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Full-Text Articles in Engineering

โครงเนื้อเยื่อกินได้ไร้ผลิตภัณฑ์จากสัตว์สำหรับเพาะเลี้ยงเนื้อเทียม : อัลจิเนต/อะกาโรส/คาร์บอกซีเมทิลเซลลูโลส, เกรียงไกร เจษฎางกูร Jan 2023

โครงเนื้อเยื่อกินได้ไร้ผลิตภัณฑ์จากสัตว์สำหรับเพาะเลี้ยงเนื้อเทียม : อัลจิเนต/อะกาโรส/คาร์บอกซีเมทิลเซลลูโลส, เกรียงไกร เจษฎางกูร

Chulalongkorn University Theses and Dissertations (Chula ETD)

การเพาะเลี้ยงเนื้อสัตว์เป็นแนวทางในการลดทรัพยากรที่ใช้ในการผลิตเนื้อสัตว์แบบดั้งเดิม ซึ่งไม่ต้องฆ่าสัตว์และลดผลิตภัณฑ์ที่ไม่ต้องการ วิธีกระบวนการนี้ต้องการโครงเนื้อเยื่อ 3 มิติ เพื่อให้เซลล์สามารถยึดติดบนโครงสร้างและขึ้นรูปเป็นก้อนเนื้อได้ นอกจากนั้น วัสดุของโครงเนื้อเยื่อต้องไม่ทำจากสัตว์อีกด้วย วัตถุประสงค์ของการศึกษานี้เพื่อตรวจสอบสมบัติเชิงกล รีโอโลยี ความเข้ากันได้ทางชีวภาพ และการปรับปรุงพื้นผิวสำหรับการยึดเกาะของเซลล์ของไฮโดรเจล 2% w/v อัลจิเนต, 0.8% w/v อะกาโรส และ 1.5% w/v คาร์บอกซีเมทิลเซลลูโลส โครงสร้าง 3 มิติถูกพิมพ์ด้วยเงื่อนไขการพิมพ์ที่เหมาะสม การทดสอบทางรีโอโลยีและความสามารถการพิมพ์แสดงถึงไฮโดรเจลมีพฤติกรรมของของไหลที่ไม่ใช่แบบนิวโทเนียน ซึ่งเหมาะสำหรับวิธีการพิมพ์แบบอัดรีดสำหรับขึ้นรูปสามมิติ ผลการทดลองแสดงว่าไฮโดรเจลมีค่าความสามารถการพิมพ์สูงสำหรับระยะห่างระหว่างเส้นภายในโครงสร้างที่แตกต่างกัน การทดสอบรับแรงกดของชิ้นงานแสดงถึงเนื้อสัมผัสของไฮโดรเจลว่ามีความคล้ายคลึงกับความนุ่มของเนื้อหมูและเนื้อวัว ไฮโดรเจลมีอัตราการละลายต่ำในสภาวะการเพาะเลี้ยงเซลล์ การทดสอบความเป็นพิษต่อเซลล์บ่งชี้ว่าไฮโดรเจลไม่แสดงความเป็นพิษต่อเซลล์และไม่ส่งผลต่อการเพิ่มจำนวนเซลล์ ไฮโดรเจลต้องการการปรับเปลี่ยนพื้นผิวสำหรับการยึดเกาะของเซลล์เนื่องจากวัสดุไม่สนับสนุนการเจริญเติบโตและการยึดเกาะของเซลล์ ผลการทดลองแสดงว่าอัลจิเนตปรับปรุงเปปไทด์ RGD มีการยึดเกาะของเซลล์ต่ำกับทั้ง L929 และเซลล์ต้นกำเนิดกล้ามเนื้อหมู ในส่วนของการเคลือบสารละลาย Poly-L-ornithine แสดงผลลัพธ์การยึดเกาะของเซลล์ที่ดีกับ L929 แต่มีผลที่ไม่ดีสำหรับเซลล์ต้นกำเนิดกล้ามเนื้อหมู


Development Of A Vr-Based System For Detecting Strabismus In Patients With Refractive Errors, Salisa Buapong Jan 2023

Development Of A Vr-Based System For Detecting Strabismus In Patients With Refractive Errors, Salisa Buapong

