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Impact of Physical Therapy Education in Clinical Practice

Thesis Info

Author

Syed Tauqeer Abbas

Supervisor

Asghar Khan

Program

PP-DPT

Institute

Riphah International University

Institute Type

Private

City

Islamabad

Country

Pakistan

Thesis Completing Year

2015

Thesis Completion Status

Completed

Page

39 . ;30 cm.

Subject

Medicine & Health

Language

English

Other

Submitted in fulfillment of the requirements for the degree of Post Professional Doctor of Physical Therapy (PP-DPT) to the Riphah College of Rehabilitation Sciences.; Includes bibliographical references; Thesis (PP-DPT)-Riphah International University, 2013; English; Call No: 615.82 TAU

Added

2021-02-17 19:49:13

Modified

2023-01-06 19:20:37

ARI ID

1676711986456

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مواد کی اہمیت، مواد کی اقسام، مواد کی فراہمی کے ذرائع

موضوع3:مواد کی اہمیت، مواد کی اقسام، مواد کی فراہمی کے ذرائع
مواد کیا ہے؟
مواد عربی لفظ "مادہ" کی جمع ہے۔ اس کے معنی رسالہ، سامان اوراسبا ب کے ہیں۔علمی اصطلاح میں مواد سے مراد وہ اسباب ہیں جو محقق تحقیق کے دوران استعمال میں لاتا ہے۔مواد کا متبادل لفظ موازنہ ہے یہ بھی عربی کا لفظ ہے جس کے لغوی معنی ضروری چیزیں یا سامان ،میٹریل کے ہیں۔Contentاور ڈیٹا کے انگریزی الفاظ بھی مواد کے متبادل کے طورپر مستعمل ہیں۔لفظ میٹیریل بالعموم مادی اشیاء کے لیے ڈیٹا، اعداد و شمار ، Contentاور نفس مضمون کے لیے استعمال ہوتا ہے۔
مواد کی اہمیت:
تحقیق کسی بھی شعبے میں ہو مواد کے بغیر ممکن ہی نہیں بلکہ کئی ایک ماہرین کا مانناہے کہ تحقیق کی گاڑی مواد کے ایندھن کے بغیر چل ہی نہیں سکتی اور مواد ہی محقق کے غور و فکر کی بنیاد ہوتا ہے۔ پروفیسر عبدالستار دلوی کے مطابق:
’’خالص مواد کی شکل خام مال کی طرح ہوتی ہے۔ اسی خام ما ل سے تجزیہ ، درجہ بندی اور تحقیق کے ذریعہ نتائج اور عام اصول وضع کیے جاتے ہیں۔‘‘
مواد کی فراہمی تحقیق میں کافی اہمیت کی حامل ہے۔ اس کا سارا بار ایک ریسرچ اسکالر کو خود ہی اٹھانا پڑتا ہے۔ خلیق انجم نے اپنے ایک مضمون ’ادبی تحقیق اور حقائق‘ میں لکھا ہے:
"ایک محقق کو سب سے پہلے یہ معلوم کرنا ہوگا کہ موضوع سے متعلق کیا مواد ہے؟ کہاں ہے؟ اور کیسے فراہم کیا جاسکتا ہے؟"
مواد کی فراہمی کے سلسلے میں محقق کو شہد کی مکھی سے تعبیر کیا گیا ہے کہ جس طرح شہد کی مکھیاں مختلف پھولوں کارس چوس کر شہد بناتی ہیں ،اسی طرح ایک محقق کو بھی مختلف ماخذوں کو حاصل کر کے اپنی تحقیق کو بہترین بنانا پڑے گا تب جاکر وہ تحقیق...

أجمل الصور في تناسق الآيات والسور

The most beautiful pictures in coordination of Chapters in the Holy Qur’ān. In this research I talk about the coordination in Holy Qur’ān  Chapters, so as to each Chapters contains a specific purpose that its Qur’ān ic verses want to achieve it, and we don’t see any difference or inconsistency. In order to achieve this purpose. I make an analytic study for one chapter in holy Qur’ān.I gathered the declarations of the explainers of, after that I give all my effort to show the coordination between them.

Stability of Betamethasone Esters in Some Topical Dosage Forms and its Impact on Their Biological Potential

The present work involves an investigation of the thermal and photochemical degradation of betamethasone esters i.e. betamethasone valerate and betamethasone dipropionate under various conditions and the evaluation of the photoxicity of these compounds. The thermal degradation (40oC) of betamethasone-17-valerate leads to the formation of betamethasone-21-valerate and betamethasone alcohol whereas betamethasone dipropionate gives rise to betamethasone-17-propionate, betamethasone-21-propionate and betamethasone alcohol at pH 2.5-7.5, betamethasone-21-propionate being an intermediate in this reaction. The betamethasone esters on photodegradation, using a UV radiation source (300-400nm), yield two major unknown products in aqueous and organic solvents. The detection of the photodegradation products of betamethasone valerate and betamethasone dipropionate has been carried out by HPLC and the tR values of the unknown products have been reported. The USP HPLC method, after proper validation, has been used for the assay of betamethasone esters and their thermal and photodegradation products. The analytical data have been used to evaluate the kinetics of thermal and photochemical reactions. In both reactions the betamethasone esters have been found to follow the first-order kinetics under the conditions employed. The apparent first-order rate constants for the thermal degradation of betamethasone valerate and betamethasone dipropionate in various media lie in the range of 0.339-9.07x10-3 hr-1 and 0.239-1.87x10-3 hr-1, respectively. The values of these rate constants for the photodegradation of betamethasone valerate and betamethasone dipropionate are in the range of 1.617-11.303x10-3 min-1 and 1.101- 7.657x10-3 min-1, respectively. The buffer and ionic strength effects on the rate of thermal and photodegradation have also been studied. It has been found that phosphate buffer inhibits the rate of degradation of both esters at pH 7.5. This could be due to deactivation of the thermal and photo-excited species involved in the reaction .An increase in the ionic strength of the phosphate buffer also leads to a decrease in the rate of reaction. Attempts on photostabilization of betamethasone esters in cream and gel formulations using compounds causing spectral overlay (vanillin and butyl hydroxytoluene) and light scattering agent (titanium dioxide) show promising results. However, the use of titanium dioxide was most effective in the photostabilization of the esters, causing 39.62-42.56 % and 33.84-35.70 % greater protection in cream and gel formulations compared to the control formulations of betamethasone valerate and betamethasone dipropionate, respectively. An important aspect of this work has been the evaluation of in vitro phototoxicity of betamethasone esters. This involved the application of the tests including photohemolysis, lipid photoperoxidation and protein photodamage. The results indicate that betamethasone esters and their photodegradation products are toxic to mouse red blood cells under UV irradiation. Photodegradation products of the esters are toxic in the dark also, therefore, appropriate precautions may be taken in their clinical applications to avoid any adverse effects.