta converter in different ways, providing different benefits. To …
Time-Frequency Analysis Of Intracardiac Electrogram, Erik Brockman
Time-Frequency Analysis Of Intracardiac Electrogram, Erik Brockman
Master's Theses
The Cardiac Rhythm Management Division of St. Jude Medical specializes in the development of implantable cardioverter defibrillators that improve the quality of life for patients diagnosed with a variety of cardiac arrhythmias, especially for patients prone to sudden cardiac death. With the goal to improve detection of cardiac arrhythmias, this study explored the value in time-frequency analysis of intracardiac electrogram in four steps. The first two steps characterized, in the frequency domain, the waveforms that construct the cardiac cycle. The third step developed a new algorithm that putatively provides the least computationally expensive way to identifying cardiac waveforms in the …