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1 t/blown out flares, and abnormally operating pneumatics).
2                                              Pneumatics accounted for 20%, but this contribution is l
3 lity of applying shear waves to the liver, a pneumatic acoustic wave generator was developed and test
4                In this work, we integrated a pneumatic actuated control layer to an affinity separati
5 on of elastomer surfaces under electrical or pneumatic actuation can debond various biofilms and barn
6                                              Pneumatic actuation of these patterns results in the con
7 xternal stimuli, and immediate detachment by pneumatic actuation with integrated system.
8 esis has six active degrees of freedom under pneumatic actuation, can be controlled through the input
9  and soft lithography, respectively, and the pneumatic actuator networks, on-board fuel reservoirs an
10 re we present an elastomeric microtube-based pneumatic actuator that can be extended into a microrobo
11 t performs closed-loop position control of a pneumatic actuator with disturbance rejection, demonstra
12 ons connected by a 3 degrees of freedom soft pneumatic actuator.
13  a new class of actuators called fabric soft pneumatic actuators (FSPAs).
14       A recent interest in the field of soft pneumatic actuators (SPAs) has been the introduction of
15 ane emissions were attributed to losses from pneumatic actuators and controls, engine crankcases, com
16                               However, these pneumatic actuators each require a dedicated pressure su
17                                 By embedding pneumatic actuators in a soft material inspired by a bio
18                               Arrays of soft pneumatic actuators initially show promise as small-reso
19 red in a wearable textile bladder to operate pneumatic actuators on demand, with system performance o
20                                        Soft, pneumatic actuators that buckle when interior pressure i
21 essively cure to robustly produce monolithic pneumatic actuators whose shape can easily be tailored t
22 ser interaction, and direct interfacing with pneumatic actuators.
23 ited actuators; electrostatic actuators; and pneumatic actuators.
24 p dehydration (BD), air-injection-flow (AI), pneumatic-air-discharge (PAD), optical (OP) and X-ray-co
25 DEAs), ionic electroactive polymers (IEAPs), pneumatics and hydraulics systems, shape memory polymers
26 oaded into a widely available controller for pneumatics and thermocycling.
27 57 Gg in emissions for completion flowbacks, pneumatics, and equipment leaks, coupled with EPA nation
28 after tissue washing, antigen retrieval, and pneumatic application of PNGase F for enzymatic digestio
29 ventricular fibrillation, with the hydraulic-pneumatic band system (HB-CPR), with a pneumatic vest sy
30 mpression was performed by a circumferential pneumatic bladder (vest-cardiopulmonary resuscitation).
31  phase, we developed a system that couples a pneumatic blast to a microfluidic channel to precisely a
32              Pigs (n = 6/group) received two pneumatic blasts to the right thoracic cage at baseline,
33                                 Intermittent pneumatic calf compression increased lower limb venous r
34 cardiac output measurements with and without pneumatic calf compression.
35 ht-emitting diode (NIR-LED) array, and small pneumatic chamber.
36              In the microfluidic chip, three pneumatic check valves were designed to coordinate with
37 atients receiving prophylaxis), intermittent pneumatic compression (25%), warfarin (16%), or graduate
38                                 Intermittent pneumatic compression (IPC) is an effective form of deep
39                                 Intermittent pneumatic compression (IPC) is commonly used to control
40  meta-analysis assessed whether intermittent pneumatic compression (IPC) of the lower limbs was effec
41 d (0-5 degrees C) injectate was unchanged by pneumatic compression (off, 7.00+/-2.28 L/min; on, 6.89+
42                                 Intermittent pneumatic compression [IPC] of the foot used daily for 3
43 , including graduated compression stockings, pneumatic compression boots, unfractionated heparin, low
44                       Use of an intermittent pneumatic compression device alone is neither superior n
45 unct therapy interventions included advanced pneumatic compression devices (APCDs) (1 RCT, 5 observat
46  thromboprophylaxis, adjunctive intermittent pneumatic compression did not result in a significantly
47 re unit (ICU) to receive either intermittent pneumatic compression for at least 18 hours each day in
48 ent randomization - 991 were assigned to the pneumatic compression group and 1012 to the control grou
49 occurred in 37 of 957 patients (3.9%) in the pneumatic compression group and in 41 of 985 patients (4
50 curred in 103 of 991 patients (10.4%) in the pneumatic compression group and in 95 of 1012 patients (
51 ractionated or low-molecular-weight heparin (pneumatic compression group) or pharmacologic thrombopro
52              Whether adjunctive intermittent pneumatic compression in critically ill patients receivi
53                                              Pneumatic compression in patients with a body-mass index
54  with a reduced risk of thromboembolism were pneumatic compression in patients with body-mass indexes
