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Файл:Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_5381_Библиотеки_им_академика_М_И_Перельмана-1
.pdf
Subject Index
https://t.me/med1917
‘Note: Page numbers followed by “f” indicate figures and “t” indicate tables.’
A
“Abhava dravya,”, 6e7
“Abhava-Pratinidhi Dravya” concept, 6e7
Aconitum alkaloids, 13
Aconitum carmichaelii,15
Aconitum heterophyllum,5e10, 6fe7f
adulteration and substitution, 14
medicinal properties, 9e11, 9t
antibacterial activity, 9e10
antidiarrheal activity, 10
antihelminthic activity, 10
antihyperlipidemic activity, 10
antiinflammatory and antipyretic activity, 10
antioxidant activity, 11
immunomodulatory activity, 11
nervous system stimulation, 11
omics-based advancements, 14e15
origin and distribution, 8
phytochemistry, 11e13, 12t
plant tissue culture-assisted progress, 15e17
Aconitum species, 5e6
Adjuvant activity, 158
Adulterant, 89
Adulteration and substitution, 14
Agrobacterium rhizogenes,15e17, 73e74
Agrobacterium tumefaciens, 294e295
Agronomy technique, 262e263
Ajmalan alkaloid pathways, 133
Ajmalicine production, 127
Ajmaline, 120
biosynthesis of, 120, 132
pathway elucidation, 133
Alkaloids, 135
Allelopathic effect, 1e2
Amino acids, 178
Analgesic activity, 352e 353
Anthelmintic activity, 351
Antiallergic activity, 353
Antibacterial activity, 9e10
Anticarcinogenic, 71e72
Anticholinergic activity, 351
Antidiabetic activity, 352
Antidiarrheal activity, 10
Antifungal activity, 350
Antihelminthic activity, 10
Antihistaminic activity, 351
Antihyperlipidemic activity, 10
Antiinflammatory activity, 10, 352
Antileishmanial activity, 353
Antimalarial potential, 72
Antimicrobial activity, 339 e350
Antimicrobial potential, 72
Antioxidant activity, 11, 350e351
Antipyretic activity, 10
Antiserotonergic activity, 351
Antispasmodic activity, 353
Apocynaceae species, 123
Arnebia euchroma,27
biosynthetic machinery of shikonin, 35
medicinal properties of, 28e33
anticancer effects, 29
antidiabetic and diabetic wound-healing
activity, 32
antiinflammatory effects, 29
antiobesity effects, 29
cytotoxic activity of, 33
physiobiological factors affecting shikonin
production, 34e35
physiological structure, 27e28
in vitro production strategies, 33e34
Ashwagandha
low seed viability, 284e285
pests and diseases, 285e288
quality control in herbal medicine, 290
Aspergillus niger,34
Atisine biosynthesis in Aconitum heterophyllum,
16f
Atisine biosynthetic pathway, 15
B
Biochemical analysis
qualitative studies, 331e335
fruit and seed, 333
leaf, 333
stem and bark, 333e335
quantitative studies
fruit and seed, 336
leaf, 336
stem and bark, 337
Biochemical/analytical properties, 176e178
flavonoids, 178
other constituents, 178
terpenes, 177e178
Biotechnological interventions, 8, 57e58
409

410 Subject Index
https://t.me/med1917
Biotechnology-based interventions, 53
Borassoside E, 250e251
Botanical identification and classification, 174e175
Bulbous Fritillaria,59e60
Butyrylcholine esterase inhibitory activity, 353
C
Cardiovascular disorders, 354
Central nervous system, 5e6
Chandrika, 111
Chemical constituents, 94e96
Chloroplast (CP) genome, 62e63
Cinnamyl alcohol dehydrogenase, 166
Cinnamyl-CoA ester, 166
Cinnamyl-CoA reductase, 166
Clonal fidelity assessments, 126
Cold, hypoxia, and restraint (C-H-R) stress,
158e159
Comparative coexpression analysis technique, 124
Comparative genomics, 124
Complementary DNA (cDNA), 129e130
Conservation approach
ex situ conservation, 266
in situ conservation, 266
Conservation genetic studies, 49e50
Cost-effective propagation methods, 98e99
