1.
Z̲ikr-i Āyāz
1999, Ishāʻat 1., 264
Contributed articles on the life and works of Shaik̲h̲ Āyāz, b. 1923, noted Sindhi poet from Sindh, Pakistan.
Ayaz, Shaikh, 1923-1997 Criticism and interpretation
Ayaz, Shaikh, 1923-1997 Criticism and interpretation
Book
2.
Fikr-i Ayāz
1998, 375
Selected poems and articles from the works of renowned Sindhi poet; chiefly translated from Sindhi.
Book
Journal of Heat Transfer, ISSN 0022-1481, 02/2019, Volume 141, Issue 2
The present research aims to examine the micropolar nanofluid flow of Casson fluid between two parallel plates in a rotating system with effects of thermal...
Hall effect | Casson fluid | rotating system | nanofluid | HAMand numerical technique | thermal radiation | CAVITY | MHD | DRIVEN | HAM and numerical technique | MIXED CONVECTION | HYDROMAGNETIC FLOW | ENGINEERING, MECHANICAL | THERMODYNAMICS | STAGNATION POINT | POROUS ENCLOSURE | MAGNETIC-FIELD | THERMAL-RADIATION | NUMERICAL-SIMULATION
Hall effect | Casson fluid | rotating system | nanofluid | HAMand numerical technique | thermal radiation | CAVITY | MHD | DRIVEN | HAM and numerical technique | MIXED CONVECTION | HYDROMAGNETIC FLOW | ENGINEERING, MECHANICAL | THERMODYNAMICS | STAGNATION POINT | POROUS ENCLOSURE | MAGNETIC-FIELD | THERMAL-RADIATION | NUMERICAL-SIMULATION
Journal Article
Toxicology and Industrial Health, ISSN 0748-2337, 1/2016, Volume 32, Issue 1, pp. 154 - 161
Elaeagnus angustifolia was analyzed for determination of metals, phytoconstituents, bactericidal, fungicidal and insecticidal effects and to explore its...
Elaeagnus angustifolia | insecticide | germicide | metals and phytochemistry profile | PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH | ANTIOXIDANT ACTIVITIES | ANTIBACTERIAL | TOXICOLOGY | ANTIFUNGAL | MEDICINAL-PLANTS | Animals | Flavonoids - analysis | Phytochemicals - analysis | Anti-Infective Agents - analysis | Metals, Heavy - analysis | Saponins - analysis | Lepidoptera - drug effects | Pseudomonas aeruginosa - drug effects | Elaeagnaceae - chemistry | Staphylococcus aureus - drug effects | Insecticides - analysis | Tribolium - drug effects | Index Medicus | Aspergillus | Fungicides | Roots | Bark | Pseudomonas aeruginosa | Antiinfectives and antibacterials | Heavy metals | Zinc
Elaeagnus angustifolia | insecticide | germicide | metals and phytochemistry profile | PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH | ANTIOXIDANT ACTIVITIES | ANTIBACTERIAL | TOXICOLOGY | ANTIFUNGAL | MEDICINAL-PLANTS | Animals | Flavonoids - analysis | Phytochemicals - analysis | Anti-Infective Agents - analysis | Metals, Heavy - analysis | Saponins - analysis | Lepidoptera - drug effects | Pseudomonas aeruginosa - drug effects | Elaeagnaceae - chemistry | Staphylococcus aureus - drug effects | Insecticides - analysis | Tribolium - drug effects | Index Medicus | Aspergillus | Fungicides | Roots | Bark | Pseudomonas aeruginosa | Antiinfectives and antibacterials | Heavy metals | Zinc
Journal Article
Transplant International, ISSN 0934-0874, 04/2018, Volume 31, Issue 4, pp. 353 - 360
Summary Renal transplant recipients and donors are becoming increasingly more marginal, with more expanded criteria (ECD) and donation after circulatory death...
