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1.
Med Sci Monit ; 30: e944050, 2024 Jul 07.
Article in English | MEDLINE | ID: mdl-38971968

ABSTRACT

BACKGROUND Measurement of bite force plays a crucial role in assessment of the masticatory system. With a growing interest in detecting occlusal irregularities, bite force sensors have garnered attention in the biomedical field. This study aimed to introduce a hydrogel bite force sensor, based on hydroxyethyl-cellulose-fructose-water (HEC-F-water), for premolar and molar teeth, and to evaluate it using optical profilometry, infrared spectroscopy (FTIR), and Instron Tension testing system, with 2.5 cm (1 inch) margins at top, bottom, right, and left. MATERIAL AND METHODS We fabricated 20 HEC-F-water hydrogel samples sized with surface of 1×1 cm, with 2 different widths - 1 mm and 5 mm. The samples were characterized using optical profilometry and FTIR and their electrical characteristics were determined using an impedance analyzer. Aluminum (Al) electrodes, fabricated using Cutting Plotter, were used to form a HEC-F-water-based transducer, which was used for bite force sensing. The Instron tensile testing system was employed, utilizing 3D printed models of the upper and lower jaw, to simulate biting. Forces in the range between 40 N and 540 N were exerted upon the transducer, and the output change in the electrical signal was measured. RESULTS The study determined the transfer function between bite force and capacitance. The fabricated sensor exhibited a sensitivity of 3.98 pF/N, an input range of 500 N, output range of 2 nF, and accuracy of 95.9%. CONCLUSIONS This study introduces an edible bite force sensor employing an edible hydrogel as a dielectric, presenting a novel avenue in the development of edible sensorics in dentistry.


Subject(s)
Bite Force , Humans , Hydrogels/chemistry , Molar , Fructose , Mastication/physiology , Spectroscopy, Fourier Transform Infrared/methods , Cellulose/chemistry , Water , Bicuspid
2.
Int J Pharm ; 660: 124301, 2024 Jun 06.
Article in English | MEDLINE | ID: mdl-38851411

ABSTRACT

The application of gold nanoparticles (AuNPs) in cancer therapy, particularly targeted therapy of glioblastoma multiforme (GBM), is an up-and-coming field of research that has gained much interest in recent years. GBM is a life-threatening malignant tumour of the brain that currently has a 95 % death rate with an average of 15 months of survival. AuNPs have proven to have wide clinical implications and compelling therapeutic potential in many researches, specifically in GBM treatment. It was found that the reason why AuNPs were highly desired for GBM treatment was due to their unique properties that diversified the applications of AuNPs further to include imaging, diagnosis, and photothermal therapy. These properties include easy synthesis, biocompatibility, and surface functionalization. Various studies also underscored the ability of AuNPs to cross the blood-brain-barrier and selectively target tumour cells while displaying no major safety concerns which resulted in better therapy results. We attempt to bring together some of these studies in this review and provide a comprehensive overview of safety evaluations and current and potential applications of AuNPs in GBM therapy that may result in AuNP-mediated therapy to be the new gold standard for GBM treatment.

3.
Med Sci Monit ; 30: e943321, 2024 Jun 12.
Article in English | MEDLINE | ID: mdl-38863180

ABSTRACT

BACKGROUND This study explored the integration of conductive threads into a microfluidic compact disc (CD), developed using the xurographic method, for a potential sweat biosensing platform. MATERIAL AND METHODS The microfluidic CD platform, fabricated using the xurographic method with PVC films, included venting channels and conductive threads linked to copper electrodes. With distinct microfluidic sets for load and metering, flow control, and measurement, the CD's operation involved spinning for sequential liquid movement. Impedance analysis using HIOKI IM3590 was conducted for saline and artificial sweat solutions on 4 identical CDs, ensuring reliable conductivity and measurements over a 1 kHz to 200 kHz frequency range. RESULTS Significant differences in |Z| values were observed between saline and artificial sweat treatments. 27.5 µL of saline differed significantly from 27.5 µL of artificial sweat, 72.5 µL of saline from 72.5 µL of artificial sweat, and 192.5 µL of saline from 192.5 µL of sweat. Significant disparities in |Z| values were observed between dry fibers and Groups 2, 3, and 4 (varying saline amounts). No significant differences emerged between dry fibers and Groups 6, 7, and 8 (distinct artificial sweat amounts). These findings underscore variations in fiber characteristics between equivalent exposures, emphasizing the nuanced response of the microfluidic CD platform to different liquid compositions. CONCLUSIONS This study shows the potential of integrating conductive threads in a microfluidic CD platform for sweat sensing. Challenges in volume control and thread coating degradation must be addressed for transformative biosensing devices in personalized healthcare.