Costunolide, 179e183
synthase gene, 189e190
Costus oil, 173e174
“Critically endangered medicinal herb,”, 6e7
Crop
and harvesting, 103
protection and maintenance, 103
Crop improvement interventions
biotechnological interventions
enhanced production of bioactives in vivo,
308e309
genetic transformation, 306e308
in vitro production of bioactives, 305e306
in vitro propagation of Ashwagandha,
302e305
breeding efforts, 302
Cynaropicrin, 179e180
Cyperus rotundus,14
Cytochrome P450 enzyme, 133
Cytotoxic activity, 354e355
Cytotoxic T lymphocyte (CTL) activity, 181
D
Dactylorhin, 45e46
Dactylorhiza hatagirea,43e44
biotechnological interventions in, 46e52
dactylorhin, 45e46
medicinal uses, 45
molecular markers, role of, 47e50
next-generation sequencing to characterize
transcriptome, 52
“omics” technologies, role of, 50e51
origin and distribution, 44
Dehydrocostus lactone, 179e183
De novo transcriptome analysis, 63
De novo transcriptome sequencing, 74e75
Direct and indirect organogenesis (in vitro), 357
DNA-based molecular markers, 123e124
“Downstream pathways,”, 120
Dried Arnebia root powder, 28
E
Elicitation, 127
Elicitor-based enhancement, 127
Embryogenic callus cultures, 15e17
Enhanced production of bioactives in vivo,
308e309
Enzyme acetylajmalan esterase (AAE), 120
Ethnobotanical uses, 105
Expressed Sequence Tags (ESTs), 297
Ex situ conservations, 2
Ex situ strategies, 186e187
F
Fritillaria assyriaca,62e63
Fritillaria camtschatcensis,60e61
Fritillaria cirrhosa,62e63
Fritillaria imperialis,63
Fritillaria roylei,57e58
omics advancements, 62e63
origin and distribution, 58
phytochemistry, 59
therapeutics potential/biological significance,
59e60
in vitro conservation/morphogenesis, 60e62
Fritillaria unibracteata,60e61
Fritillaria ussuriensis,62e63
G
Gas chromatography, 137e138
Gastrointestinal disorders, 355
Genetic diversity studies
bioactivity and medicinal uses, 232e233
genes and metabolite association studies,
231e232
Genetic transformation, 306e308
Genetic variability, 126
Genome multiplication, 96e98

Subject Index 411
https://t.me/med1917
Genomic-based DNA diagnostic tool, 125
Genomic sequences, 123
Genomic technologies and genetic markers,
122e126
Geographical distribution and status, 89e90
Geranyl hydroquinone, 35
3-Geranyl-4-hydroxybenzoate (GBA), 33e34
Good agricultural and collection practices
crop protection and maintenance, 103
irrigation, 103
maturity of crop and harvesting, 103
postharvest management, 104
propagation methods, 100e102
soil and fertilization, 99
transplantation and planting density, 102
yield, 103e104
Govanoside A, 250e251
H
Habitat fragmentation, 96e98
Heavy metal, analysis of, 158
Henosepilachna vigintioctopunctata, 287e288
Hepatoprotective activity, 355
Herbaceous biennial plants, 5e6
Herbal medicines, 116, 290
High-performance liquid chromatography
(HPLC), 13
Himalayan herbs, 2
Himalayan Mayapple, 85e87
Himalayan plant species, 6e7
Himalayan region, 1
Human gastric adenocarcinoma cells, 33
Hydroalcoholic rhizome, 158
Hydroxycinnamate, 166
I
Immunomodulatory activity, 11
Indian Ayurvedic system, 70
Indian Himalayas, 1
Indian Podophyllum, 85
Indian Valerian. See Valeriana jatamansi
Insecticidal activity, 356
In situ conservations, 2
In vitro biotechnological interventions, 126e127
In vitro co-culture, 234e235
In vitro conservation/morphogenesis, 60e62
In vitro plant propagation and tuber/root
induction, 49t
In vitro plant tissue culture techniques, 72e73
In vitro production of bioactives, 305e306
In vitro propagation
of Ashwagandha, 302e305
of Saussurea lappa, 185e186