Chulalongkorn University Theses and Dissertations (Chula ETD)

Strabismus is an ophthalmic condition affecting approximately 2% to 5% of the global population, with a pediatric prevalence rate of about 2% to 4%. If left uncorrected and untreated for an extended period, it can lead to impairment of binocular vision and eventual vision loss. Thus, early detection and correction of ocular deviations are crucial in mitigating these risks. However, primary clinical tests, such as the Alternate Prism Cover Test (APCT) and the Hirschberg Test (HT), have several limitations. These include reliance on operator skills and experience, prolonged examination time, and an unbalanced range of prism diopters. Furthermore, previous studies …


Silk Fibroin-Platelet Rich Plasma Injectable Hydrogel With Controlled-Release Of Growth Factors For Knee Osteoarthritis, Suvinai Jiraboonsri Jan 2023

Silk Fibroin-Platelet Rich Plasma Injectable Hydrogel With Controlled-Release Of Growth Factors For Knee Osteoarthritis, Suvinai Jiraboonsri

Chulalongkorn University Theses and Dissertations (Chula ETD)

Currently, there is no treatment that can stop the progression of osteoarthritis (OA). Platelet Rich Plasma (PRP) is a promising therapy. However, significant challenges remain for the effective use of PRP in OA treatment, namely its burst-like release of growth factors and its short-acting time due to rapid synovial clearance. Silk fibroin is a safe biomaterial for drug delivery system. Therefore, in this study, Silk-Fibroin-Platelet-Rich Plasma injectable hydrogels with the ability to controllably release growth factors were developed and characterised. Two silk fibroin-platelet-rich-plasma (SF-PRP) hydrogel with silk fibroin concentrations of 1% w/v (1% SF-PRP) and 2% w/v (2% SF-PRP) were …


Aortic Remodeling Kinetics In Response To Coarctation-Induced Mechanical Perturbations, Arash Ghorbannia, Mehdi Maadooliat, Ronald K. Woods, Said H. Audi, Brandon J. Tefft, Claudio Chiastra, El Sayed H. Ibrahim, John F. Ladisa Jr. Jan 2023

Aortic Remodeling Kinetics In Response To Coarctation-Induced Mechanical Perturbations, Arash Ghorbannia, Mehdi Maadooliat, Ronald K. Woods, Said H. Audi, Brandon J. Tefft, Claudio Chiastra, El Sayed H. Ibrahim, John F. Ladisa Jr.

Biomedical Engineering Faculty Research and Publications

Background: Coarctation of the aorta (CoA; constriction of the proximal descending thoracic aorta) is among the most common congenital cardiovascular defects. Coarctation-induced mechanical perturbations trigger a cycle of mechano-transduction events leading to irreversible precursors of hypertension including arterial thickening, stiffening, and vasoactive dysfunction in proximal conduit arteries. This study sought to identify kinetics of the stress-mediated compensatory response leading to these alterations using a preclinical rabbit model of CoA.

Methods: A prior growth and remodeling (G&R) framework was reformulated and fit to empirical measurements from CoA rabbits classified into one control and nine CoA groups of various severities …


Utility And Usability Of Two Forms Of Supplemental Vibrotactile Kinesthetic Feedback For Enhancing Movement Accuracy And Efficiency In Goal-Directed Reaching, Ramsey K. Rayes, Rachel N. Mazorow, Leigh A. Mrotek, Robert A. Scheidt Jan 2023

Utility And Usability Of Two Forms Of Supplemental Vibrotactile Kinesthetic Feedback For Enhancing Movement Accuracy And Efficiency In Goal-Directed Reaching, Ramsey K. Rayes, Rachel N. Mazorow, Leigh A. Mrotek, Robert A. Scheidt

Biomedical Engineering Faculty Research and Publications

Recent advances in wearable sensors and computing have made possible the development of novel sensory augmentation technologies that promise to enhance human motor performance and quality of life in a wide range of applications. We compared the objective utility and subjective user experience for two biologically inspired ways to encode movement-related information into supplemental feedback for the real-time control of goal-directed reaching in healthy, neurologically intact adults. One encoding scheme mimicked visual feedback encoding by converting real-time hand position in a Cartesian frame of reference into supplemental kinesthetic feedback provided by a vibrotactile display attached to the non-moving arm and …