Subject(s)
Biosensing Techniques , Lab-On-A-Chip Devices , Sweat , Sweat/chemistry , Biosensing Techniques/methods , Biosensing Techniques/instrumentation , Humans , Microfluidics/methods , Microfluidics/instrumentation , Electric Conductivity , Electrodes , Electric Impedance
4.
BMC Oral Health ; 24(1): 26, 2024 01 05.
Article in English | MEDLINE | ID: mdl-38183081

ABSTRACT

OBJECTIVE: To evaluate the efficacy of Propolis mouthwash compared to chlorhexidine mouthwash as an adjunct to mechanical therapy in improving clinical parameters in perimenopausal women with chronic periodontitis. METHODOLOGY: A double-blind, randomized, controlled clinical trial was conducted by recruiting 144 subjects with mild to moderate chronic periodontitis. After scaling and root planning, subjects were allocated to two treatment groups: 0.2% chlorhexidine mouthwash and 20% propolis mouthwash twice daily for six weeks. Clinical parameters such as pocket probing depth (PPD), clinical attachment loss (CAL) and bleeding on probing (BOP) were analysed at baseline, six weeks, and 12 weeks. RESULT: The mean value of PPD in the propolis group was 4.67 at baseline, reduced to 4.01 at six weeks and 3.59 at 12 weeks. While in the chlorhexidine group, the baseline value of 4.65 reduced to 4.44 and 4.25 at six weeks and 12 weeks, respectively. The baseline value of the mean CAL in the propolis group was 4.45. This value was reduced to 4.15 at six weeks and 3.77 at 12 weeks. For the chlorhexidine group, the baseline value of CAL was 4.80, which was reduced to 4.50 and 4.19 at six weeks and 12 weeks. The mean value of bleeding on probing in the propolis group was 77.20, which decreased to 46.30 at six weeks and 14.60 at the final visit. In the chlorhexidine group, the mean value of 77.30 was reduced to 49.60 and 22.80 at subsequent visits. CONCLUSION: This study concludes that both propolis and chlorhexidine mouthwash positively improve clinical parameters; however, propolis is significantly more effective in improving BOP. TRIAL REGISTRATION: ID: NCT05870059, Date of Registration: 02/02/2022. ( https://beta. CLINICALTRIALS: gov/study/NCT05870059 ).


Subject(s)
Chronic Periodontitis , Propolis , Female , Humans , Chlorhexidine/therapeutic use , Mouthwashes/therapeutic use , Propolis/therapeutic use , Perimenopause
5.
RSC Adv ; 13(49): 34798-34807, 2023 Nov 22.
Article in English | MEDLINE | ID: mdl-38035232

ABSTRACT

Herein, a ZrO2 added α-Fe2O3 photoanode that can split water at low applied potential is reported. First, the pristine hematite α-Fe2O3 photoanode was synthesized using an aerosol-assisted chemical vapour deposition (AACVD) method followed by modification with various amounts of ZrO2 (2 to 40%) in the form of thin films on conducting glass substrate. The XRD, Raman spectroscopy and scanning electron microscopy (SEM) analyses confirmed the presence of the monoclinic phase of ZrO2 in the composites with multifaceted particles of compact morphology. The optical analysis showed an increase in the absorbance and variation in band gap of the composites ascribed to the heterogeneity of the material. The photoelectrochemical studies gave a photocurrent density of 1.23 mA cm-2 at 1.23 V vs. RHE for the pristine hematite and remarkably higher value of 3.06 mA cm-2 for the optimized amount of ZrO2 in the modified α-Fe2O3 photoanode. To the best of our knowledge, this is the highest photocurrent reported for a ZrO2 containing photoanode. The optimized composite electrode produced nine times more oxygen than that produced by pristine hematite.

