Working languages:
English to French
Turkish to French
Turkish to English

Michael Mestre
Sci & Medical translations - Physics PhD

Paris, Ile-De-France, France
Local time: 01:10 CEST (GMT+2)

Native in: French 
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Account type Freelance translator and/or interpreter
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Services Translation, Interpreting, Editing/proofreading, Website localization
Expertise
Specializes in:
Medical: InstrumentsPhysics
Science (general)Mathematics & Statistics

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Words translated: 5,425
Volunteer / Pro-bono work Open to considering volunteer work for registered non-profit organizations
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All accepted currencies Euro (eur)
KudoZ activity (PRO) PRO-level points: 268, Questions answered: 133, Questions asked: 148
Project History 23 projects entered

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Portfolio Sample translations submitted: 2
English to French: Patent for solid state short pulse Laser system (from http://www.freepatentsonline.com/5742634.html)
General field: Tech/Engineering
Detailed field: Patents
Source text - English
What is claimed is:

1. A solid state short pulse laser system comprising:

A) a laser crystal;

B) an optical pump arranged to pump said laser crystal;

C) at least two mirror surfaces defining a resonator, said resonator defining a beam path which transits said laser crystal;

D) a first optical shutter installed within said beam path for blocking passage of light in said beam path except for short periods of time, said first optical shutter defining an ON period and an OFF period;

E) a second optical shutter installed within said resonator for blocking the passage of light in said resonator except for periodic sub nanosecond intervals, said intervals being spaced such that during each ON period a light pulse traveling at the speed of light in said resonator is able to make a plurality of transits through said resonator, increasing in intensity on each transit to defined an intensified pulse;

F) an optical release mechanism for periodically releasing intensified pulses from said resonator, said periodically released intensified pulses defining an intensified pulse laser beam.


2. A short pulse laser system as in claim 1, wherein said optical pump comprises at least one laser diode array.

3. A short pulse laser system as in claim 2, wherein said laser diode array is controlled to periodically pump said laser crystal to define periodic pumping periods.

4. A short pulse laser system as in claim 2, wherein said laser diode array is controlled to continuously pump said laser crystal.

5. A short pulse laser system as in claim 1 wherein said laser crystal is a Nd:YAG crystal.

6. A short pulse laser system as in claim 1 wherein said first optical shutter is an acousto-optic Q-switch.

7. A short pulse laser system as in claim 1 wherein said second optical shutter is an acousto-optic mode locker.

8. A short pulse laser system as in claim 1 wherein said optical release mechanism comprises a Pockels cell.

9. A short pulse laser system as in claim 1 wherein said crystal is a Nd:YAG crystal, said first optical shutter is an acousto-optic Q-switch, said second optical shutter is an acousto-optic mode locker and said optical release mechanism comprises a Pockels cell.
Translation - French
Revendications :

1. Un système laser solide à impulsions courtes comprenant :

A) un cristal laser ;

B) une pompe optique disposée de manière à pomper ledit cristal laser ;

C) au moins deux surfaces réfléchissantes définissant un résonateur, ledit résonateur définissant un trajet de faisceau passant à travers ledit cristal laser ;

D) un premier obturateur optique installé sur ledit trajet de faisceau pour bloquer le passage de la lumière dans ledit trajet de faisceau à l'exception de courtes périodes temporelles, ledit premier obturateur optique définissant une période ON et une période OFF ;

E) un second obturateur optique installé à l'intérieur dudit résonateur pour bloquer le passage de la lumière dans ledit résonateur à l'exception d'intervalles périodiques subnanosecondes, lesdits intervalles étant espacés de manière à ce que durant chaque période ON une impulsion lumineuse voyageant à la vitesse de la lumière dans ledit résonateur soit en mesure d'effectuer une pluralité de passages à travers ledit résonateur, croissant en intensité à chaque passage pour définir une impulsion intensifiée ;

F) un mécanisme optique de libération pour libérer périodiquement des impulsions intensifiées dudit résonateur, lesdites impulsions intensifiées libérées périodiquement définissant un faisceau laser à impulsions intensifiées.


2. Un système laser à impulsions courtes selon la revendication 1, caractérisé en ce que ladite pompe optique comprend au moins une barrette de diodes laser.

3. Un système laser à impulsions courtes selon la revendication 2, caractérisé en ce que ladite barrette de diodes laser est contrôlée de manière à pomper périodiquement ledit cristal laser pour définir des périodes de pompage périodiques.

4. Un système laser à impulsions courtes selon la revendication 2, caractérisé en ce que ladite barrette de diodes laser est contrôlée de manière à pomper continûment ledit cristal laser.

5. Un système laser à impulsions courtes selon la revendication 1, caractérisé en ce que ledit cristal laser est un cristal Nd:YAG.

6. Un système laser à impulsions courtes selon la revendication 1, caractérisé en ce que ledit premier obturateur optique est un commutateur Q acousto-optique.