of S. chirayita, 233e234
In vitro regeneration, 356e358
In vivo propagation method, 357e358
Irrigation, 103
Isoquinoline alkaloids biosynthesis, 15
K
“The Kuth Act, 1978,”, 184e185
L
LC-MS-based techniques, 136e137
Lecithincholesterol acyltransferase, 10
Lithospermum,29
Low seed viability, 284e285
M
Mass spectrometry (MS), 129
Medical significance, Zanthoxylum armatum,
339e356
analgesic activity, 352e353
anthelmintic activity, 351
antiallergic activity, 353
anticholinergic, antihistaminic, and
antiserotonergic activity, 351
antidiabetic activity, 352
antifungal activity, 350
antiinflammatory activity, 352
antileishmanial activity, 353
antimicrobial activity, 339e350
antioxidant activity, 350e351
antispasmodic activity, 353
butyrylcholine esterase inhibitory activity, 353
cardiovascular disorders, 354
cytotoxic activity, 354e355
gastrointestinal disorders, 355
hepatoprotective activity, 355
insecticidal activity, 356
phytotoxic activity, 356
piscicidal activity, 356
sedative-hypnotic activity, 356
“Medicinal herbs,”, 27
Medicinal plants, 111, 244
materials, 112
species, 1
Medicinal properties
of aconitum heterophyllum, 9e11, 9t
antibacterial activity, 9e10
antidiarrheal activity, 10
antihelminthic activity, 10
antihyperlipidemic activity, 10
antiinflammatory and antipyretic activity, 10

412 Subject Index
https://t.me/med1917
Medicinal properties (Continued )
antioxidant activity, 11
immunomodulatory activity, 11
nervous system stimulation, 11
of Arnebia euchroma,28e33
anticancer effects, 29
antidiabetic and diabetic wound-healing
activity, 32
antiinflammatory effects, 29
antiobesity effects, 29
cytotoxic activity of, 33
Melaphene, 127
Metabolic engineering, 33e34
Metabolome fingerprinting, 135
Metabolomic advancements and identification of
metabolites, 133e138
Metabolomics-based approaches, 135
Methylerythritol 4-phosphate pathway, 35
Mevalonic acid/methylerythritol 4-phosphate
(MVA/MEP), 14
Mineral elemental analysis, 337e338
Molecular advancements, 96e98
Molecular bioprospection, 57e58
Molecular breeding and genetic mapping,
251e252
Molecular database studies, 252e253
Molecular markers
role of, 47e50
technique, 125e126
Monoterpenoid indole alkaloid (MIA), 116e117
Morphocytological studies
macroscopic view, 329
microscopic studies, 329
N
Native endophytic fungus, 306
Nervous system stimulation, 11
Network-based approach, 124
Next-generation sequencing (NGS), 50
to characterize transcriptome, 52
technologies, 62e63
transcriptome resources, 75
Novel phytochemical compounds, 33
Novel polymorphic SSR markers, 49e50
Nursery raising and management, 100
O
21-O-methylisoajmaline, 137
O-methyltransferases, 132
Omics, 164e166
approach, 267
technologies, 37, 50e51
Omics advancements, 62e63
ESTs and transcriptome sequencing, 297e298
genomic studies, 299e300
metabolomics studies, 300e301
proteomic studies, 296e297
in Saussurea lappa, 188e190
Omics-based advancements, 14e15
“Omics”-based strategies, 122
Omics strategies and advancements, 121e138
genomic technologies and genetic markers,
122e126
metabolomic advancements and identification of
metabolites, 133e138
specialized metabolism genes, 128e133
transcriptomic resources, 127e128
in vitro biotechnological interventions, 126e127
Organic plant culture methods, 162
Oxyrachis tarandus, 286e288
P
Pathway engineering, 294e295
Pests and diseases, 285e288
Pharmacological properties of Rhodiola
imbricata, 154e159
adaptogenic and antifatigue activity, 157
adjuvant activity, 158
analysis of heavy metal, 158
antidepressant, 157
antioxidant properties, 157
cold, hypoxia, and restraint (C-H-R) stress,