When Intercepting Moving Targets, Mid-Movement Error Corrections Reflect Distinct Responses To Visual And Haptic Perturbations, Pablo Gonzalez Polanco, Leigh A. Mrotek, Kristy A. Nielson, Scott A. Beardsley, Robert A. Scheidt Jan 2023

When Intercepting Moving Targets, Mid-Movement Error Corrections Reflect Distinct Responses To Visual And Haptic Perturbations, Pablo Gonzalez Polanco, Leigh A. Mrotek, Kristy A. Nielson, Scott A. Beardsley, Robert A. Scheidt

Biomedical Engineering Faculty Research and Publications

We examined a key aspect of sensorimotor skill: the capability to correct performance errors that arise mid-movement. Participants grasped the handle of a robot that imposed a nominal viscous resistance to hand movement. They watched a target move pseudo-randomly just above the horizontal plane of hand motion and initiated quick interception movements when cued. On some trials, the robot's viscosity or the target's speed changed without warning coincident with the GO cue. We fit a sum-of-Gaussians model to mechanical power measured at the handle to determine the number, magnitude, and relative timing of submovements occurring in each interception attempt. When …


Modeling Of Transport In Anatomic Respiratory Airways: Applications In Targeted Drug Delivery And Airborne Pathogenic Transmissions, Mohammad Mehedi Hasan Akash Jan 2023

Modeling Of Transport In Anatomic Respiratory Airways: Applications In Targeted Drug Delivery And Airborne Pathogenic Transmissions, Mohammad Mehedi Hasan Akash

Electronic Theses and Dissertations

This thesis aims to explore the potential of improving the efficacy of drugs for treatment of viral infections by targeting the nasopharynx, which is commonly the first site of infection for many viral pathogens. Currently, intranasal sprays are used, but the standard protocol (“Current Use” or CU) results in suboptimal drug deposition at the nasopharynx. To address this issue, an “Improved Use” or, IU protocol has been proposed, which involves pointing the spray bottle at a shallower angle and aiming slightly towards the cheeks. The IU delivery is also robust to perturbations in spray direction, which highlights the practical utility …


Ultra-Low Intensity Post-Pulse Affects Cellular Responses Caused By Nanosecond Pulsed Electric Fields, Kamal Asadipour, Carol Zhou, Vincent Yi, Stephen J. Beebe, Shu Xiao Jan 2023

Ultra-Low Intensity Post-Pulse Affects Cellular Responses Caused By Nanosecond Pulsed Electric Fields, Kamal Asadipour, Carol Zhou, Vincent Yi, Stephen J. Beebe, Shu Xiao

Electrical & Computer Engineering Faculty Publications

High-intensity nanosecond pulse electric fields (nsPEF) can preferentially induce various effects, most notably regulated cell death and tumor elimination. These effects have almost exclusively been shown to be associated with nsPEF waveforms defined by pulse duration, rise time, amplitude (electric field), and pulse number. Other factors, such as low-intensity post-pulse waveform, have been completely overlooked. In this study, we show that post-pulse waveforms can alter the cell responses produced by the primary pulse waveform and can even elicit unique cellular responses, despite the primary pulse waveform being nearly identical. We employed two commonly used pulse generator designs, namely the Blumlein …


On The Chronological Understanding Of The Homogeneous Dielectric Barrier Discharge, Xinpei Lu, Zhi Fang, Dong Dai, Tao Shao, Feng Liu, Cheng Zhang, Dawei Liu, Chunqi Jiang Jan 2023

On The Chronological Understanding Of The Homogeneous Dielectric Barrier Discharge, Xinpei Lu, Zhi Fang, Dong Dai, Tao Shao, Feng Liu, Cheng Zhang, Dawei Liu, Chunqi Jiang