7. Un système laser à impulsions courtes selon la revendication 1, caractérisé en ce que ledit second obturateur optique est un bloqueur de modes acousto-optique

8. Un système laser à impulsions courtes selon la revendication 1, caractérisé en ce que ledit mécanisme de libération optique comprend une cellule de Pockels.

9. Un système laser à impulsions courtes selon la revendication 1, caractérisé en ce que ledit cristal est un cristal Nd:YAG, ledit premier obturateur optique est un commutateur Q acousto-optique, ledit second obturateur optique est un verrouilleur de modes acousto-optique et ledit mécanisme de libération optique comprend une cellule de Pockels.
Turkish to English: Comparison of general and spinal anaesthesia in pregnant women with pregnancy induced hypertension (Turhanoğlu et. al. 1999, extract)
General field: Science
Detailed field: Medical (general)
Source text - Turkish
Bebek doğana kadar % 0,6 isofluran ve %50 N2O %50 O2 ile inhalasyon anestezi sağlandı.

Bebek doğduktan sonra İV 3 g/kg dozda fentanil İV yapıldı ve isofluran % 1 konsantrasyona çıkartıldı, gerektikçe 0,05 mg/kg dozda vekuronyum ile kas gevşemesi idame ettirildi.

İkinci gruptaki olgulara ise 500 mL RL infüzyonu yapıldıktan sonra oturur pozisyonda L3-4 veya L4-5 aralığından 22 G "Whitacre" spinal iğne ile girilerek serbest BOS akışı görüldükten sonra % 0,5'lik "heavy bupivacaine"den 2,5 mL (12,5 mg) intratekal aralığa verildi.

Duyusal blok T6 seviyesine ulaştığı zaman ameliyatın başlamasına izin verildi.
Translation - English
Anaesthesia was maintained until birth with an inhalation of isoflurane 0.6% and a 50:50 mixture of N2O/O2.

Upon birth, a 3 µg/kg dose of fentanyl was given intravenously and the isoflurane concentration was increased to 1%; when necessary, muscle relaxation was sustained with a 0.05 mg/kg dose of vecuronium.

The patients from the second group were infused with 500 mL Ringer's lactate; then, by introducing a 22-gauge "Whitacre" spinal needle into the L3-4 or the L4-5 interspace, after confirming free flow of cerebrospinal fluid, 2.5 mL (12.5 mg) of "heavy bupivacaine" 0.5% was administered intrathecally.

When sensory block reached the T6 level, authorization was given for the operation to begin.

Glossaries Micro-optics
Experience Years of experience: 15. Registered at ProZ.com: Dec 2008.
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TeamsSolidarités
Software Microsoft Word, OmegaT, Powerpoint, Trados Studio
Forum posts 109 forum posts
CV/Resume English (PDF)
Professional practices Michael Mestre endorses ProZ.com's Professional Guidelines.
Bio
Welcome to my freelancer profile. I am a professional translator from France specialized in Science and Engineering, with an expertise in Physics and Optics (PhD, University of Paris 11).
I have been involved in hundreds of projects with over 1.5 million words translated in various fields such as Automation, Energy, Optical measurements, Sensors and Civil Engineering.
I am also qualified for patent translations.

For more information about my services, you are invited to download my CV or visit my LinkedIn profile.

I translate from English into French, from Turkish into French, and for specific fields close to my areas of expertise from Turkish into English (with the help of a native monolingual proofreader if necessary).
I can handle French into Turkish with the help of a native collaborator.
I offer Turkish/French interpretation services on an occasional basis.

For translations from/into Turkish, you can also contact me through our specialized agency:
Toledo Technical.
This user has reported completing projects in the following job categories, language pairs, and fields.

Project History Summary
Total projects23
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Job type
Translation23
Language pairs
English to French20
Turkish to French2
Turkish to English1
Specialty fields
Mechanics / Mech Engineering4
Chemistry; Chem Sci/Eng4
Physics3
Electronics / Elect Eng3
Metrology2
Environment & Ecology2
Mathematics & Statistics2
Medical: Health Care1
Tourism & Travel1
Other fields
Engineering: Industrial3
Construction / Civil Engineering3
Energy / Power Generation2
Materials (Plastics, Ceramics, etc.)2
Transport / Transportation / Shipping2
Computers: Software2
Photography/Imaging (& Graphic Arts)1
Meteorology1
Medical: Dentistry1
Telecom(munications)1
International Org/Dev/Coop1
Architecture1
Biology (-tech,-chem,micro-)1
Aerospace / Aviation / Space1
Printing & Publishing1
Internet, e-Commerce1
Education / Pedagogy1
Keywords: science, physics, photonics, quantum physics, lasers, mathematics, statistics, atomic physics, spectroscopy, optical communications. See more.science, physics, photonics, quantum physics, lasers, mathematics, statistics, atomic physics, spectroscopy, optical communications, fibers, tourism, geography, turkish, patents. See less.


Profile last updated
Jan 18