6.
Environ Sci Pollut Res Int ; 30(53): 113889-113902, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37858013

ABSTRACT

Renewable energy systems are vital for a sustainable future, where solid-state hydrogen storage can play a crucial role. Perovskite hydride materials have attracted the scientific community for hydrogen storage applications. The current work focuses on the theoretical study using density functional theory (DFT) to evaluate the characteristics of MgXH3 (X = Co, Cu, Ni) hydrides. The structural, vibrational, electronic, mechanical, thermodynamic, and hydrogen storage properties of these hydrides were investigated. The equilibrium lattice parameters were calculated using the Birch-Murnaghan equation of state-to-energy volume curves. The elastic constants (Cij) and relevant parameters, such as Born criteria, were calculated to confirm the mechanical stability of the hydrides. The Cauchy pressure (Cp) revealed brittle or ductile behavior. The outcomes of the Pugh ratio, Poisson ratio, and anisotropy were also calculated and discussed. The absence of negative lattice vibrational frequencies in phonon dispersion confirmed the lattice's dynamic stability. The heat capacity curves of thermodynamic properties revealed that hydrides can conduct thermal energy. The metallic character and ample interatomic distances of hydrides were confirmed by the band structure and population analysis, which confirmed that hydrides can conduct electrical energy and adsorb hydrogen. The density of state (DOS) and partial DOS unveiled the role of specific atoms in the DOS of the crystal. The calculated gravimetric hydrogen storage capacity of MgCoH3, MgCuH3, and MgNiH3 hydrides was 3.64, 3.32, and 3.49wt%, respectively. Our results provide a deeper understanding of its potential for hydrogen storage applications through a detailed analysis of MgXH3 (X = Co, Cu, Ni) perovskite hydride material.


Subject(s)
Calcium Compounds , Oxides , Thermodynamics , Hydrogen
7.
J Pak Med Assoc ; 73(8): 1653-1657, 2023 Aug.
Article in English | MEDLINE | ID: mdl-37697757

ABSTRACT

Objective: To evaluate post-traumatic growth experienced by medical doctors who served coronavirus disease 2019 patients. METHODS: The cross-sectional study was conducted from December 1, 2021, to February 28, 2022, at the Civil Hospital, Karachi, and comprised medical doctors of either gender aged >22 years who directly provided care for at least one month to coronavirus disease-2019 patients. Other than demographic and professional profile of the subjects, data was collected using the Post-Traumatic Growth Inventory, with total score ≥60 indicating a positive post-traumatic growth. Data was analysed using SPSS 22. RESULTS: Of the 166 subjects approached, 150(90.3%) finished the study. There were 90(60%) females, 88(58.7%) were aged 25-35 years, 55(36.7%) were married, 107(71.3%) were postgraduate trainees, 79(52.7%) had 1-3 family members in the vulnerable groups, and 43(28.7%) had received any sort of psychological training. The mean post traumatic growth score was 64.81±20.27 and 87(58%) doctors scored ≥60. The odds of experiencing post- traumatic growth for doctors with the number of vulnerable family members were significant (p<0.05). Doctors who had received psychological training before providing care to coronavirus disease-2019 patients showed higher odds of experiencing post-traumatic growth (p<0.05). Conclusion: Coronavirus disease-2019 resulted in substantial positive psychological growth for frontline doctors. Psychological training showed a significant role in post-traumatic growth.


