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Ординатура / Хирургия / Библиотека им академика М.И. Перельмана / Книга_1127_Библиотеки_им_академика_М_И_Перельмана

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Index
https://t.me/med1917
immunology 24–6, 25
infection 26–7
NOTES vs laparoscopy 19
peritoneum 22–3, 23
respiratory system and acid-base disturbance
20–1
platforms 12–18, 274–5, 274, 275
availability 13–16, 14–17
bariatric procedures 165
colorectal procedures 142
critical features 12–13, 13
closure 13, 59–69
peritoneal distension 13
safe access entry 12
stability 13
disruptive concepts 16–17
Incisionless Operating Platform 14–15, 15, 275,
276
multitasking see multitasking platforms
NOTES Scope 14, 15, 274–5, 274
robotized 99–101, 100
see also individual platforms
pneumoperitoneum see peritoneal distension
POEM 8, 13, 310
avoidance of compartment syndrome 212
equipment 205–6, 207
esophageal achalasia 203–11, 204–11
indications 205
post-operative care 211–12
pre-operative preparation 211
procedure 206–12, 207–11
results 212
pregnancy
fetal NOTES 240
intra-amniotic surgery 237–9
maternal pathology see pregnant women
pregnant women 232–7
endoscopy 233
NOTES 234–7, 234
advantages and pitfalls 234–5, 237
devices and instrumentation 236
energy level 236
infection risk 235–6
infl ammation 236
literature review 234
obesity 235
vs. laparoscopy 235, 235, 236
risks 232–3
propofol 218
prostatectomy 178–9
proton pump inhibitors 33
publications 40
R-scope 265, 266
Rao, G.V. 6
rectal cancer 151–61
local excision 151–2
NOTES 152–3
transanal rectosigmoid resection 153
animal studies 153–4, 154, 155
clinical experience 157–8, 158
future developments 158–9
human cadaver studies 155–7, 156,
157
see also colorectal procedures
Reddy, D.N. 6
respiratory system 20
retraction, simulation of 293
retroperitoneal procedures 203, 204
transgastric 49, 51
rigid endoscopic procedures
appendectomy 130–1, 132–4
simulation 293
transvaginal cholecystectomy 122, 123–4,
123
robotics 98–101, 99
da Vinci robotic system 98–9, 266
fl exible 266
laparoscopic robots adapted to NOTES
98–9, 99
micro robots 101, 266–8, 268
robotized fl exible platforms 99–101,
Roticulator Endo Mini-shears 172
Roticulator Endo Dissect 172
self-approximating translumenal access 310
self-assembling magnets (SAMSEN) 281, 282
Semm, Kurt 4
Sensei system 100
sentinel node biopsy 282–3
Shape Tool 269, 276, 277
ShapeLock TransPort Multi-Lumen Operating
Platform 172, 264, 264
simulators 95, 95, 278–9, 291–307
assessment of competency 295
clinical interest in 291
Endoscopic-Laparoscopic Interdisciplinary
Training Entity (ELITE) trainer 278, 279
Fundamentals of Laparoscopic Surgery (FLS)
trainer 278
limitations 279
surgical procedures 293–4
team simulation 297–8
translumenal access 292–3
types of 295–7, 296
EASIE-R 296–7, 296
ELITE 295–6, 296
virtual reality-based 95, 95, 96–8, 97, 98, 98,
278, 298–305
single-incision laparoscopic surgery (SILS) see
single-port surgery
single-incision transaxillary endoscopic neck
surgery 200
single-port surgery 80–93, 309
adrenalectomy 88–9
appendectomy 86, 137–8
cholecystectomy 84–6, 85, 86
colorectal procedures 89–91, 90, 91
hazards and benefi ts 81–2, 81, 82
instrumentation 82–4, 82–4
philosophy of 80–1
splenectomy 87–8, 88
transrectal 201–3, 201–3
upper gastrointestinal and bariatric surgery
86–7, 87
sleeve gastrectomy 166–7, 167, 168
Society of American Gastrointestinal and
Endoscopic Surgeons (SAGES) 6, 257, 291
sonoelastography 283
spatial orientation see guidance systems
, 100, 266–8
100
specimen extraction 44–5
simulation 294
see also NOSE
sphincterotome “cut” gastrotomy 47
SPIDER single-port device 84
spillage control 41–2, 43
splenectomy 87–8, 87, 88
staging
intra-abdominal tumors 71–2,
liver disease 70–1
stapling systems 66, 66, 263–4
stents 309, 309
esophageal 60
sterile ports 43
sterilization 253
stitching systems 63–6, 64–6, 260–3, 261–3
Eagle Claw 65, 65, 261–3, 262
Endo Stitch 260–1
g-Prox 64, 263, 263
loop-anchor purse-string (LAPS) 261, 261
LSI Purse String Suturing device 65, 261, 262
T-tags 63, 63, 260, 261, 262
StomaphyX device 168
submucosal endoscopy with mucosal fl ap 45–7,
47
SurgASSIST stapling system 263–4
surgical sealants 310
surgical simulation 96, 96
systemic infl ammatory response syndrome (SIRS)
30
T-tags 63, 63, 260, 261, 262
technical challenges 258, 273
thoracic cavity surgery 244–50
access 244–5
applications 247–8
barriers to practice 248–9