immunosuppression | randomized controlled trials | kidney transplantation | trial methodology | SURGERY | RANDOMIZED CONTROLLED-TRIALS | ELIGIBILITY CRITERIA | HEART-FAILURE | GENERALIZABILITY | VALIDITY | TRANSPLANTATION | Transplantation Immunology | Immunosuppression | Kidney Transplantation | Humans | Patient Selection | Randomized Controlled Trials as Topic | Clinical trials | Organ transplant recipients | Transplantation | Kidneys | Immunotherapy | Medical research | Transplants & implants | Donors | Criteria | Health risk assessment | Kidney transplantation
immunosuppression | randomized controlled trials | kidney transplantation | trial methodology | SURGERY | RANDOMIZED CONTROLLED-TRIALS | ELIGIBILITY CRITERIA | HEART-FAILURE | GENERALIZABILITY | VALIDITY | TRANSPLANTATION | Transplantation Immunology | Immunosuppression | Kidney Transplantation | Humans | Patient Selection | Randomized Controlled Trials as Topic | Clinical trials | Organ transplant recipients | Transplantation | Kidneys | Immunotherapy | Medical research | Transplants & implants | Donors | Criteria | Health risk assessment | Kidney transplantation
Journal Article
Microscopy Research and Technique, ISSN 1059-910X, 04/2019, Volume 82, Issue 4, pp. 459 - 465
In present study, multiple microscope techniques were used for the systematics identification of the species Asplenium dalhousiae. The plant was collected from...
identification | medicinal uses | Asplenium dalhousiae | systematics | microscopic techniques | FLORA | ANATOMY & MORPHOLOGY | BIOLOGY | PLANTS | MICROSCOPY | MORPHOLOGY | Microscopy, Electron, Scanning | Polypodiaceae - chemistry | Plant Epidermis - ultrastructure | Polypodiaceae - anatomy & histology | Polypodiaceae - classification | Pakistan | Plant Stomata - ultrastructure | Plant Preparations - therapeutic use | Pollen - ultrastructure | Plant Leaves - anatomy & histology | Plant Leaves - ultrastructure | Plants, Medicinal | Spores - ultrastructure | Herbal medicine | Scanning electron microscopy | Species diversity | Systematics | Taxonomy | Morphology | Light microscopy | Identification | Biodiversity | Species
identification | medicinal uses | Asplenium dalhousiae | systematics | microscopic techniques | FLORA | ANATOMY & MORPHOLOGY | BIOLOGY | PLANTS | MICROSCOPY | MORPHOLOGY | Microscopy, Electron, Scanning | Polypodiaceae - chemistry | Plant Epidermis - ultrastructure | Polypodiaceae - anatomy & histology | Polypodiaceae - classification | Pakistan | Plant Stomata - ultrastructure | Plant Preparations - therapeutic use | Pollen - ultrastructure | Plant Leaves - anatomy & histology | Plant Leaves - ultrastructure | Plants, Medicinal | Spores - ultrastructure | Herbal medicine | Scanning electron microscopy | Species diversity | Systematics | Taxonomy | Morphology | Light microscopy | Identification | Biodiversity | Species
Journal Article
AIP Advances, ISSN 2158-3226, 03/2019, Volume 9, Issue 3, pp. 35031 - 035031-16
Several important characteristics of CNTs (carbon nanotubes) like excellent electrical conductivities, extraordinary thermal conductivities, good mechanical...