Electrical & Computer Engineering Faculty Publications

Dielectric barrier discharges (DBD) are widely utilised non-equilibrium atmospheric pressure plasmas with a diverse range of applications, such as material processing, surface treatment, light sources, pollution control, and medicine. Over the course of several decades, extensive research has been dedicated to the generation of homogeneous DBD (H-DBD), focussing on understanding the transition from H-DBD to filamentary DBD and exploring strategies to create and sustain H-DBD. This paper first discusses the influence of various parameters on DBD, including gas flow, dielectric material, surface conductivity, and mesh electrode. Secondly, a chronological literature review is presented, highlighting the development of H-DBD and the …


Patient-Specific Analysis Of Aortic Hemodynamics And Wall Shear Stresses In Patients Undergoing Pediatric Bariatric Surgery Using 2d Phase-Contrast Mri, Oluwaferanmi S. Akande, Joao Soares, Nathan Hargan, Dr. Uyen Truong, Haeung Kang, David Lanning Jan 2023

Patient-Specific Analysis Of Aortic Hemodynamics And Wall Shear Stresses In Patients Undergoing Pediatric Bariatric Surgery Using 2d Phase-Contrast Mri, Oluwaferanmi S. Akande, Joao Soares, Nathan Hargan, Dr. Uyen Truong, Haeung Kang, David Lanning

UROP Posters

Patient-Specific Analysis of Aortic Hemodynamics and Wall Shear Stresses in Patients Undergoing Pediatric Bariatric Surgery using 2D Phase-Contrast MRI

Feranmi Akande1 Nathan Hargan2 Haesung Kang3 David Lanning3 Uyen Truong4 João S. Soares1

1 Department of Biomedical Engineering, College of Engineering, Virginia Commonwealth University

2 Department of Mechanical & Nuclear Engineering, College of Engineering, Virginia Commonwealth University

3 Department of Cardiology, Children’s Hospital of Richmond, Virginia Commonwealth University

Introduction: Severe obesity among today’s youth is a rising epidemic within the United States. Emerging research has linked childhood obesity with shortened life expectancy and early …


Impacts Of Diverse Inflammatory Stimuli On Neutrophil Behavior: Extracellular Vesicles, E-Cigarettes, And Nanoparticles, Hunter T. Snoderly Jan 2023

Impacts Of Diverse Inflammatory Stimuli On Neutrophil Behavior: Extracellular Vesicles, E-Cigarettes, And Nanoparticles, Hunter T. Snoderly

Graduate Theses, Dissertations, and Problem Reports (ETD)

Neutrophils are the body’s front-line defenders against foreign insult and are key players in a variety of inflammatory conditions. This body of work examines the role of neutrophils in promoting pathology in three distinct inflammatory contexts. In the pro-inflammatory state provoked by breast cancer, neutrophils decondense their nuclei and release cytotoxic web-like structures known as neutrophil extracellular traps (NETs). NETs form most commonly via histone modifications facilitated by the enzyme PAD4. NETs are known to be a harbinger of disease progression and promote metastasis through capture of circulating tumor cells. It was hypothesized that breast tumors release small particles known …


Advancing Prosthetic Design Using Neural And Mechanical Dynamics, Kacie E. Hanna Jan 2023

Advancing Prosthetic Design Using Neural And Mechanical Dynamics, Kacie E. Hanna

Graduate Theses, Dissertations, and Problem Reports (ETD)

Limb loss poses a significant challenge to mobility and the performance of daily activities. Currently, nearly half of the amputees using powered prosthetics abandon their device due to inadequate limb coordination and movement control abilities. In the healthy system, passive and neural dynamics facilitate the synchronized activation of muscles necessary for coordinated movement. However, in the amputee, the system is disrupted. The goal of this research is to use neural and mechanical dynamics to inform the design of prosthetic devices in order to restore intuitive control and coordinated limb movement.

The first aim of this research is to investigate neural …


An Investigation Of The Effect Of Cyclic Loading Of Bone On Osteocyte Processes Spanning Micro-Cracks As A Driver Of Targeted Remodelling Of Bone, Morgana Pires Afonso Shirsath Jan 2023

An Investigation Of The Effect Of Cyclic Loading Of Bone On Osteocyte Processes Spanning Micro-Cracks As A Driver Of Targeted Remodelling Of Bone, Morgana Pires Afonso Shirsath

Doctoral

Bone remodelling is essential to maintain and improve the quality of bones. This occurs with the action of specialised cells - osteoclasts and osteoblasts - which replace the old bone tissue with new in regions where damage has occurred. Osteocytes are responsible for signalling the presence of damage and trigger the bone remodelling response. According to the Scissors Model, the presence of micro-cracks causes rupture of the osteocyte processes by fatigue because of the repeated stretching resulting from the relative movement of micro-crack faces, when bone is subjected to cyclic loads.