158e159
elongation of life span and antiaging activity, 157
radioprotective efficacy, 158
skin treatments, 157
Phenacoccus solenopsis, 287e288
Phenylalanine, 166
Phenylalanine ammonia lyase, 166
Phenylpropanoid pathway, 35
Pheretima posthuma,10
p-hydroxybenzoate (PHB), 33e34
Phydroxybenzoate geranyl transferase (PGT)
genes, 35
Phytochemical constituents of Rauwolfia
serpentina
ajmaline, 120
biosynthesis of ajmaline, 120
biosynthesis of reserpine, 117e119
biosynthesis of serpentine, 121
biosynthesis of strictosidine, 120
biosynthesis of yohimbine, 121
reserpine, 116e117
Phytochemicals, 250, 290e295

Subject Index 413
https://t.me/med1917
biosynthetic pathways of major bioactives,
293e295
chemotypic variability, 292e293
Phytochemistry, 11e13, 12t, 263e265
Phytocompound deoxyshikonin, 29
Phytotoxic activity, 356
Picroliv, 69e70
Picrorhiza kurroa,67e68
in Himalayan region, 68, 69t
medical significance, 70e72
omics advancements in picrosides biosynthesis,
74e77
origin and distribution, 68
phytochemistry of, 69e70
tissue culture status of, 72e74
Picrosides biosynthesis
omics advancements in, 74e77
Piriformospora indica, 305e306
Piscicidal activity, 356
Plant cell culture technologies, 27
Plant-derived molecules (PDMs), 136
Plant-derived substances, 111
Plant-microbe interactions, 1e2
Plant secondary metabolic pathways, 63
Plant tissue culture-assisted progress, 15e17
Plant tissue culture methods, 233
Podophyllin, 104e105
Podophyllotoxin, 85e86
Podophyllum hexandrum,85e88, 91te92t
adulterant, 89
chemical constituents, 94e96
geographical distribution and status,
89e90
good agricultural and collection practices
crop protection and maintenance, 103
irrigation, 103
maturity of crop and harvesting, 103
postharvest management, 104
propagation methods, 100e102
soil and fertilization, 99
transplantation and planting density, 102
yield, 103e104
medicinal uses, 104e105
molecular advancements, 96e98
morphology, 93e94
taxonomy, 88
Polyamines, 304e305
Postharvest management, 104
Primary metabolic activities, 1e2
Propagation methods, 100e102
Proteomics, 129
Proteomic tools, 77
Q
Quantitative trait loci (QTL), 251e252
R
Radioprotective efficacy, 158
Random amplified polymorphic DNA (RAPD)
markers, 123e124
Ratanjot. See Arnebia euchroma
Rauwolfia serpentina, 111e112
medical significance of, 115e116
omics strategies and advancements, 121e138
genomic technologies and genetic markers,
122e126
metabolomic advancements and identification
of metabolites, 133e138
specialized metabolism genes, 128e133
transcriptomic resources, 127e128
in vitro biotechnological interventions,
126e127
origin and distribution, 112e115
Benth. ex. Kurz, 115
Rauwolfia species, 113
selected vernacular names, 113
phytochemical constituents of
ajmaline, 120
biosynthesis of ajmaline, 120
biosynthesis of reserpine, 117e119
biosynthesis of serpentine, 121
biosynthesis of strictosidine, 120
biosynthesis of yohimbine, 121
reserpine, 116e117
Rauwolfia species, 113
Raw drug market, 14
Red shikonin-proficient lines (RCL), 34e35
Reserpine, 116e119
Rhizopus oryzae,34
Rhodiola imbricata
biochemical composition, 153e154
classification and morphology, 151e152
cultivation and propagation of, 159e163
genetic diversity, 163
geographical distribution, 153
indigenous uses, 153
omics, 164e166
pharmacological properties, 154e159
adaptogenic and antifatigue activity, 157
adjuvant activity, 158
analysis of heavy metal, 158
antidepressant, 157
antioxidant properties, 157
cold, hypoxia, and restraint (C-H-R) stress,
158e159

414 Subject Index
https://t.me/med1917
Rhodiola imbricata (Continued )