PHYSICS, APPLIED | FLUID-FLOW | MATERIALS SCIENCE, MULTIDISCIPLINARY | MHD | NANOSCIENCE & NANOTECHNOLOGY | LAMINAR | THERMAL-CONDUCTIVITY | GENERATION/ABSORPTION | NANOFLUID FLOW | IMPACT | MOTION | ENHANCEMENT | WATER | Heat generation | Slip velocity | Nonlinear equations | Skin friction | Rotating disks | Boundary conditions | Differential thermal analysis | Carbon | Rotation | Nanoparticles | Organic chemistry | Thermal radiation | Absorption | Three dimensional flow | Differential equations | Ordinary differential equations | Mathematical models | Multi wall carbon nanotubes | Single wall carbon nanotubes
PHYSICS, APPLIED | FLUID-FLOW | MATERIALS SCIENCE, MULTIDISCIPLINARY | MHD | NANOSCIENCE & NANOTECHNOLOGY | LAMINAR | THERMAL-CONDUCTIVITY | GENERATION/ABSORPTION | NANOFLUID FLOW | IMPACT | MOTION | ENHANCEMENT | WATER | Heat generation | Slip velocity | Nonlinear equations | Skin friction | Rotating disks | Boundary conditions | Differential thermal analysis | Carbon | Rotation | Nanoparticles | Organic chemistry | Thermal radiation | Absorption | Three dimensional flow | Differential equations | Ordinary differential equations | Mathematical models | Multi wall carbon nanotubes | Single wall carbon nanotubes
Journal Article
Microscopy Research and Technique, ISSN 1059-910X, 04/2019, Volume 82, Issue 4, pp. 415 - 420
In this decade, the use of nano particles (NPs) against bacterial growth is increasing day by day due to remarkable alternative properties compared to...
co‐precipitation | iron oxide | SEM | nanoparticles | bacteria | co-precipitation | ANATOMY & MORPHOLOGY | SILVER | BIOLOGY | AGENTS | MICROSCOPY | FEATURES | Microbial Sensitivity Tests | Microscopy, Electron, Scanning | X-Ray Diffraction | Escherichia coli - drug effects | Metal Nanoparticles - chemistry | Spectrometry, X-Ray Emission | Ferric Compounds - pharmacology | Anti-Bacterial Agents - pharmacology | Staphylococcus aureus - drug effects | Shigella dysenteriae - drug effects | Usage | Iron compounds | Ferric oxide | Analysis | Bacteria | Precipitation (Meteorology) | Government securities | Antibacterial agents | Scanning electron microscopy | Transition metals | Particulates | X-ray diffraction | Crystallography | Heavy metals | Nanoparticles | Synthesis | Antibiotics | E coli | Morphology | Antibacterial activity | Biocompatibility | Iron oxides
co‐precipitation | iron oxide | SEM | nanoparticles | bacteria | co-precipitation | ANATOMY & MORPHOLOGY | SILVER | BIOLOGY | AGENTS | MICROSCOPY | FEATURES | Microbial Sensitivity Tests | Microscopy, Electron, Scanning | X-Ray Diffraction | Escherichia coli - drug effects | Metal Nanoparticles - chemistry | Spectrometry, X-Ray Emission | Ferric Compounds - pharmacology | Anti-Bacterial Agents - pharmacology | Staphylococcus aureus - drug effects | Shigella dysenteriae - drug effects | Usage | Iron compounds | Ferric oxide | Analysis | Bacteria | Precipitation (Meteorology) | Government securities | Antibacterial agents | Scanning electron microscopy | Transition metals | Particulates | X-ray diffraction | Crystallography | Heavy metals | Nanoparticles | Synthesis | Antibiotics | E coli | Morphology | Antibacterial activity | Biocompatibility | Iron oxides
Journal Article
Microscopy Research and Technique, ISSN 1059-910X, 07/2019, Volume 82, Issue 7, pp. 1021 - 1031
The present study is insight into pollen morphology for characterizing species and their utility in the taxonomic separation of certain taxa of subfamily...
SEM | micromorphology | Nepetoideae | pollen | taxonomic significance | PHYLOGENY | ANATOMY & MORPHOLOGY | TRIBE MENTHEAE | POLLEN MORPHOLOGY | CLASSIFICATION | IDENTIFICATION | MICROSCOPY | FEATURES | ANATOMY | SYSTEMATIC IMPLICATIONS | BIOLOGY | L. LAMIACEAE | Scanning electron microscopy | Taxa | Taxonomy | Morphology | Light microscopy | Pollen | Qualitative analysis | Species
SEM | micromorphology | Nepetoideae | pollen | taxonomic significance | PHYLOGENY | ANATOMY & MORPHOLOGY | TRIBE MENTHEAE | POLLEN MORPHOLOGY | CLASSIFICATION | IDENTIFICATION | MICROSCOPY | FEATURES | ANATOMY | SYSTEMATIC IMPLICATIONS | BIOLOGY | L. LAMIACEAE | Scanning electron microscopy | Taxa | Taxonomy | Morphology | Light microscopy | Pollen | Qualitative analysis | Species
Journal Article
AIP Advances, ISSN 2158-3226, 05/2019, Volume 9, Issue 5, pp. 55113 - 055113-13
The present study is about the investigation of different aspects of viscous and electrically conducting Titania nanofluids with different base fluids. A three...