55                           While intermittent pneumatic compression is an established method of DVT pr
56     Phase 1 (n = 18) examined the effects of pneumatic compression on pulmonary artery temperature.
57 ter trials comparing the use of intermittent pneumatic compression or chemoprophylaxis alone to a com
58                                 Intermittent pneumatic compression was applied for a median of 22 hou
59 uding compression garments) and intermittent pneumatic compression, as well as an emerging spectrum o
60 ercent of control patients were treated with pneumatic compression, warfarin, enoxaparin, or unfracti
61           A common component of treatment is pneumatic compression, which requires patients to remain
62  55, 82.1%) and programmable (n = 53, 79.1%) pneumatic compression.
63                                        These pneumatic computers demonstrate a framework for the embe
64 er into a cohesive solid using an air-driven pneumatic condenser fitted with an amalgam plugger at a
65    The electric device was interfaced with a pneumatic console such that the rate could be decreased
66 ol by grouping actuators into interconnected pneumatic control networks, but relies on manual network
67           Existing designs for entirely soft pneumatic control systems are capable of either digital
68                Rats were subjected to TBI by pneumatic controlled cortical impact.
69                                              Pneumatic controllers in level control applications on s
70             Emissions from 377 gas actuated (pneumatic) controllers were measured at natural gas prod
71 t integrates high voltage CE power supplies, pneumatic controls, and fluorescence detection optics ne
72 termittent forearm compression produced by a pneumatic cuff also evoked brief increases of SSNA.
73 ss was manipulated in one arm by inflating a pneumatic cuff to 100 mmHg, whilst the other arm remaine
74                                      Using a pneumatic cuff, we pressurize muscle midcontraction at 2
75  BP transducers, a very accurate (+/- 0.05%) pneumatic dead weight tester was used to apply pressures
76 t surgery but most of them were treated with pneumatic descemetopexy and a few ended in penetrating k
77 ade is an option in cases where methods like pneumatic descemetopexy fail.
78                                              Pneumatic descemetopexy was attempted thrice (twice with
79 de in late-onset DMD cases not responding to pneumatic descemetopexy.
80 on-site optical gas imaging (OGI) survey and pneumatic device count data from 1 year prior, were comb
81                 Fifty-two patients underwent pneumatic device insertion and 32 patients received a ve
82 ific emission factors for natural gas driven pneumatic devices at onshore production facilities in th
83 termittent bleed and 26 continuous low-bleed pneumatic devices were measured using a high-volume samp
84         Measurements of continuous low-bleed pneumatic devices were statistically lower than the upda
85 s, and reductions in the usage of gas-driven pneumatic devices.
86         This paper describes completely soft pneumatic digital logic gates having a physical scale ap
87 velop a fully textile platform for embedding pneumatic digital logic in wearable devices.
88                                              Pneumatic dilatation and botulinum toxin (BOTOX) injecti
89                                  At present, pneumatic dilatation and Heller myotomy combined with an
90 d clinical trials comparing this option with pneumatic dilatation and Heller myotomy.
91 pnomenusa and airway complications requiring pneumatic dilatation, he is alive and has a satisfactory
92 srupting the lower esophageal sphincter with pneumatic dilation (70%-90% effective) or laparoscopic m
93                                              Pneumatic dilation (PD) is often billed as a "short term
94 ients with achalasia are treated with either pneumatic dilation (PD) or laparoscopic Heller myotomy (
95                       In uncontrolled trials pneumatic dilation (weighted mean [SD]) is 72% (26%) eff
96 kely to respond to any therapy (BoTox [71%], pneumatic dilation [91%], or Heller myotomy [100%]) than
97 or this dysfunction for a sustained time are pneumatic dilation and Heller myotomy.
98 efficacious than alternative treatments like pneumatic dilation and laparoscopic Heller myotomy.