fl exible endoscopic procedures 248
future of 249
infection control 35–6
transesophageal 245–7, 245–7
thyroidectomy 188–96, 189, 199–201
minimally invasive 199–200
axillo-bilateral-breast approach 200
video-assisted (MIVAT) 200
rationale and history 189–91, 190, 191
transoral 46, 191–5
anatomical studies 191–3, 192, 193
cadaver studies 193–4
clinical studies 195
living animal studies 194–5, 194
video-assisted (TOVAT) 200–1
tissue dissection, simulation of 293
tissue glue 67
tissue ligation, simulation of 293
training 270–1, 273–86, 279
animal laboratory experience 7, 153–4, 154,
155, 194–5, 194, 298
assessment 279–80
simulators see simulators
transanal access 61
simulation 292
transanal endoscopic microsurgery 61, 61, 142,
151, 203
Transanal Endoscopic Operation device 142
71
, 263
316
Index
https://t.me/med1917
transanal rectosigmoid resection 153
animal studies 153–4, 154, 155
clinical experience 157–8, 158
future developments 158–9
human cadaver studies 155–7, 155–7
transanal sigmoidectomy with rectal mobilization
54–5, 55
transcolonic (trans-sigmoid) access 54
infection control 33–5
simulation 292
transduodenal access 46, 49, 51
transesophageal access 45, 46
thoracic cavity surgery 245–7,
245–7
transgastric access
appendectomy 135–7
hybrid NOTES 135–7
pure NOTES 135
cholecystectomy 119–21
infection control 31–3
peritoneoscopy 111–16, 111–16
in pregnancy 236
simulation 292
urology 176, 178
veterinary NOTES 219–20, 219
oophorectomy 223–5, 224, 225
transgastric peritoneal access 21, 46, 47
percutaneous-assisted 49, 50
transgastric retroperitoneal access 49, 51
translumenal access 4–5
self-approximating 310
simulation 292–3
see also individual routes
transoral access 45–9, 46, 46
complications 44
gastric plication 168, 169
thyroidectomy 46, 191–5
anatomical studies 191–3, 192, 193
cadaver studies 193–4
clinical studies 195
living animal studies 194–5, 194
video-assisted (TOVAT) 200–1
transrectal access 53–4, 141–2
single-port devices 201–3, 201–3
viscerotomy closure 142
see also entries under transanal
transumbilical surgery 8–9
transurethral access 178–80, 179, 180
infection control 35
transvaginal access 5, 7–8, 7, 21, 49–53, 310, 310
advantages, disadvantages and
contraindications 52
appendectomy 128
rigid 132–3, 135
rigid with fl exible instruments 131, 134
cholecystectomy 121–4
hybrid technique with fl exible endoscope
121–2, 123
hybrid technique with rigid laparoscopic
instruments 122, 123–4, 123
pure NOTES technique 121
complications 44
direct vision 52,
gynecology 182–5
colpotomy 182–3, 183
fertiloscopy 183–4, 183
simplifi
hydroperitoneum 52, 54
infection control 29–31
laparoscopically assisted 52–3
in pregnancy 236
simulation 292
urology 172–3
veterinary NOTES 220, 220
abdominal exploration 226
laparoscopic oophorectomy/
transvaginal laparoscopy 5
transvesical access 55–6, 56
infection control 35–6
simulation 292–3
urology 174–6, 175, 177
twin-twin transfusion syndrome 237
upper gastrointestinal surgery 86–7, 87
urologic procedures 172–81
hybrid 173–4
transgastric 176, 178
transurethral 178–80, 179, 180
transvaginal 172–3
transvesical 174–6, 175, 177
USGI TransPort scope 64
veterinary NOTES 215–31
access 219–21
laparoscopic monitoring 221, 221
transgastric 219–20, 219
transvaginal 220, 220
53
ed method 184–5, 184, 185
ovariohysterectomy 226
advantages and disadvantages of NOTES 216,
216
anesthesia and postoperative analgesia
218–19
closure 222–3
complications 223
exposure and navigation 221–2,
222
instrumentation 217–18, 217, 218
insuffl ation 221
pre-operative preparation 218
procedures
canine gastropexy 228–30, 229
canine transgastric oophorectomy 223–5,
224, 225
oophorectomy in standing mares 226–8,
227, 228
transvaginal abdominal exploration in mares
226
transvaginal-assisted laparoscopic
oophorectomy/ovariohysterectomy
226
video-assisted procedures
mediastinoscopy (VAM) 244
minimally invasive thyroidectomy (MIVAT)
200
thoracic sympathectomy 247, 247
thoracoscopic surgery (VATS) 244
transoral thyroidectomy (TOVAT) 200–1
virtual reality simulators 95, 95, 96–8, 97, 98, 98,
278, 298–305
development of 301–5, 301
hardware 303–5, 304
interactive 97
intraoperative assistance 96–8, 97, 98
laparoscopic surgery and GI endoscopy
299–300, 299
pre-operative procedures
modeling 95
simulation 96, 96
surgical planning 95–6, 96
software 301–3, 302, 303
unique issues 300–1
visualization, simulation of 293
Watrelot, Antoine 5
Zorron, Ricardo 7, 7
zygote intra-fallopian transfer 186
, 305
317