BOUNDARY-LAYER-FLOW | CONVECTION FLOW | FLAT-PLATE | PHYSICS, APPLIED | HEAT-TRANSFER ENHANCEMENT | CONDUCTIVITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOSCIENCE & NANOTECHNOLOGY | MHD FLOW | DISK | Nonlinear equations | Parameters | Skin friction | Partial differential equations | Computational fluid dynamics | Rotating disks | Differential geometry | Fluid flow | Nanofluids | Hall effect | Rotation | Physical properties | State variable | Thin films | Ordinary differential equations | Reliability analysis | Porosity | Thermodynamic properties | Magnetic properties
BOUNDARY-LAYER-FLOW | CONVECTION FLOW | FLAT-PLATE | PHYSICS, APPLIED | HEAT-TRANSFER ENHANCEMENT | CONDUCTIVITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | NANOSCIENCE & NANOTECHNOLOGY | MHD FLOW | DISK | Nonlinear equations | Parameters | Skin friction | Partial differential equations | Computational fluid dynamics | Rotating disks | Differential geometry | Fluid flow | Nanofluids | Hall effect | Rotation | Physical properties | State variable | Thin films | Ordinary differential equations | Reliability analysis | Porosity | Thermodynamic properties | Magnetic properties
Journal Article
BMC Complementary and Alternative Medicine, ISSN 1472-6882, 01/2018, Volume 18, Issue 1, pp. 1 - 13
Background: The medicinal importance of a novel plant Olax nana Wall. ex Benth. (family: Olacaceae) was revealed for the first time via HPLC-DAD finger...
DPPH | HPLC-dad | Butyrylcholinesterase (BChE) | Olax nana | Acetylcholinesterase (AChE) | Phytochemical analysis | α-glucosidase inhibitory assays | ABTS | ESSENTIAL OILS | ANTICHOLINESTERASE | KAPPA-B | H2O2 | SUBSCORPIOIDEA OLIV. OLACACEAE | NANOPARTICLES | IN-VITRO | ACETYLCHOLINESTERASE | INTEGRATIVE & COMPLEMENTARY MEDICINE | GENE-EXPRESSION | alpha-glucosidase inhibitory assays | NORTH-WEST | LEAF EXTRACT | Tannic acid | Saponins | Neuroprotection | Hydrogen peroxide | Assaying | Acetylcholinesterase | Antioxidants | Alkaloids | Tannins | Secondary metabolites | Metabolites | Sterols | Bioactive compounds | Polarity | Qualitative analysis | Inhibition | Food | Medicinal plants | Printing | Fractionation | Free radicals | Scavenging | Finger | Glucosidase | Liquid chromatography | Gene expression | High-performance liquid chromatography | Sulfonic acid | Cholinesterase | Herbal medicine | Flavonoids | Phytochemicals | Acids | Fingerprinting | Terpenes | Alzheimers disease | Cancer
DPPH | HPLC-dad | Butyrylcholinesterase (BChE) | Olax nana | Acetylcholinesterase (AChE) | Phytochemical analysis | α-glucosidase inhibitory assays | ABTS | ESSENTIAL OILS | ANTICHOLINESTERASE | KAPPA-B | H2O2 | SUBSCORPIOIDEA OLIV. OLACACEAE | NANOPARTICLES | IN-VITRO | ACETYLCHOLINESTERASE | INTEGRATIVE & COMPLEMENTARY MEDICINE | GENE-EXPRESSION | alpha-glucosidase inhibitory assays | NORTH-WEST | LEAF EXTRACT | Tannic acid | Saponins | Neuroprotection | Hydrogen peroxide | Assaying | Acetylcholinesterase | Antioxidants | Alkaloids | Tannins | Secondary metabolites | Metabolites | Sterols | Bioactive compounds | Polarity | Qualitative analysis | Inhibition | Food | Medicinal plants | Printing | Fractionation | Free radicals | Scavenging | Finger | Glucosidase | Liquid chromatography | Gene expression | High-performance liquid chromatography | Sulfonic acid | Cholinesterase | Herbal medicine | Flavonoids | Phytochemicals | Acids | Fingerprinting | Terpenes | Alzheimers disease | Cancer
Journal Article
MEDICINA-LITHUANIA, ISSN 1010-660X, 07/2019, Volume 55, Issue 7, p. 369
Background and Objectives: The current study focuses on an eco-friendly and cost-e ff ective method of Ephedra procera C. A. Mey. mediated green synthesis of...