99                                              Pneumatic dilation and laparoscopic Heller's myotomy (LH
100                                         Both pneumatic dilation and surgical myotomy are effective th
101                                              Pneumatic dilation and surgical myotomy are the most eff
102 CE 2: POEM, laparoscopic Heller myotomy, and pneumatic dilation are effective therapies for type I an
103  PRACTICE ADVICE 12: POEM may be superior to pneumatic dilation for patients with failed initial POEM
104  describing favorable long-term outcomes for pneumatic dilation make this a reasonable option to cons
105 is study sought to explore how long a single pneumatic dilation may induce symptom remission in a tre
106      Effect of peroral endoscopic myotomy vs pneumatic dilation on symptom severity and treatment out
107  had undergone either Botox injection and/or pneumatic dilation preoperatively.
108 s had previous therapy of achalasia, 21 with pneumatic dilation, 1 with BOTOX, 6 with balloon and BOT
109 chnique, as well as its efficacy compared to pneumatic dilation, myotomy, and combination therapy.
110                                              Pneumatic dilation, per-oral endoscopic myotomy and lapa
111                                 Surgery with pneumatic displacement and intravitreal injection of Afl
112                     Group 1 was treated with pneumatic displacement and rtPA-injection.
113                                              Pneumatic displacement and vitrectomy with direct evacua
114 gen activator (tPA) injection procedure, and pneumatic displacement of submacular hemorrhage with int
115 r reaching the central cornea for successful pneumatic dissection and substantially flattens the lear
116                                              Pneumatic dissection created a "big bubble" in 67 of 80
117       The success rate and learning curve of pneumatic dissection in one clinical practice were analy
118 l big-bubble formation can be anticipated if pneumatic dissection is attempted at a sufficiently deep
119                     Success rate and type of pneumatic dissection obtained; best spectacle-corrected
120                                              Pneumatic dissection succeeded in 113 of 155 eyes (72.9%
121                                              Pneumatic dissection succeeded in 7 cases (87.5%).
122                                              Pneumatic dissection succeeded in 75 of 88 eyes (85%).
123 Patients undergoing successful type 1 bubble pneumatic dissection using a standard DALK technique wer
124 r DALK was keratoconus (67.2%, n = 397), and pneumatic dissection was achieved in 72.9% (n = 431) of
125         During surgery, the cannula used for pneumatic dissection was inserted into the peripheral st
126         Surgical parameters, success rate of pneumatic dissection, and complications were recorded.
127                              Success rate of pneumatic dissection, corrected distance visual acuity (
128 he depth reached by the cannula tip used for pneumatic dissection.
129 o 550 mum in depth and 9 mm in diameter; (2) pneumatic dissection; (3) debulking of approximately 80%
130 ncluding siphoning, capillary and centrifugo-pneumatic dissolvable-film (DF) valves.
131                                      Here, a pneumatic-driven, origami-based deformation unit that of
132 cell types and subpopulations, including the pneumatic duct, individual intestinal smooth muscle laye
133 niques while the neurites were deformed with pneumatic ejection of bath solution at 5-15 psi using a
134               Among these are the storage of pneumatic energy to realize complex switching sequences
135 ic gate utilizes a single bistable valve-the pneumatic equivalent of a Schmitt trigger-which relies o
136                                A multi-modal pneumatic feedback system was designed to allow for tact
137 ssure-regulating components for hydraulic or pneumatic fluidicelastomer actuators, limit their practi
138 tetanurans), and the presence of a posterior pneumatic foramen or fossa (absent in most tetanurans, b
139 Finally, we also register for the first time pneumatic foramina (fo) and fossae connecting camellate
140    A spray is generated by the action of the pneumatic force of the mass spectrometer (MS) vacuum at
141 pportunities in robotics, including hydrogel pneumatic grippers and an untethered bioinspired robotic
142  Equally, they can be remotely operated with pneumatic, heating, and magnetic elements for post-proce
143 usion was induced in male Wistar rats with a pneumatic impactor device.
144          A new combination of ultrasound and pneumatic impactor includes the advantages of each mode.
145                    This study reports a Soft Pneumatic Inchworm Double balloon (SPID) mini-robot for
146 wing the application of stimuli, for example pneumatic inflation(2-5).
147  The concentration of dopamine introduced by pneumatic injection remained stable when sampled by cycl
148 c outputs as a function of one, or multiple, pneumatic inputs-allow fabrication of digital logic circ
149             Its design, inspired by Nesler's pneumatic interference actuator, ensures stable skin-to-
150 ic layer containing the gate structure and a pneumatic layer are fabricated by soft-lithography in PD
151 uid extraction technique was performed using pneumatic liquid recirculation on a centrifugal microflu
152 um-garnet lithotripsy is more effective than pneumatic lithotripsy for ureteral calculi, but no more
153 aluation of a new combination ultrasound and pneumatic lithotripter reported an overall stone free ra
154 countered in our previous 52 patients with a pneumatic LVAD.