elongation of life span and antiaging activity,
157
radioprotective efficacy, 158
skin treatments, 157
taxonomy, 152
Rhodiola sachalinensis, 163
Ribosomal RNA (rRNA) genes, 125e126
RNA-seq-based profiling, 127e128
RNA-seq-based transcriptome, 129
Rosavin, 166
S
Saccharomyces cerevisiae,71e72
Salidroside, 165e166
Sarpagan bridge enzyme (SBE), 133, 139
Sarpagandha, 111, 113
Saussurea lappa, 173e174, 174t
biochemical/analytical properties, 176e178
flavonoids, 178
other constituents, 178
terpenes, 177e178
botanical identification and classification,
174e175
botany of, 175e176
challenges, 187
conservation status, 184e187
ex situ strategies, 186e187
government initiatives, 187
omics advancements in, 188e190
origin and geographical distribution, 176
therapeutic attributes of
angiogenesis activity, 183
antibacterial properties, 180
anticancerous/antitumor properties, 179e180
anticonvulsant properties, 182
antidiarrheal properties, 182
antihyperlipidemic properties, 182
antiinflammatory activity, 180
antimycobacterial activity, 183
antiparasitic properties, 182
antiulcer and cholagogic properties, 181
bronchitis, 182
cardiovascular properties, 181e182
hepatoprotective properties, 180e181
immunomodulatory properties, 181
spasmolytic activity, 183
synthesis of nanoparticles, 183e184
trade, 188
in vitro propagation of, 185e186
Saussureamine E, 177e178
Saussureamines A and B, 180
“Scrophularineae Indicae,”, 68
Secondary metabolites, 1e2
Sedative-hypnotic activity, 356
Seed germination, 100e101
Sequence-based markers, 309e310
Sequence-based sequence characterized amplified
region (SCAR), 14
SerpentinaDB, 136
Serpentine, 121
Sesquiterpene lactones (STL), 188e189
Sesquiterpenes, 180
Shigella flexneri, 180
Shikimate pathway, 119
Shikonin, 28e29
derivatives and their pharmacological properties,
29, 31t
Simple Sequence Repeat (SSR) markers, 49e50
Single nucleotide polymorphisms (SNPs), 62e63
Skin treatments, 157
Soil and fertilization, 99
Specialized metabolism genes
characterization and functional expression of,
128e133
Stevia rebaudiana, 199e202
biochemical profile analysis of, 206e207
breeding attempts for, 204e206
cultivation practices adopted for, 202
medical significance of, 202e203
steviol glycoside biosynthesis pathway and
associated genes, 207e210
steviol glycosides in, 210e213
Steviol glycosides
biosynthesis pathway and associated genes,
207e210
in Stevia rebaudiana, 210e213
synthesis, 212
Stevioside, 201
accumulation, 202
human consumption of, 206e207
Strictosidine b-glucosidase, 120
Strictosidine, biosynthesis of, 120
Strictosidine synthase (STR), 119, 129e130
Swertia chirayita
active principles, 233
cytological studies of, 224e231
ecological status, 235e236
genetic diversity studies
bioactivity and medicinal uses, 232e233
genes and metabolite association studies,
231e232
habitat and climatic conditions, 224
morphology of plant, 223e224

Subject Index 415
https://t.me/med1917
tissue culture studies in, 233e235
Swertia ciliata, 225
Swertia cordata Wall, 225
Swertia petiolata Royle, 225
T
Tanacetum cinerariifolium, 189e190
“Targeted” metabolomics, 135
Tetranychus urticae, 287e288
Therapeutic attributes of Saussurea lappa
angiogenesis activity, 183
antibacterial properties, 180
anticancerous/antitumor properties, 179e180
anticonvulsant properties, 182
antidiarrheal properties, 182
antihyperlipidemic properties, 182
antiinflammatory activity, 180
antimycobacterial activity, 183
antiparasitic properties, 182
antiulcer and cholagogic properties, 181
bronchitis, 182
cardiovascular properties, 181e182
