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		<loc>https://www.omicsonline.org/open-access/performance-of-mesenchymal-cellscaffold-constructs-in-human-oral-reconstructive-surgery-a-systematic-review-2155-952X-1000225.php?aid=74385</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/biotechnology-biomaterials-6-225-g003.png</image:loc>
		<image:caption>Performance of Mesenchymal CellScaffold Constructs in Human Oral Reconstructive Surgery A Systematic Review</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/biotechnology-biomaterials-6-225-g002.png</image:loc>
		<image:caption>Performance of Mesenchymal CellScaffold Constructs in Human Oral Reconstructive Surgery A Systematic Review</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/biotechnology-biomaterials-6-225-g001.png</image:loc>
		<image:caption>Performance of Mesenchymal CellScaffold Constructs in Human Oral Reconstructive Surgery A Systematic Review</image:caption>
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	<url>
		<loc>https://www.omicsonline.org/open-access/effect-of-activating-lacto-peroxidase-system-lps-on-quality-and-storage-stability-of-soft-cheese-2155-952X-1000224.php?aid=74382</loc>
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		<image:caption>Effect of Activating Lacto Peroxidase System LPS On Quality and Storage Stability of Soft Cheese</image:caption>
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		<loc>https://www.omicsonline.org/open-access/an-orallybioavailable-glutathionebased-hepatoprotective-compound-inexperimental-acute-liver-injury-more-effective-than-silymarin-a-2161-069X-1000462.php?aid=79006</loc>
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		<image:caption>An OrallyBioavailable GlutathioneBased Hepatoprotective Compound in Experimental Acute Liver Injury More Effective than Silymarin and YHK</image:caption>
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		<image:caption>An OrallyBioavailable GlutathioneBased Hepatoprotective Compound in Experimental Acute Liver Injury More Effective than Silymarin and YHK</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-post-operative-6-453-g004.png</image:loc>
		<image:caption>Unraveling the ConondrumSmall Bowel Pathology</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-fissuring-ulcer-6-453-g003.png</image:loc>
		<image:caption>Unraveling the ConondrumSmall Bowel Pathology</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-Small-bowel-6-453-g002.png</image:loc>
		<image:caption>Unraveling the ConondrumSmall Bowel Pathology</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-distended-loops-6-453-g001.png</image:loc>
		<image:caption>Unraveling the ConondrumSmall Bowel Pathology</image:caption>
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		<loc>https://www.omicsonline.org/shortness-of-breath-anyone-consider-the-gut-2161-069X.1000115.php?aid=7378</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-blunted-villi-2-115-g002.png</image:loc>
		<image:caption>Shortness of Breath Anyone Consider the Gut</image:caption>
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		<image:caption>Shortness of Breath Anyone Consider the Gut</image:caption>
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		<loc>https://www.omicsonline.org/open-access/granulomatous-disease-with-hepatic-and-splenic-infiltration-a-case-report-2161-069X.1000210.php?aid=30075</loc>
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		<image:caption>Granulomatous Disease with Hepatic and Splenic Infiltration A Case Report</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-PET-scan-4-210-g002.png</image:loc>
		<image:caption>Granulomatous Disease with Hepatic and Splenic Infiltration A Case Report</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-demonstrating-hypodense-4-210-g001b.png</image:loc>
		<image:caption>Granulomatous Disease with Hepatic and Splenic Infiltration A Case Report</image:caption>
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		<image:caption>Granulomatous Disease with Hepatic and Splenic Infiltration A Case Report</image:caption>
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	<url>
		<loc>https://www.omicsonline.org/open-access/colocutaneous-fistula-as-a-result-of-chronic-hidradenitis-suppurativa-2161-069X.1000224.php?aid=31426</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-surgical-specimen-4-224-g006.png</image:loc>
		<image:caption>Colocutaneous Fistula as a Result of Chronic Hidradenitis Suppurativa</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-non-inflamed-4-224-g005.png</image:loc>
		<image:caption>Colocutaneous Fistula as a Result of Chronic Hidradenitis Suppurativa</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-sigmoid-colon-4-224-g004.png</image:loc>