155 lass CE separation channels, microfabricated pneumatic membrane valves and pumps, and a nanoliter flu
156 on channel is pressurized such that when the pneumatic microvalve opens briefly, a variable-volume sa
157 (PDMS) microchip sample injector featuring a pneumatic microvalve that separates a sample introductio
158   TESLI integrates a network of programmable pneumatic microvalves that regulate vacuum and pressure
159 individually controlled using in-house-built pneumatic microvalves to manipulate the flow pathway.
160 ng" fluid and a "light-blocking" fluid using pneumatic microvalves.
161  can run up to 80 assays in parallel using a pneumatic multiplexing architecture.
162 d exquisitely preserved skull with thickened pneumatic nasals, a median frontal horn, and a dorsal pr
163                        Isotopic analysis via pneumatic nebulization MC-ICP-MS, after sample digestion
164  with conventional sample introduction using pneumatic nebulization requires the dissolution of these
165 of delta34S for a range of mineral waters by pneumatic nebulization sample introduction and the analy
166  the PVG-ICPMS methodology over conventional pneumatic nebulization-ICP(MS)/MS, the results of which
167 nd toluene radical cations are produced with pneumatic nebulization.
168  in mass spectra of water droplets formed by pneumatic nebulization.
169 roplets with opposite polarities produced by pneumatic nebulization.
170 locity distributions for indirect and direct pneumatic nebulizations in plasma spectrometry.
171 ) were merged into an aerosol generated by a pneumatic nebulizer (PN) and introduced into an ICPMS.
172 those obtained with a conventional crossflow pneumatic nebulizer (PN), equipped with a Scott-type spr
173 er plasma was sustained between a home-built pneumatic nebulizer and the inlet capillary of an Orbitr
174                                  The on-chip pneumatic nebulizer provided control of the flow of the
175         In the second design, a miniaturized pneumatic nebulizer was fabricated as an integral part o
176                                        Soft, pneumatic NOT, AND, and OR digital logic gates-which gen
177 es consistent with neurovascular rather than pneumatic origin.
178                                        Thus, pneumatic oscillators can serve as on-chip frequency ref
179                                     Although pneumatic otoscopy and adjunctive tests offer additional
180  LR, 31; 95% CI, 26-37) tympanic membrane on pneumatic otoscopy are the most useful signs for detecti
181           She had no nystagmus or vertigo at pneumatic otoscopy.
182 nic membranes were translucent and mobile at pneumatic otoscopy.
183  OR digital logic gates-which generate known pneumatic outputs as a function of one, or multiple, pne
184  a micropipette onto the cell surface with a pneumatic picopump, producing a shift in the center of m
185 CI were generated with a precisely regulated pneumatic piston, and forebrain tissue was evaluated usi
186 encing the design of seed metering plates in pneumatic planters.
187 puncture injuries were created using a novel pneumatic-powered system.
188 turgidity was collected using a custom-built pneumatic pressure cuff.
189                                              Pneumatic pressure stimuli were delivered to the fingern
190                 Upon application of negative pneumatic pressure, elastic beam elements in these actua
191 legs, the radius of the anchoring frame, and pneumatic pressure, to accommodate a wide range of appli
192 tion flowing under a controlled and constant pneumatic pressure.
193         By tweaking fluid infusion rates and pneumatic pressures and maintaining core body temperatur
194            For small children, paracorporeal pneumatic pulsatile pumps (e.g., Berlin Heart EXCOR VAD,
195 ted to a drive console that delivers a 65-mL pneumatic pulse during cardiac systole.
196 that the likely source of these wavelets are pneumatic pulses caused by opening and closing of respir
197 tions e.g., hydrophobic and capillary valves pneumatic pumping and blister storage packages.
198                                            A pneumatic pumping apparatus was constructed to transport
199                                  Non-contact pneumatic pumping enabled a multi-cycle liquid-liquid ex
200 r completion flowbacks, equipment leaks, and pneumatic pumps and controllers are assumed to be repres
201                         Emission factors for pneumatic pumps and controllers as well as equipment lea
202 nt to a previously reported device where two pneumatic pumps delivered pulses of glucose and buffer t
203 e 3-layer glass/polymer device contained two pneumatic pumps, a 12 cm mixing channel, and a 0.2 micro
204   Vitreoretinal fellows perform variably few pneumatic retinopexies but have outcomes comparable to r
205 ombined scleral buckle and PPV (4 patients), pneumatic retinopexy (3 patients), and laser or cryother
206 by laser barricade (23%), scleral buckle and pneumatic retinopexy (both 11%), and cryotherapy (5%).