Long-Range Aceo Phenomena In Microfluidic Channel, Diganta Dutta, Keifer Smith, Xavier Palmer Jan 2023

Long-Range Aceo Phenomena In Microfluidic Channel, Diganta Dutta, Keifer Smith, Xavier Palmer

Electrical & Computer Engineering Faculty Publications

Microfluidic devices are increasingly utilized in numerous industries, including that of medicine, for their abilities to pump and mix fluid at a microscale. Within these devices, microchannels paired with microelectrodes enable the mixing and transportation of ionized fluid. The ionization process charges the microchannel and manipulates the fluid with an electric field. Although complex in operation at the microscale, microchannels within microfluidic devices are easy to produce and economical. This paper uses simulations to convey helpful insights into the analysis of electrokinetic microfluidic device phenomena. The simulations in this paper use the Navier–Stokes and Poisson Nernst–Planck equations solved using COMSOL …


Improving The Stimulation Selectivity In The Human Cochlea By Strategic Selection Of The Current Return Electrode, Ozan Cakmak Dec 2022

Improving The Stimulation Selectivity In The Human Cochlea By Strategic Selection Of The Current Return Electrode, Ozan Cakmak

Dissertations

The hearing quality provided by cochlear implants are poorly predicted by computer simulations. A realistic cochlear anatomy is crucial for the accuracy of predictions. In this study, the standard multipolar stimulation paradigms are revisited and Rattay’s Activating Function is evaluated in a finite element model of a realistic cochlear geometry that is based on µ-CT images and a commercial lead. The stimulation thresholds across the cochlear fibers were investigated for monopolar, bipolar, tripolar, and a novel (distant) bipolar electrode configuration using an active compartmental nerve model based on Schwartz-Eikhof-Frijns membrane dynamics. The results suggest that skipping of the stimulation point …


A Novel Biomaterial Platform For Cardiac Tissue Engineering, Andrew House Dec 2022

A Novel Biomaterial Platform For Cardiac Tissue Engineering, Andrew House

Dissertations

Heart disease is one of the leading causes of death in the world. With a growing demand for in vitro cardiac models that can recapitulate the complex physiology of the cardiac tissue, there is a desire to create novel therapies and treatments. However, due to a lack of fundamental understanding of the heart's inflammatory response to myocardial infarction, the development of new therapies is both time consuming and costly. In this work, a novel approach to fabricating a dynamic hydrogel cardiac platform is reported. This platform better mimics the dynamic changes occurring in the native cardiac tissue microenvironment during cardiac …


Angiogenic Supports For Microvascular Engineering, Zain Siddiqui Dec 2022

Angiogenic Supports For Microvascular Engineering, Zain Siddiqui

Dissertations

Ischemic tissue disease is caused by a lack of circulation / blood supply to tissue. This can be treated by introducing a number of angiogenic (pro-blood vessel forming) factors into the tissue. This work presents strategies for ischemic tissue treatment utilizing a novel proangiogenic self-assembling peptide hydrogel platform. To demonstrate the utility of this platform, its use alone as an angiogenic therapeutic (both alone as a self-assembling hydrogel and with two-component systems), and its ability to vascularize implants is explored. Due to these angiogenic scaffolds demonstrating efficacy to regenerate microvasculature, this work evaluates diseases that can be treated by the …


Multipolymer Microsphere Delivery Of Sars-Cov-2 Antigens, Farah Shahjin, Milankumar Patel, Jatin Machhi, Jacob D. Cohen, Mohammad Ullah Nayan, Pravin Yeapuri, Chen Zhang, Emiko Waight, Mahmudul Hasan, Mai Mohamed Abdelmoaty, Prasanta K. Dash, You Zhou, Irene Andreu, Howard E. Gendelman, Bhavesh D. Kevadiya Dec 2022