Subject(s)
COVID-19 , Posttraumatic Growth, Psychological , Female , Humans , Male , Pakistan/epidemiology , COVID-19/epidemiology , Cross-Sectional Studies , Tertiary Healthcare , Hospitals, Public
8.
PLoS One ; 18(2): e0280381, 2023.
Article in English | MEDLINE | ID: mdl-36795661

ABSTRACT

Diagnosing oral diseases at an early stage may lead to better preventive treatments, thus reducing treatment burden and costs. This paper introduces a systematic design of a microfluidic compact disc (CD) consisting of six unique chambers that run simultaneously from sample loading, holding, mixing and analysis. In this study, the electrochemical property changes between real saliva and artificial saliva mixed with three different types of mouthwashes (i.e. chlorhexidine-, fluoride- and essential oil (Listerine)-based mouthwashes) were investigated using electrical impedance analysis. Given the diversity and complexity of patient's salivary samples, we investigated the electrochemical impedance property of healthy real saliva mixed with different types of mouthwashes to understand the different electrochemical property which could be a foundation for diagnosis and monitoring of oral diseases. On the other hand, electrochemical impedance property of artificial saliva, a commonly used moisturizing agent and lubricant for the treatment of xerostomia or dry mouth syndrome was also studied. The findings indicate that artificial saliva and fluoride-based mouthwash showed higher conductance values compared to real saliva and two other different types of mouthwashes. The ability of our new microfluidic CD platform to perform multiplex processes and detection of electrochemical property of different types of saliva and mouthwashes is a fundamental concept for future research on salivary theranostics using point-of-care microfluidic CD platform.


Subject(s)
Mouthwashes , Xerostomia , Humans , Saliva, Artificial/chemistry , Electric Impedance , Fluorides/analysis , Microfluidics , Chlorhexidine , Saliva/chemistry , Xerostomia/therapy
9.
Int J Biol Macromol ; 222(Pt A): 462-472, 2022 Dec 01.
Article in English | MEDLINE | ID: mdl-36155784

ABSTRACT

Globally, people suffering from bone disorders are steadily increasing and bone tissue engineering is an advanced approach to treating fractured and defected bone tissues. In this study, we have prepared polymeric nanocomposite by free-radical polymerization from sodium alginate, hydroxyapatite, and silica with different GO amounts. The porous scaffolds were fabricated using the freeze drying technique. The structural, morphological, mechanical, and wetting investigation was conducted by Fourier-transform infrared spectroscopy, X-ray diffraction, scanning electron microscope, universal tensile machine, and water contact angle characterization techniques. The swelling, biodegradation, and water retention were also studied. The biological studies were performed (cell viability, cell adherence, proliferation, and mineralization) against osteoblast cell lines. Scaffolds have exhibited different pore morphology SAG-1 (pore size = 414.61 ± 56 µm and porosity = 81.45 ± 2.17 %) and SAG-4 (pore size = 195.97 ± 82 µm and porosity = 53.82 ± 2.45 %). They have different mechanical behavior as SAG-1 has the least compression strength and compression modulus 2.14 ± 2.35 and 16.51 ± 1.27 MPa. However, SAG-4 has maximum compression strength and compression modulus 13.67 ± 2.63 and 96.16 ± 1.97 MPa with wetting behavior 80.70° and 58.70°, respectively. Similarly, SAG-1 exhibited the least and SAG-4 presented maximum apatite mineral formation, cell adherence, cell viability, and cell proliferation against mouse pre-osteoblast cell lines. The increased GO amount provides different multifunctional materials with different characteristics. Hence, the fabricated scaffolds could be potential scaffold materials to treat and regenerate fracture bone tissues in bone tissue engineering.


Subject(s)
Silicon Dioxide , Tissue Engineering , Mice , Animals , Tissue Engineering/methods , Tissue Scaffolds/chemistry , Alginates , Bone and Bones , Durapatite/pharmacology , Durapatite/chemistry , Porosity , Water , Biocompatible Materials/pharmacology , Biocompatible Materials/chemistry
10.
Materials (Basel) ; 15(13)2022 Jun 28.
Article in English | MEDLINE | ID: mdl-35806658