207 ion of post-operative demarcation line after pneumatic retinopexy (PnR) in a subtotal rhegmatogenous
208                                              Pneumatic retinopexy (PnR) is associated with superior v
209  trial participants who had undergone either pneumatic retinopexy (PnR) or pars plana vitrectomy (PPV
210 genous retinal detachment (RRD) treated with pneumatic retinopexy (PnR) or vitrectomy were included.
211 ose of this trial was to compare outcomes of pneumatic retinopexy (PnR) versus pars plana vitrectomy
212                                              Pneumatic retinopexy (PR) is the only clinic-based metho
213 with RD that were successfully repaired with pneumatic retinopexy (PR), scleral buckle (SB), pars pla
214 Published clinical trials (index studies) of pneumatic retinopexy (PR), scleral buckling (SB), pars p
215 ic comorbidities, and surgical intervention (pneumatic retinopexy [PR], pars plana vitrectomy [PPV],
216 photocoagulation, and 7.6% received surgery (pneumatic retinopexy [PR], pars plana vitrectomy with si
217 reoperative characteristics: (1) traditional pneumatic retinopexy and (2) nontraditional pneumatic re
218 nto the inferior fornix without suture after pneumatic retinopexy and was kept in place for 3 days.
219                                              Pneumatic retinopexy appeared to be effective, safe, and
220            Thirty patients who had undergone pneumatic retinopexy as the initial procedure for rhegma
221  was possible in 16 of the 27 RD cases, with pneumatic retinopexy being the most common approach.
222                            Aniseikonia after pneumatic retinopexy for rhegmatogenous RD may be relate
223 atients who underwent external buckling with pneumatic retinopexy for uncomplicated rhegmatogenous re
224 83% vitrectomy, 5% scleral buckling, and 12% pneumatic retinopexy in 2014.
225                                              Pneumatic retinopexy is a good surgical option for prima
226            Short-term external buckling with pneumatic retinopexy is a novel and effective treatment
227                                              Pneumatic retinopexy is a retinal reattachment procedure
228                                              Pneumatic retinopexy is an effective treatment modality
229                                              Pneumatic retinopexy is an effective, minimally invasive
230                                              Pneumatic retinopexy offers superior VA, less vertical m
231                                              Pneumatic retinopexy should be considered the first line
232 ion are theoretically possible by increasing pneumatic retinopexy utilization from the current rate o
233 , AND PARTICIPANTS: Post hoc analysis of the Pneumatic Retinopexy Versus Vitrectomy for the Managemen
234 ents with primary macula-off RRD meeting the Pneumatic Retinopexy versus Vitrectomy for the Managemen
235 ine treatment for RRD in patients fulfilling Pneumatic Retinopexy versus Vitrectomy for the Managemen
236 el was constructed based on results from the Pneumatic Retinopexy versus Vitrectomy for the Managemen
237 pars plana vitrectomy, scleral buckling, and pneumatic retinopexy was analyzed.
238                                              Pneumatic retinopexy was compared with PPV in all analys
239                                              Pneumatic retinopexy was found to be comparable with scl
240 as performed in 6 eyes, and cryotherapy with pneumatic retinopexy was performed in 1 patient.
241 luoropropane gas was used more commonly, and pneumatic retinopexy was used more commonly in COVID-19-
242 went vitrectomy, scleral buckle surgery, and pneumatic retinopexy were 71.4%, 14.3%, and 14.3% in the
243 theast demonstrated a greater preference for pneumatic retinopexy when compared to all other regions
244                     Increased utilization of pneumatic retinopexy would achieve significant cost savi
245  treatment (scleral buckling, vitrectomy, or pneumatic retinopexy).
246                           Three months after pneumatic retinopexy, 18 patients (60.0%) developed micr
247  if they were repaired using scleral buckle, pneumatic retinopexy, 25- or 27-gauge pars plana vitrect
248 s, including vitrectomy, scleral buckle, and pneumatic retinopexy, are the only means to repair retin
249 est, despite its historical association with pneumatic retinopexy, did not demonstrate a greater pref
250 arative cost analyses were performed between pneumatic retinopexy, scleral buckling, and vitrectomy.