Multipolymer Microsphere Delivery Of Sars-Cov-2 Antigens, Farah Shahjin, Milankumar Patel, Jatin Machhi, Jacob D. Cohen, Mohammad Ullah Nayan, Pravin Yeapuri, Chen Zhang, Emiko Waight, Mahmudul Hasan, Mai Mohamed Abdelmoaty, Prasanta K. Dash, You Zhou, Irene Andreu, Howard E. Gendelman, Bhavesh D. Kevadiya

Nebraska Center for Biotechnology: Faculty and Staff Publications

Effective antigen delivery facilitates antiviral vaccine success defined by effective immune protective re- sponses against viral exposures. To improve severe acute respiratory syndrome coronavirus-2 (SARS-CoV- 2) antigen delivery, a controlled biodegradable, stable, biocompatible, and nontoxic polymeric micro- sphere system was developed for chemically inactivated viral proteins. SARS-CoV-2 proteins encapsulated in polymeric microspheres induced robust antiviral immunity. The viral antigen-loaded microsphere sys- tem can preclude the need for repeat administrations, highlighting its potential as an effective vaccine.


Emulating Future Neurotechnology Using Magic, Jay A. Olson, Mariève Cyr, Despina Z. Artenie, Thomas Strandberg, Lars Hall, Matthew L. Tompkins, Amir Raz, Petter Johansson Dec 2022

Emulating Future Neurotechnology Using Magic, Jay A. Olson, Mariève Cyr, Despina Z. Artenie, Thomas Strandberg, Lars Hall, Matthew L. Tompkins, Amir Raz, Petter Johansson

Psychology Faculty Articles and Research

Recent developments in neuroscience and artificial intelligence have allowed machines to decode mental processes with growing accuracy. Neuroethicists have speculated that perfecting these technologies may result in reactions ranging from an invasion of privacy to an increase in self-understanding. Yet, evaluating these predictions is difficult given that people are poor at forecasting their reactions. To address this, we developed a paradigm using elements of performance magic to emulate future neurotechnologies. We led 59 participants to believe that a (sham) neurotechnological machine could infer their preferences, detect their errors, and reveal their deep-seated attitudes. The machine gave participants randomly assigned positive …


Chitosan Oligosaccharides As A Nanomaterial Platform: Biological Properties And Applications In The Biomedical And Pharmaceutical Fields, Muhamad Alif Razi Dec 2022

Chitosan Oligosaccharides As A Nanomaterial Platform: Biological Properties And Applications In The Biomedical And Pharmaceutical Fields, Muhamad Alif Razi

Makara Journal of Science

Chitosan oligosaccharides (COS) have been introduced as marine-derived biomaterials with potential health benefits and good water solubility properties. This study presents an overview of the promising nanomaterial platform for biomedical and pharmaceutical applications of COS. The health benefits of COS, primarily their antioxidant and protective effects, anti-inflammatory activity, antidiabetic properties, and cholesterol-lowering effects are discussed. Furthermore, the promising recent articles on specific topics such as drug delivery systems and nanobiomaterials, are highlighted


Advancing Fluorescent Contrast Agent Recovery Methods For Surgical Guidance Applications, Brook Kennedy Byrd Dec 2022

Advancing Fluorescent Contrast Agent Recovery Methods For Surgical Guidance Applications, Brook Kennedy Byrd

Dartmouth College Ph.D Dissertations

Fluorescence-guided surgery (FGS) utilizes fluorescent contrast agents and specialized optical instruments to assist surgeons in intraoperatively identifying tissue-specific characteristics, such as perfusion, malignancy, and molecular function. In doing so, FGS represents a powerful surgical navigation tool for solving clinical challenges not easily addressed by other conventional imaging methods. With growing translational efforts, major hurdles within the FGS field include: insufficient tools for understanding contrast agent uptake behaviors, the inability to image tissue beyond a couple millimeters, and lastly, performance limitations of currently-approved contrast agents in accurately and rapidly labeling disease. The developments presented within this thesis aim to address such …