ABSTRACT

The aim of this study was to tackle the topic of appropriate recommendations for artificial-saliva and mouthwash usage. The contact angle, pH, and conductivity of two artificial saliva solutions, four mouthwashes, and their mixtures on enamel, glass-ionomer, and composite dental materials were measured. The measurements were conducted with a MATLAB algorithm to minimize human error. The obtained values for the contact angle were in the range from 7.98° to 52.6°, and they showed completely nonlinear and nonuniform behavior for all investigated liquids and on all investigated substrates. Results reveal statistically significant differences among all tested liquids on all investigated substrates (p < 0.05). pH values ranged from 1.54 to 7.01. A wide range of conductivity values were observed, from 1205µS/cm in the saliva-stimulating solution to 6679 mS/cm in the artificial saliva. Spearman's test showed a moderate positive correlation between the pH and conductivity of the tested fluids (R = 0.7108). A comparison of the data obtained using Image J software and the MATLAB algorithm showed consistency, not exceeding 5% error. When an experiment uses human material and bioactive materials THAT are used in biomedicine as substrates, an additional definition of protocols is highly recommended for future research on this topic.

11.
Front Bioeng Biotechnol ; 10: 865059, 2022.
Article in English | MEDLINE | ID: mdl-35573248

ABSTRACT

Wound healing is an important physiological process involving a series of cellular and molecular developments. A multifunctional hydrogel that prevents infection and promotes wound healing has great significance for wound healing applications in biomedical engineering. We have functionalized arabinoxylan and graphene oxide (GO) using the hydrothermal method, through cross-linking GO-arabinoxylan and polyvinyl alcohol (PVA) with tetraethyl orthosilicate (TEOS) to get multifunctional composite hydrogels. These composite hydrogels were characterized by FTIR, SEM, water contact angle, and mechanical testing to determine structural, morphological, wetting, and mechanical behavior, respectively. Swelling and biodegradation were also conducted in different media. The enhanced antibacterial activities were observed against different bacterial strains (E. coli, S. aureus, and P. aeruginosa); anticancer activities and biocompatibility assays were found effective against U-87 and MC3T3-E1 cell lines due to the synergic effect of hydrogels. In vivo activities were conducted using a mouse full-thickness skin model, and accelerated wound healing was found without any major inflammation within 7 days with improved vascularization. From the results, these composite hydrogels might be potential wound dressing materials for biomedical applications.

12.
Chemosphere ; 291(Pt 3): 132806, 2022 Mar.
Article in English | MEDLINE | ID: mdl-34780730

ABSTRACT

One of the most significant chemical operations in the past century was the Haber-Bosch catalytic synthesis of ammonia, a fertilizer vital to human life. Many catalysts are developed for effective route of ammonia synthesis. The major challenges are to reduce temperature and pressure of process and to improve conversion of reactants produce green ammonia. The present review, briefly discusses the evolution of ammonia synthesis and current advances in nanocatalyst development. There are promising new ammonia synthesis catalysts of different morphology as well as magnetic nanoparticles and nanowires that could replace conventional Fused-Fe and Promoted-Ru catalysts in existing ammonia synthesis plants. These magnetic nanocatalyst could be basis for the production of magnetically induced one-step green ammonia and urea synthesis processes in future.


Subject(s)
Ammonia , Urea , Catalysis , Fertilizers , Humans , Temperature
13.
Sensors (Basel) ; 21(23)2021 Nov 26.
Article in English | MEDLINE | ID: mdl-34883867

ABSTRACT

Lately, wearable applications featuring photonic on-chip sensors are on the rise. Among many ways of controlling and/or modulating, the acousto-optic technique is seen to be a popular technique. This paper undertakes the study of different multilayer structures that can be fabricated for realizing an acousto-optic device, the objective being to obtain a high acousto-optic figure of merit (AOFM). By varying the thicknesses of the layers of these materials, several properties are discussed. The study shows that the multilayer thin film structure-based devices can give a high value of electromechanical coupling coefficient (k2) and a high AOFM as compared to the bulk piezoelectric/optical materials. The study is conducted to find the optimal normalised thickness of the multilayer structures with a material possessing the best optical and piezoelectric properties for fabricating acousto-optic devices. Based on simulations and studies of SAW propagation characteristics such as the electromechanical coupling coefficient (k2) and phase velocity (v), the acousto-optic figure of merit is calculated. The maximum value of the acousto-optic figure of merit achieved is higher than the AOFM of all the individual materials used in these layer structures. The suggested SAW device has potential application in wearable and small footprint acousto-optic devices and gives better results than those made with bulk piezoelectric materials.