251                                              Pneumatic retinopexy, when compared with PPV, was associ
252 tes to determine potential cost savings with pneumatic retinopexy.
253 tiple gas bubbles in a porcine eye model for pneumatic retinopexy.
254 an occur following pars plana vitrectomy and pneumatic retinopexy.
255 nal detachments include scleral buckling and pneumatic retinopexy.
256 atogenous retinal detachment were undergoing pneumatic retinopexy.
257 ion and frequent intervals immediately after pneumatic retinopexy.
258 s pars plana vitrectomy, scleral buckling or pneumatic retinopexy.
259 ed with scleral buckle, laser barricade, and pneumatic retinopexy.
260  pneumatic retinopexy and (2) nontraditional pneumatic retinopexy.
261 xudative RD); 1 (10%) underwent cryopexy and pneumatic retinopexy; 3 (30%) underwent vitrectomy, and
262                              Here, we report pneumatic ring oscillator circuits built from microfluid
263 silicon substrates is evaluated for use with pneumatic selectivity enhancement techniques for targete
264 ic foams allow the simple design of fully 3D pneumatic soft machines using common forming techniques.
265  leads and electronic controllers, tethering pneumatic soft robots with multiple degrees of freedom i
266       Here, we present a design approach for pneumatic SoRos that integrates gradient-based topology
267  large-particle flow cytometer with a gentle pneumatic sorting mechanism to process and spectrally so
268  circular sheet, actuated symmetrically by a pneumatic source, using pressure to change shape nonline
269              The ion source employs a simple pneumatic spray operated at extremely high nebulizing ga
270 ifferences when using a commercial automatic pneumatic sprayer and a sublimator for lipid imaging ana
271 as deposited onto a glass slide using an HTX pneumatic sprayer.
272 ith glutaraldehyde and matrix coating with a pneumatic spraying device.
273 ity of the nebulizing gas provides efficient pneumatic spraying of the charged liquid sample.
274 using a computer-controlled, MRI-compatible, pneumatic stimulator.
275  a function of the frequency of the punctate pneumatic stimulus trains and stimulus site (glabrous li
276 ossesses intraosseous pneumaticity, and that pneumatic structures also extend beyond the anterior tho
277 mework for the future camerate and camellate pneumatic structures of more derived saurischians.
278 mplifying materials may open new avenues for pneumatic system engineering, robotics, damping, or micr
279 e-specialized muscle architecture produces a pneumatic system that is adapted for the isometric contr
280 nkage-based constructions is challenging and pneumatic systems require a constant applied pressure to
281                                        A new pneumatic tactile stimulator, called the TAC-Cell, was d
282 al counterpulsation (EECP) is a noninvasive, pneumatic technique that provides beneficial effects for
283 uirement of physical connections to off-chip pneumatics, the proposed sensor chip can efficiently cap
284 ssion to the microbiology laboratory via the pneumatic tube system and (ii) autoverification of GAS N
285 t a specific angle (54.74 degrees ) inside a pneumatic turbine, which must be designed to achieve sta
286 replicate the vertical stiffness of existing pneumatic tyres commonly used in wheelchairs while achie
287                      Like existing solid non-pneumatic tyres, FS-NPTs are puncture-proof and will red
288 thermal cycling, electrophoretic separation, pneumatic valve fluidic control, and four-color laser ex
289     The design incorporates a reduced-volume pneumatic valve that actuates (on the order of hundreds
290 ance capillary electrophoresis channels, and pneumatic valves and pumps onto a single microfabricated
291 he muChopper was improved by automation with pneumatic valves, allowing fluorescence measurements to
292 w rate) was regulated by computer-controlled pneumatic valves, which allowed fast switching of the pr
293 the need for sophisticated external pumps or pneumatic valves.
294 o sensors, only five actuators, and a simple pneumatic valving system that operates at low pressures
295 ur unique, dissolvable-film based centrifugo-pneumatic valving was employed to provide sample-to-answ
296     Chest compression with a circumferential pneumatic vest enhances blood flow, but the size, weight
297 aulic-pneumatic band system (HB-CPR), with a pneumatic vest system (PV-CPR), and with standard manual
298                                              Pneumatic vitreolysis is reported to be cost-effective a
299                                              Pneumatic vitreolysis using perfluoropropane (C(3)F(8))
300 tions for VMT include pars plana vitrectomy, pneumatic vitreolysis, enzymatic vitreolysis, and observ

 
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