		<image:caption>Colocutaneous Fistula as a Result of Chronic Hidradenitis Suppurativa</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-colocutaneous-fistula-4-224-g003.png</image:loc>
		<image:caption>Colocutaneous Fistula as a Result of Chronic Hidradenitis Suppurativa</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-abdominal-wall-4-224-g002.png</image:loc>
		<image:caption>Colocutaneous Fistula as a Result of Chronic Hidradenitis Suppurativa</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-system-chronic-hidradenitis-4-224-g001.png</image:loc>
		<image:caption>Colocutaneous Fistula as a Result of Chronic Hidradenitis Suppurativa</image:caption>
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		<loc>https://www.omicsonline.org/open-access/the-status-of-histopathology-in-the-diagnosis-of-gastroesophageal-refluxdisease--time-for-reappraisal-2161-069X-1000355.php?aid=65263</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-superficial-layers-respectively-5-355-g004.png</image:loc>
		<image:caption>The Status of Histopathology in the Diagnosis of Gastroesophageal Reflux Disease Time for Reappraisal</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-mucous-cells-5-355-g003.png</image:loc>
		<image:caption>The Status of Histopathology in the Diagnosis of Gastroesophageal Reflux Disease Time for Reappraisal</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-Active-reflux-esophagitis-5-355-g002.png</image:loc>
		<image:caption>The Status of Histopathology in the Diagnosis of Gastroesophageal Reflux Disease Time for Reappraisal</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/gastrointestinal-digestive-anatomy-gastroesophageal-junction-5-355-g001.png</image:loc>
		<image:caption>The Status of Histopathology in the Diagnosis of Gastroesophageal Reflux Disease Time for Reappraisal</image:caption>
		</image:image>
		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/quantification-of-dimethylacetamide-and-its-primary-metabolite-monomethylacetamide-in-plasma-using-robust-lcms-method-2155-9872-1000327.php?aid=76691</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/Bioanalytical-Overlaid-plasma-samples-7-327-g004.png</image:loc>
		<image:caption>Quantification of Dimethylacetamide and its Primary Metabolite Monomethylacetamide in Plasma Using Robust LCMS Method</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/Bioanalytical-Overlaid-Calibration-curves-7-327-g003.png</image:loc>
		<image:caption>Quantification of Dimethylacetamide and its Primary Metabolite Monomethylacetamide in Plasma Using Robust LCMS Method</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/Bioanalytical-Overlaid-LC-MS-analysis-7-327-g002.png</image:loc>
		<image:caption>Quantification of Dimethylacetamide and its Primary Metabolite Monomethylacetamide in Plasma Using Robust LCMS Method</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/Bioanalytical-Overlaid-Chemical-tructures-7-327-g001.png</image:loc>
		<image:caption>Quantification of Dimethylacetamide and its Primary Metabolite Monomethylacetamide in Plasma Using Robust LCMS Method</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/growth-rate-and-morphology-of-a-single-calcium-carbonate-crystal-onpolysulfone-film-measured-with-time-lapse-raman-micro-spectrosc-2155-9872-1000321.php?aid=76393</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-7-321-e005.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-carbonate-ions-crystal-7-321-g003.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
		</image:image>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-7-321-e004.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-7-321-e003.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Time-lapse-Raman-7-321-g002.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-7-321-e002.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-7-321-e001.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Schematic-representation-liquid-7-321-g001.png</image:loc>
		<image:caption>Growth Rate and Morphology of a Single Calcium Carbonate Crystal on Polysulfone Film Measured with Time Lapse Raman Micro Spectroscopy</image:caption>
		</image:image>
		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/pcr-free-ultrasensitive-capacitive-biosensor-2155-9872.1000210.php?aid=33236</loc>
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		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