Oxidized Fibrin Alginate Microbeads To Treat Vascular Calcification, Brittany Nichole Macha Dec 2022

Oxidized Fibrin Alginate Microbeads To Treat Vascular Calcification, Brittany Nichole Macha

Theses and Dissertations

Calcification is linked to a high prevalence of cardiovascular events and mortality due to arterial stiffness. Stiffening of the arteries in the case of medial calcification is due to hydroxyapatite mineral deposited in the artery thus leading to the loss of elastin. A possibility of removing this rogue mineral along the vessel walls could be the use of osteoclasts. Osteoclasts, a type of osteocyte, have the unique ability to absorb bone in the bone turnover process. It is proposed that in the future, osteoclasts be delivered to the site of mineralization through oxidized alginate-fibrin microbeads. Alginate hydrogels have proven great …


Development Of A Crosslinked Osteochondral Xenograft And A Collagen Stabilizing Intra-Articular Injection To Remediate Cartilage Focal Lesions To Prevent Osteoarthritis, Mark Lewis Mosher Dec 2022

Development Of A Crosslinked Osteochondral Xenograft And A Collagen Stabilizing Intra-Articular Injection To Remediate Cartilage Focal Lesions To Prevent Osteoarthritis, Mark Lewis Mosher

Theses and Dissertations

Osteoarthritis is one of the most common causes of disability in adults in America. It is a progressive and degenerative disease where the articular cartilage is broken down and lost from the surfaces of bones causing chronic pain and swelling in the joints, and currently has no cure. The most commonly osteoarthritis starts from a focal lesion on the cartilage surface, which will expand on the surface and downwards through the thickness of the tissue. The current gold standard for correcting cartilage focal lesions is the osteochondral autograft/allograft transplantation (OAT), which replaces the defect with a fresh osteochondral graft. The …


Small-Separation Speckle Contrast Optical Spectroscopy For Intraoperative Assessment Of Parathyroid Glands Viability During Thyroid Surgery, Connor Berger Dec 2022

Small-Separation Speckle Contrast Optical Spectroscopy For Intraoperative Assessment Of Parathyroid Glands Viability During Thyroid Surgery, Connor Berger

Symposium of Student Scholars

The parathyroid glands (PTGs) are often damaged during thyroid surgeries due to a lack of methods identifying PTGs and assessing their viability. Damage to PTGs can cause hypocalcemia, a deficiency of calcium in the body. This complication can lead to detrimental consequences with economic burden. The surgeon’s current method of viability assessment is qualitative and subjective. Our technical solution is to employ an optical technique called speckle contrast optical spectroscopy (SCOS) that noninvasively quantifies the blood flow index (Db) of biological tissues at deep tissue levels (>1cm). The goal of this project is to verify SCOS at small source-detector-separation …


Controlling Differentiation Of Adult Stem Cells Via Cell-Derived Nanoparticles: Implications In Bone Repair, Shruthi Polla Ravi, Yasmeen Shamiya, Aishik Chakraborty, Ali Coyle, Alap A. Zahid, Jin Wang, Michael Boutilier, Emmanuel Ho, Arghya Paul Dec 2022

Controlling Differentiation Of Adult Stem Cells Via Cell-Derived Nanoparticles: Implications In Bone Repair, Shruthi Polla Ravi, Yasmeen Shamiya, Aishik Chakraborty, Ali Coyle, Alap A. Zahid, Jin Wang, Michael Boutilier, Emmanuel Ho, Arghya Paul

Chemical and Biochemical Engineering Publications

No abstract provided.


Six-Dimensional Single-Molecule Imaging With Isotropic Resolution Using A Multi-View Reflector Microscope, Oumeng Zhang, Zijian Guo, Yuanyuan He, Tingting Wu, Michael D. Vahey, Matthew D. Lew Dec 2022

Six-Dimensional Single-Molecule Imaging With Isotropic Resolution Using A Multi-View Reflector Microscope, Oumeng Zhang, Zijian Guo, Yuanyuan He, Tingting Wu, Michael D. Vahey, Matthew D. Lew