hepatoprotective properties, 180e181
immunomodulatory properties, 181
spasmolytic activity, 183
synthesis of nanoparticles, 183e184
Therapeutic behavior, 5e6
Therapeutics potential/biological significance,
59e60
Time-of-flight (TOF) mass analyzer, 136
Tissue culture method, 46e47, 212
Tissue culture strategies for Dactylorhiza
hatagirea,46e47
Tobacco rattle virus (TRV), 123
Topoisomerase (Type II), 121
Traditional farming system, 262e263
Traditional healers, 1
Traditional Indian system of medicine (ISM),
59e60
Transcription factors (TFs), 124e125
Transcriptomic resources, 127e128
Trichoderma viride, 308e309
Trillium govanianum , 243e245
biochemical analysis, 247e250
classification and morphology, 245
distribution, 246
future goals for, 252
medical significance, 250e251
molecular breeding and genetic mapping,
251e252
molecular database studies, 252e253
origin and cytotaxonomy, 246e247
threat, 253
Trimethoxycinnamic acid, 132
Tryptophan decarboxylase, 119
Tuberous roots, 15
U
UDP-glucose flavonoid 3-O glucosylt ransferase
(UFGT), 188e189
“Untargeted” metabolomics, 135
“Upstream pathway,”, 120
V
Valeriana jatamansi, 259
agronomy technique, 262e263
botanical classification, 261e262
chemical compound identified in, 264t
conservation approach
ex situ conservation, 266
in situ conservation, 266
formulated products, 267e268
molecular characterization, 266e267
morphology, 260e261
omics approach, 267
origin and distribution, 259e260
phytochemistry, 263e265
Vascular Endothelial Growth Factor (VEGF), 179
Vegetative propagation, 101
Vesicular monoamine transporters (VMATs), 117
Vinorine hydroxylase (VH), 133
Virus-induced gene silencing (VIGS), 123
Vomilenine reductase (VR), 132
W
Water culture system, 262e263
Whole-genome sequences, 122e123
Withania somnifera, 273e274
botany, 274e275
crop improvement interventions
biotechnological interventions, 302e309
breeding efforts, 302
major challenges in ashwagandha
low seed viability, 284e285
pests and diseases, 285e288
quality control in herbal medicine, 290
medical significance, 275e278
omics advancements
ESTs and transcriptome sequencing, 297e298
genomic studies, 299e300
metabolomics studies, 300e301
proteomic studies, 296e297
origin and distribution, 275
phytochemicals, 290e295

416 Subject Index
https://t.me/med1917
Withania somnifera (Continued)
biosynthetic pathways of major bioactives,
293e295
chemotypic variability, 292e 293
Y
Yohimbine, biosynthesis of, 121
Z
Zanthoxylum armatum, 327e328
biochemical analysis
qualitative studies, 331e335
quantitative studies, 336e337
distribution, 328
genomics, 338e339
medical significance, 339e356
analgesic activity, 352e353
anthelmintic activity, 351
antiallergic activity, 353
anticholinergic, antihistaminic, and
antiserotonergic activity, 351
antidiabetic activity, 352
antifungal activity, 350
antiinflammatory activity, 352
antileishmanial activity, 353
antimicrobial activity, 339e350
antioxidant activity, 350e351
antispasmodic activity, 353
butyrylcholine esterase inhibitory activity, 353
cardiovascular disorders, 354
cytotoxic activity, 354e355
gastrointestinal disorders, 355
hepatoprotective activity, 355
insecticidal activity, 356
phytotoxic activity, 356
piscicidal activity, 356
sedative-hypnotic activity, 356
mineral elemental analysis, 337e338
morphocytological studies
macroscopic view, 329
microscopic studies, 329
pharmacological properties of, 339, 340te349t
taxonomical arrangement, 327e328
in vitro regeneration, 356e358

Author Index
https://t.me/med1917
‘Note: Page numbers followed by “f” indicate figures and “t” indicate tables.’