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		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-capacitive-responses-5-210-g009a.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Heat-denaturation-5-210-g008.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-products-digested-5-210-g007.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-modified-electrode-5-210-g006.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-logarithmic-concentration-5-210-g005.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-5-210-e002.gif</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-electrode-surface-5-210-g004.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Cyclic-voltammograms-5-210-g003.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-different-conditions-5-210-g002.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Schematic-diagram-5-210-g001.png</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
		</image:image>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-5-210-e001.gif</image:loc>
		<image:caption>PCRFree Ultrasensitive Capacitive Biosensor for Selective Detection and Quantification of Enterobacteriacea DNA</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/organised-surfactants-assemblies-and-spectrophotometry-2155-9872.1000208.php?aid=31171</loc>
		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Infrared-Spectra-5-208-g007.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Proposed-structure-5-208-c001.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Absorption-spectra-5-208-g006.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-temperature-5-208-g005.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-concentration-5-208-g004.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-absorbance-5-208-g003.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
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		<image:image>
		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-various-percent-5-208-g002.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-Reaction-equilibrium-5-208-g001.png</image:loc>
		<image:caption>Organised Surfactants Assemblies and Spectrophotometry Application to The Analysis of Palladium II in Different Matrices</image:caption>
		</image:image>
		</url>
	<url>
		<loc>https://www.omicsonline.org/green-ionic-liquid-albumin-glassy-carbon-biosensor-ilagc-for-on-line-binding-studies-of-human-serum-albumin-with-retinol-2155-9872.S7-004.php?aid=13958</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-accumulation-time-voltammograms-S7-004-g003.png</image:loc>
		<image:caption>Green Ionic Liquid Albumin Glassy Carbon Biosensor ILAGC for Online Binding Studies of Human Serum Albumin with Retinol</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-optimization-retinol-discrimination-S7-004-g002.png</image:loc>
		<image:caption>Green Ionic Liquid Albumin Glassy Carbon Biosensor ILAGC for Online Binding Studies of Human Serum Albumin with Retinol</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-electrochemical-retinol-biosensor-S7-004-s001.png</image:loc>
		<image:caption>Green Ionic Liquid Albumin Glassy Carbon Biosensor ILAGC for Online Binding Studies of Human Serum Albumin with Retinol</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/analytical-bioanalytical-techniques-cyclic-voltammograms-retinol-S7-004-g001.png</image:loc>
		<image:caption>Green Ionic Liquid Albumin Glassy Carbon Biosensor ILAGC for Online Binding Studies of Human Serum Albumin with Retinol</image:caption>
		</image:image>
		</url>
	<url>
		<loc>https://www.omicsonline.org/open-access/thoracic-myelolipoma-a-rare-case-of-mistake-in-lung-cancer-staging-2161-0681.1000202.php?aid=37335</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/clinical-pathology-Hematoxylin-myelolipoma-5-202-g002.png</image:loc>
		<image:caption>Thoracic Myelolipoma A Rare Case of Mistake in Lung Cancer Staging</image:caption>
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		<image:loc>https://www.omicsonline.org/articles-images/clinical-pathology-tomography-thoracic-5-202-g001.png</image:loc>
		<image:caption>Thoracic Myelolipoma A Rare Case of Mistake in Lung Cancer Staging</image:caption>
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		</url>
	<url>
		<loc>https://www.omicsonline.org/a-pathological-lesions-study-of-bovine-abomasums-in-urmia-abattoir-2161-0681.1000121.php?aid=8435</loc>
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		<image:loc>https://www.omicsonline.org/articles-images/clinical-pathology-relative-pathological-2-121-g002.png</image:loc>
		<image:caption>A Pathological Lesions Study of Bovine Abomasums in Urmia Abattoir</image:caption>
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		<image:caption>PMMA Platform Based Micro Fluidic Mixer for the Detection of MicroRNA18a from Retinoblastoma Serum</image:caption>
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		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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		<image:caption>Nano Scale Potentiometric and Spectrophotometric Assays for2,4Dichlorophenoxyacetic Acid</image:caption>
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	</urlset>