GOLD NANOPARTICLES | ANTIBACTERIAL ACTIVITIES | HepG2 cells | green chemistry | CANCER | Ephedra procera | hemolysis | MEDICINE, GENERAL & INTERNAL | IN-VITRO | ANTICANCER | PHYTOSYNTHESIS | BIOSYNTHESIS | ANTIOXIDANT | microbial resistance | nanotechnology | LEAF EXTRACT | BIOREDUCTION
GOLD NANOPARTICLES | ANTIBACTERIAL ACTIVITIES | HepG2 cells | green chemistry | CANCER | Ephedra procera | hemolysis | MEDICINE, GENERAL & INTERNAL | IN-VITRO | ANTICANCER | PHYTOSYNTHESIS | BIOSYNTHESIS | ANTIOXIDANT | microbial resistance | nanotechnology | LEAF EXTRACT | BIOREDUCTION
Journal Article
Lipids in Health and Disease, ISSN 1476-511X, 11/2015, Volume 14, Issue 1, p. 141
Background: Cholinesterase inhibition is a vital target for the development of novel and mechanism based inhibitors, owing to their role in the breakdown of...
GC-MS | Essential oils | Polygonum hydropiper | Anticholinesterase and antioxidant | BIOCHEMISTRY & MOLECULAR BIOLOGY | BERBERINE | SUBSEQUENT FRACTIONS | NUTRITION & DIETETICS | CRUDE SAPONINS | ANTIOXIDANT POTENTIALS | CLINICAL-TRIALS | DISEASE | DOUBLE-BLIND | PLACEBO-CONTROLLED TRIAL | ACETYLCHOLINESTERASE INHIBITORS | METHANOLIC EXTRACT | Plant Extracts - chemistry | Gas Chromatography-Mass Spectrometry | Oils, Volatile - chemistry | Free Radical Scavengers - chemistry | Cholinesterase Inhibitors - chemistry | Flowers - chemistry | Hydrogen Peroxide - chemistry | Sulfonic Acids - chemistry | Butyrylcholinesterase - chemistry | Biphenyl Compounds - antagonists & inhibitors | Picrates - chemistry | Benzothiazoles - antagonists & inhibitors | Cholinesterase Inhibitors - isolation & purification | Biphenyl Compounds - chemistry | Plant Leaves - chemistry | Electrophorus | Enzyme Assays | Acetylcholinesterase - chemistry | Oils, Volatile - isolation & purification | Free Radical Scavengers - isolation & purification | Polygonum - chemistry | Sulfonic Acids - antagonists & inhibitors | Picrates - antagonists & inhibitors | Animals | Acetylcholinesterase - isolation & purification | Benzothiazoles - chemistry | Butyrylcholinesterase - isolation & purification | Horses | Antioxidants | Care and treatment | Hydrogen peroxide | Development and progression | Research | Health aspects | Alzheimer's disease
GC-MS | Essential oils | Polygonum hydropiper | Anticholinesterase and antioxidant | BIOCHEMISTRY & MOLECULAR BIOLOGY | BERBERINE | SUBSEQUENT FRACTIONS | NUTRITION & DIETETICS | CRUDE SAPONINS | ANTIOXIDANT POTENTIALS | CLINICAL-TRIALS | DISEASE | DOUBLE-BLIND | PLACEBO-CONTROLLED TRIAL | ACETYLCHOLINESTERASE INHIBITORS | METHANOLIC EXTRACT | Plant Extracts - chemistry | Gas Chromatography-Mass Spectrometry | Oils, Volatile - chemistry | Free Radical Scavengers - chemistry | Cholinesterase Inhibitors - chemistry | Flowers - chemistry | Hydrogen Peroxide - chemistry | Sulfonic Acids - chemistry | Butyrylcholinesterase - chemistry | Biphenyl Compounds - antagonists & inhibitors | Picrates - chemistry | Benzothiazoles - antagonists & inhibitors | Cholinesterase Inhibitors - isolation & purification | Biphenyl Compounds - chemistry | Plant Leaves - chemistry | Electrophorus | Enzyme Assays | Acetylcholinesterase - chemistry | Oils, Volatile - isolation & purification | Free Radical Scavengers - isolation & purification | Polygonum - chemistry | Sulfonic Acids - antagonists & inhibitors | Picrates - antagonists & inhibitors | Animals | Acetylcholinesterase - isolation & purification | Benzothiazoles - chemistry | Butyrylcholinesterase - isolation & purification | Horses | Antioxidants | Care and treatment | Hydrogen peroxide | Development and progression | Research | Health aspects | Alzheimer's disease
Journal Article
Microscopy Research and Technique, ISSN 1059-910X, 04/2019, Volume 82, Issue 4, pp. 373 - 393
Palyno‐anatomical study of monocots taxa using Light and Scanning Electron Microscopy (SEM) was first time conducted with a view to evaluating their taxonomic...
palyno‐anatomical features | taxonomic significance | light and scanning electron microscopy | monocot | palyno-anatomical features | EARLY LAND PLANTS | SALT RANGE | FOLIAR EPIDERMAL ANATOMY | GRASSES | ANATOMY & MORPHOLOGY | POLLEN MORPHOLOGY | MIRB. ALSTROEMERIACEAE | MICROSCOPY | LEAF EPIDERMIS | EVOLUTION | BIOLOGY | INAPERTURATE POLLEN | GENUS BOMAREA | Epidermal Cells - ultrastructure | Microscopy, Electron, Scanning | Amaryllidaceae - anatomy & histology | Araceae - anatomy & histology | Asparagaceae - classification | Plant Epidermis - ultrastructure | Liliaceae - anatomy & histology | Pakistan | Amaryllidaceae - classification | Ecosystem | Pollen - ultrastructure | Liliaceae - classification | Asparagaceae - anatomy & histology | Araceae - classification | Electron microscopy | Analysis | Scanning electron microscopy | Climatic zones | Taxa | Taxonomy | Morphology | Stomata | Light microscopy | Pollen | Cell size | Anatomy | Taxonomic significance
palyno‐anatomical features | taxonomic significance | light and scanning electron microscopy | monocot | palyno-anatomical features | EARLY LAND PLANTS | SALT RANGE | FOLIAR EPIDERMAL ANATOMY | GRASSES | ANATOMY & MORPHOLOGY | POLLEN MORPHOLOGY | MIRB. ALSTROEMERIACEAE | MICROSCOPY | LEAF EPIDERMIS | EVOLUTION | BIOLOGY | INAPERTURATE POLLEN | GENUS BOMAREA | Epidermal Cells - ultrastructure | Microscopy, Electron, Scanning | Amaryllidaceae - anatomy & histology | Araceae - anatomy & histology | Asparagaceae - classification | Plant Epidermis - ultrastructure | Liliaceae - anatomy & histology | Pakistan | Amaryllidaceae - classification | Ecosystem | Pollen - ultrastructure | Liliaceae - classification | Asparagaceae - anatomy & histology | Araceae - classification | Electron microscopy | Analysis | Scanning electron microscopy | Climatic zones | Taxa | Taxonomy | Morphology | Stomata | Light microscopy | Pollen | Cell size | Anatomy | Taxonomic significance
Journal Article