Subject(s)
Transducers , Wearable Electronic Devices , Equipment Design , Equipment Failure Analysis , Optics and Photonics
14.
Materials (Basel) ; 14(24)2021 Dec 17.
Article in English | MEDLINE | ID: mdl-34947407

ABSTRACT

Wearable sensors have become part of our daily life for health monitoring. The detection of moisture content is critical for many applications. In the present research, textile-based embroidered sensors were developed that can be integrated with a bandage for wound management purposes. The sensor comprised an interdigitated electrode embroidered on a cotton substrate with silver-tech 150 and HC 12 threads, respectively, that have silver coated continuous filaments and 100% polyamide with silver-plated yarn. The said sensor is a capacitive sensor with some leakage. The change in the dielectric constant of the substrate as a result of moisture affects the value of capacitance and, thus, the admittance of the sensor. The moisture sensor's operation is verified by measuring its admittance at 1 MHz and the change in moisture level (1-50) µL. It is observed that the sensitivity of both sensors is comparable. The identically fabricated sensors show similar response and sensitivity while wash test shows the stability of sensor after washing. The developed sensor is also able to detect the moisture caused by both artificial sweat and blood serum, which will be of value in developing new sensors tomorrow for smart wound-dressing applications.

15.
Cureus ; 12(9): e10456, 2020 Sep 14.
Article in English | MEDLINE | ID: mdl-33072464

ABSTRACT

We report a case of an asymptomatic 65-year-old male who on routine eye examination had anterior dislocation of an intraocular lens (IOL) implant placed 23 years prior. Ten months prior to presentation, the patient had cardiac surgery complicated by cardiac arrest requiring chest compressions. Dislocation of an intraocular lens is a rare complication of cataract surgery. One of the causative factors for haptic breakage in our case was the polyimide haptic material. Polyimide has been shown to become brittle over time in warm and moist environments such as the human eye. This case demonstrates a case of late IOL dislocation chest compressions and, to the best of our knowledge, the first such case reported in the literature.

16.
Cornea ; 38(6): 748-753, 2019 Jun.
Article in English | MEDLINE | ID: mdl-30882543

ABSTRACT

PURPOSE: To compare the variation in corneal endothelial cell density (ECD) from the center to the periphery in unpeeled and peeled donor corneas and to determine the impact of eccentric trephining on total endothelial cells in Descemet membrane endothelial keratoplasty (DMEK) grafts. METHODS: Mated donor cornea pairs were obtained. One cornea from each pair was peeled for DMEK, whereas the other was left unpeeled. Alizarin Red was used to stain the endothelial cells. High-resolution images at fixed magnification were obtained for the center, midperiphery (2.5 mm from the center), and the periphery (5 mm from the center). The cells were then counted, and ECD was calculated by a masked evaluator using ImageJ software. Regression analysis was then performed to evaluate the change in ECD as a function of radius (distance from the corneal center). The impact of eccentric trephining on total endothelial cells in a given DMEK graft was then calculated using numerical integration. RESULTS: Ten pairs of corneas were evaluated. ECD increased by 1.4% (40.0 cells/mm) (P = 0.03) for peeled corneas and 1.8% (51.5 cells/mm) (P < 0.01) for unpeeled corneas for each millimeter from the center. There was no difference between peeled and unpeeled corneas in the mean central (P = 0.98) or peripheral (P = 0.35) ECD. Based on the increase in ECD as a function of radius, eccentric trephining of a 7.5-mm DMEK graft by 2.25 mm yields 0.95% more total endothelial cells per graft. CONCLUSIONS: Corneal ECD increases from the center to the periphery in both peeled and unpeeled corneas. Eccentric trephining increases the number of transplanted endothelial cells per graft.