A
Aanandhi, V., 259, 260t, 261f
Abbagani, S., 126
Abbott, A. G., 251e252
Abdelsalam, N. R., 206
Abdelwahab, S. I., 174t
Abdin, M. Z., 305e306
Abdul Majeed Almashhedy, L., 183e184
Abd-Ur-Rehman, 275
Abe, H., 31t
Abe, I., 294
Abe, T., 294
Abe, Y., 201
Abhayankar, G., 307
Abou-Arab, A. A., 201
Abou-Arab, A. E., 201
Abou-Douh, A. M., 291e292
Abraham, A., 291e292, 302
Absar, N., 286te287t
Aburaya, S., 35
Abu-Salem, M. F., 201
Acharya, K., 286te287t
Acharya, V., 124e125
Adams, S. J., 14
Adebayo, A. A., 138
Adebola, P. O., 284e285
Ademosun, A. O., 138
Adhikari, A., 247, 247f, 250e251, 250t
Adinarayana, G., 273, 275
Afolayan, A. J., 111, 284e285
Afreen, B., 286te287t
Afsheen, N., 138
Agarwal, A. V., 233, 297e298
Agarwal, S. S., 305
Aggarwal, K. K., 251e252, 336
Agger, A., 203t
Agnihotri, R. K., 13, 73e74
Agnihotri, S., 265
Agnihotri, V. K., 71, 203t
Agrawal, P., 115
Agrawal, R., 71e72
Agrawal, S., 308
Agrawal, S. B., 291e292
Agrawala, P. K., 158
Agyemang, K., 5e6, 8
Ahamed, R., 232
Ahlawat, S., 305e306
Ahmad, H., 9t, 12t, 13, 287e288
Ahmad, I. Z., 303e305, 308, 329
Ahmad, M. N., 12t, 13
Ahmad, M. S., 247
Ahmad, M., 6e7, 9e11, 9t, 12t, 13
Ahmad, N., 212, 303e305
Ahmad, R. S., 202
Ahmad, S. S., 135
Ahmad, S., 9t, 12t, 13, 210e211
Ahmad, U., 202
Ahmad, W., 9e10, 12t, 13
Ahmada, A., 336
Ahmed, F. R. S., 232
Ahmed, I., 300
Ahmed, M., 303
Ahmed, N., 126
Ahmed, S. D., 328, 340te349t, 350e351
Ahmed, S. I., 288te289t
Ahmed, S. R., 278
Ahmed, Z., 43e45
AhmedIdris, M., 180
Ahn, B. Z., 182
Ahn, Y. J., 336, 340te349t, 356
Ahsan, W., 174t
Ahuja, A., 231e234, 292
Ahuja, N. M., 177e178
Ahuja, P. S., 8, 15e17, 33e35, 67e68, 72e75, 90,
95e96, 124, 199e200, 210e211,
251e252
Ain, Q. T., 175e176, 175f
Ainsile, W., 174e175
Airi, S., 86, 89, 93e94
Ajagannanavar, S. L., 203t
Ajanal, M., 9
Ajayakumar, P. V., 286te287t
Ajit, K. S., 290
Akao, S., 179
Akbar, F., 250e251, 250t
Akbar, M. A., 232
Akbar, S., 340te349t, 350e351
Akgun, I. H., 212
Akhoon, B. A., 277, 279te284t
Akhtar, M. S., 182, 233
Akhtar, M., 336
Akhtar, N., 309
Akihisa, T., 203t
Akkol, E., 32
367

368 Author Index
https://t.me/med1917
Akkuzu, E., 288te289t
Akmali, M., 203t
Aksenov, G. N., 5e6