Electrical & Systems Engineering Publications and Presentations

Imaging of both the positions and orientations of single fluorophores, termed single-molecule orientation-localization microscopy, is a powerful tool for the study of biochemical processes. However, the limited photon budget associated with single-molecule fluorescence makes high-dimensional imaging with isotropic, nanoscale spatial resolution a formidable challenge. Here we realize a radially and azimuthally polarized multi-view reflector (raMVR) microscope for the imaging of the three-dimensional (3D) positions and 3D orientations of single molecules, with precisions of 10.9 nm and 2.0° over a 1.5-μm depth range. The raMVR microscope achieves 6D super-resolution imaging of Nile red molecules transiently bound to lipid-coated spheres, accurately resolving …


Predictions Of Indentation Stiffness Of Musculoskeletal Regions Using Ultrasound, Sean Doherty Dec 2022

Predictions Of Indentation Stiffness Of Musculoskeletal Regions Using Ultrasound, Sean Doherty

ETD Archive

Tissue indentation response is an important metric for understanding how different musculoskeletal regions respond to loading and is a function of the tissue’s form. Modem imaging techniques provide information about the internal structures of human tissue. Ultrasound remains one of the most common imaging techniques performed, given its portability and low costs. Prior work and data collection on 100 patients involved the collection of ultrasound images at eight different locations across the musculoskeletal extremities. Given the tissue structure information that the medical imaging provided, it was hypothesized that the mechanical properties of the tissue could be predicted from this data. …


Lipids Affect The Diffusion Of Estradiol In Osteonal Bone, Nicholas Anthony Cimino Dec 2022

Lipids Affect The Diffusion Of Estradiol In Osteonal Bone, Nicholas Anthony Cimino

ETD Archive

In healthy osteonal bone, embedded osteocytes form an intercellular communication network through overlapping cell membrane extensions, possibly defining an overlooked and clinically relevant lipid-mediated transport pathway for nonpolar molecules. Previous techniques evaluating solute transport in cortical bone limit tissue analysis to microscale areas (less than 1 mm2) using tracers and assumptions that diminish clinical relevance, presenting the need for an improved method to evaluate solute diffusion in macroscale areas (greater than 1 mm2) of osteonal bone. A new diffusion system - constructed of glass and polytetrafluoroethylene - was designed and validated for this purpose, exhibiting minimal adsorption of solutes and …


An In Vitro 3d Model To Investigate Iol: Posterior Lens Capsule Interactions On Lens Epithelial Cell Responses, Joyita Roy Dec 2022

An In Vitro 3d Model To Investigate Iol: Posterior Lens Capsule Interactions On Lens Epithelial Cell Responses, Joyita Roy

Bioengineering Dissertations - Archive

ABSTRACT: Posterior Capsule Opacification (PCO) is the most common complication associated with Intraocular Lens (IOL) implantation. The disease is caused by the infiltration and proliferation of Lens Epithelial Cells (LEC) into the interface between the IOL and Posterior Lens Capsule (PLC). The severity of these cell responses depends on a lot of factors like the IOL design, IOL material, and interaction between the IOL and the posterior lens capsule. While some studies have also shown that adsorption of certain proteins present in the PLC, like fibronectin, may affect IOL-induced PCO in the clinical setting, the mechanism governing such interactions is …


Targeted Drug-Loaded Nanoparticle System (Tdnps) To Ameliorate And Treat Idiopathic Lung Fibrosis, Harish Ramachandramoorthy Dec 2022

Targeted Drug-Loaded Nanoparticle System (Tdnps) To Ameliorate And Treat Idiopathic Lung Fibrosis, Harish Ramachandramoorthy

Bioengineering Dissertations - Archive

Idiopathic pulmonary fibrosis (IPF) is a fatal progressive disease with a dismal prognosis and 3-5 years of survival. Up to date, there are no effective treatments, and a few current therapies that do not ameliorate the pulmonary fibrosis but rather just increase the survival time by 2-3 years. The major factor limiting the treatment is the lack of targeted therapies to deliver the drugs past the mucosa, into the disease microenvironment. To combat this disease, we proposed a localized therapy via our targeted drug-loaded nanoparticles (TDNPs) to effectively deliver drugs and treat lung fibrosis. Our objective was to design TDNPs …