Subject(s)
Descemet Membrane/surgery , Descemet Stripping Endothelial Keratoplasty , Endothelial Cells/cytology , Endothelium, Corneal/cytology , Tissue and Organ Harvesting/methods , Aged , Cell Count , Descemet Stripping Endothelial Keratoplasty/methods , Endothelium, Corneal/surgery , Female , Humans , Male , Middle Aged
17.
Eur J Dent ; 11(1): 135-140, 2017.
Article in English | MEDLINE | ID: mdl-28435381

ABSTRACT

After tooth loss, an individual may seek tooth replacement so that his/her function and esthetics could be restored. Clinical prosthodontics, during the past decade, has significantly improved and developed according to the advancements in the science and patient's demands and needs. Conventional options in prosthodontics for substituting a missing single tooth include the removable partial denture, partial and full coverage bridgework, and resin-bonded bridgework. Dental implants have gained increasing popularity over the years as they are capable of restoring the function to near normal in both partial and completely edentulous arches. With substantial evidence available, fixed implant-supported prosthesis are fully acknowledged as a reliable treatment option for the replacement of single or multiple missing teeth nowadays. While dental implants are increasingly becoming the choice of replacement for missing teeth, the impediments associated with them are progressively emerging too.

18.
Retin Cases Brief Rep ; 9(2): 121-2, 2015.
Article in English | MEDLINE | ID: mdl-25383843

ABSTRACT

PURPOSE: To report a case and technique for the removal of retained lens cortex material in an office-based procedure using a portable battery-powered vitrectomy system. METHODS: Case report. RESULTS: An 88-year-old man underwent uncomplicated office-based vitrectomy for the removal of retained lens material with good anatomical and visual outcomes. CONCLUSION: The authors report a case of the removal of retained cortex material using an office-based vitrector. Clinicians should be aware of this technique for selected patients.


Subject(s)
Cataract Extraction/adverse effects , Lens Cortex, Crystalline/surgery , Posterior Eye Segment/surgery , Postoperative Complications/surgery , Vitrectomy/instrumentation , Aged, 80 and over , Equipment Design , Humans , Male , Ophthalmoscopy , Postoperative Complications/diagnosis , Reoperation , Visual Acuity
19.
J Ayub Med Coll Abbottabad ; 17(2): 23-5, 2005.
Article in English | MEDLINE | ID: mdl-16092644

ABSTRACT

BACKGROUND: A review of the literature shows that refugees in different parts of the world have high rates of psychological and emotional problems. However, psychiatric morbidity among Afghan refugees in Pakistan has been poorly studied. Most of the studies of psychiatric disorders come from western countries. However, these studies may not be representative of the Afghan refugees in Pakistan. This study was carried out to measure psychiatric morbidity among a group of Afghan refugees attending a psychiatric clinic in Peshawar, Pakistan. METHODS: This is a cross sectional study, to measure prevalence of psychiatric morbidity among the residents of Afghan refugee camps in Peshawar, Pakistan, who attended a psychiatric clinic between November 2003 and February 2004. Data were collected using Mini International neuropsychiatry Interview Schedule (MINI), and a form specifically developed for the study. RESULTS: Nearly 80% of our patients had a diagnosis of Post Traumatic Stress Disorder. Nearly half (47.9%) reported family history of mental illness, while almost a quarter (23.3%) had a physical disability or long term illness. Only 13.7% (106) had contacted health services prior to seeking help for their psychiatric illness. CONCLUSIONS: A high number of patients presenting with PTSD is not an unusual finding when one considers the traumatic experiences faced by the general population of Afghanistan. Only a small number of the patients had been in contact with the health services prior to their contact with the psychiatric service. This study highlights the importance of health education among Afghan refugees and to establish the mental health services for them.


Subject(s)
Mental Disorders/epidemiology , Refugees/psychology , Stress Disorders, Post-Traumatic/epidemiology , Adolescent , Adult , Afghanistan/ethnology , Cross-Sectional Studies , Female , Humans , Interviews as Topic , Male , Middle Aged , Pakistan/epidemiology , Prevalence , Refugees/statistics & numerical data
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