Akyol, B., 212
Al Sayed, M. S. A. E., 203t
Alaagib, R. M. O., 178, 180
Alam, F., 331, 337e338, 340te349t, 350e356
Alam, K. D., 232
Alam, M., 286te287t
Al-Ansari, A. M., 9t
Alatar, A. A., 126
Al-Balushi, M. S., 180
Al-Busaidi, J., 180
Aleem, A., 223e224
Alekhya, K., 259, 260t, 261f
Alekya, B. B., 340te 349t, 352e353
Alessandra, 99
Alfarhan, A. H., 9t
Al-Groshi, A., 244e245
Alhazmi, H. A., 174t
Ali, A., 305e306
Ali, F., 247f
Ali, H., 185e186
Ali, M. N., 126
Ali, M. S., 232
Ali, M., 9t, 12t, 13, 89, 265
Ali, N., 331, 336, 339e350, 340te349t
Ali, S. I., 227te230t
Alia, A., 303
Aliasl, J., 28e29
Alic, M., 336
Alice, D., 286te287t
AliKhan, G., 251
Aljabri, A. A., 180
Al-Jindan, R. Y., 45
Al-Kawaz, H. S., 183e184
Al-Kheraif, A. A., 203t
Allam, A. I., 206
Allevi, P., 104e105
Allwood, J. W., 133e135
Al-Musa, A. M., 286te287t
Al-Samea´e, M. S., 286te287t
Alsawalha, M., 45
Alstrupp, K. K., 201
Al-Subaei, A. M., 45
Altaf, M., 183e184
Altarejos, J., 120
Altug, C., 212
Alva, A., 5e6
Alwadi, H. M., 286te287t
Al-Warthan, A., 183e184
Amadou, I., 206
Aman, N., 212
Amara, U., 175e176, 175f
Amarathunga, I. M., 173e174
Ambavade, S. D., 182
Ambrozova´, K., 62e63
Ambwani, T. K., 71
Ameri, A., 5e6
Amjad, M. S., 173, 174t
Ammar, R. A., 183e184
Amol, R. S., 303
An, L., 233e235
An, S., 205
An, T. Y., 181e182
Anand, A., 336e339, 340te349t, 351
Anandjiwala, S., 69e72
Anbu, J., 182
Ando, M., 179, 181
Andola, H. C., 57e61, 177
Andreev, I. O., 125e126
Andrew, R. L., 121
Andu´jar, I., 31t
Aneesh, T. P., 6e7
Aneja, R., 6e7, 12e13, 12t
Angelini, L. G., 204e205
Angenot, L., 118t, 121
Angurala, A., 286, 292, 305
Anilkumar, C., 136e137
Anis, I., 247, 247f
Anis, M., 126, 303e305
Anish, A., 259, 260t, 261f
Anjana, A., 182
Anjaneyulu, A. S. R., 291e292
Ankush, K., 260e261
Annarao, S., 301
Anonymous, 263
Ansari, W. A., 305
Anstrain, M., 104e105
Anthony, P., 307
Antonysami, R., 304e305
Antosiewicz, B., 207
Anwar, M., 185e186
Aoki, H., 5e6
Aoki, W., 35
Aparna, K., 9, 9t
Arabzadeh, H., 32
Arao, K., 179, 181
Arbona, V., 1e2
Archana, M., 232
Archunan, G., 9t, 11
Arfan, M., 251
Arora, R., 158, 185e186
Arora, S., 304e305
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