A Brief Overview of the Recent Bio-Medical Applications of Fiber Bragg Grating Sensors
Abstract
Full Text:
PDFReferences
B Lee, “Review of the present status of optical fiber
sensors”, Opt. Fiber Technol., vol 9, pp 57–79, 2003.
K O Hill, Y Fujii, D C Johnson and B S Kawasaki, “Photosensitivity
in optical fiber waveguides: Application
to reflection filter fabrication”, Appl. Phys. Lett., vol 32,
pp 647–649, 1978.
B S Kawasaki, K O Hill, D C Johnson and Y Fujii, “Narrowband
Bragg reflectors in optical fibers”, Opt. Lett., vol 3,
pp 66–68, 1978.
G Meltz, W W Morey and W H Glenn, “Formation of
Bragg gratings in optical fibers by a transverse holographic
method”, Opt. Lett., vol 14, pp 823–825, 1989.
A Othonos and K Kalli, “Fiber Bragg Gratings: Fundamentals
and Applications in Telecommunications and
Sensing”, Artech House, 1999.
C Caucheteur, F Lhommé, K Chah, M Blondel and
P Mégret, “Simultaneous strain and temperature sensor
based on the numerical reconstruction of polarization
maintaining Fiber Bragg Gratings”, Opt. Las. Eng., vol 44,
no 5, pp 411–422, 2006.
H Ling, K Lau, L Cheng and W Jin, “Viability of using
an embedded FBG sensor in a composite structure for
dynamic strain measurement”, Measurement, vol 39, no 4,
pp 328–334, 2006.
T H T Chan, L Yu, H Y Tam, Y Q Ni, S Y Liu, W H Chung
and L K Cheng, “Fiber Bragg Grating sensors for structural
health monitoring of Tsing Ma bridge: Background and experimental observation”, Eng. Struct., vol 28, no 5,
pp 648–659, 2006.
F Xie, X Chen, L Zhang and M Song, “Realization of an
effective dual-parameter sensor employing a single Fiber
Bragg Grating structure”, Opt. Las. Eng., vol 44, issue 10,
pp 1088–1095, 2006.
M Ussorio et al., “Modifications to FBG sensor spectra
due to matrix cracking in a GFRP composite, Construction
and Building Materials”, Construction and Building
Materials, vol 20, no 1–2, pp 111–118, 2006.
C R Dennison, P M Wild, D R Wilson and P A Cripton,
“A minimally invasive in-fiber Bragg grating sensor for
intervertebral disc pressure measurements”, Meas. Sci.
Technol., vol 19, pp 085201, 2008.
S J Mihailov, “Fiber Bragg grating sensors for harsh environments”,
Sensors, vol 12, pp 1898–1918, 2012.
V Mishra, N Singh, U Tiwari, P Kapur, “Fiber grating sensors
in medicine: Current and emerging applications”,
Sensor. Actuator. A Phys., vol 167, pp 279–290, 2011.
H J Kalinowski, “Fibre Bragg grating applications in Biomechanics”,
Proc. SPIE, vol 7004, pp 700430, 2008.
E Al-Fakih, N A A Osman and F R M Adikan, “The Use of
Fiber Bragg Grating Sensors in Biomechanics and Rehabilitation
Applications: The State-of-the-Art and Ongoing
Research Topics”, Sensors, vol 12, pp 12890–12926, 2012.
W W Morey, G Meltz and W H Glenn, “Fiber Bragg grating
sensors”, Proc. SPIE, vol 1169, pp 98–107, 1989.
A Othonos, “Fiber Bragg gratings”, Rev. Sci. Instrum., vol
, no 12, pp 4309–4341, 1997.
K O Hill et al., “Bragg gratings fabricated in monomode
photosensitive optical fiber by UV exposure thorough a
phase-mask”, Appl. Phys. Lett., vol 62, no 10, pp 1035–
, 1993.
A D Kersey et al., “Fiber grating sensors”, J. Lightwave
Technol., vol 15, no 8, pp 1442–1462, 1997.
R Kashyap, “Fiber Bragg Gratings”, Academic Press, San
Diego, 1999.
G Meltz and WW Morey, “Bragg grating formation and
germanosilicate fiber photosensitivity”, Proc. SPIE, vol
, pp 185–199, 1991.
J Apelqvist and J Larsson, “What is the most effective way
to reduce incidence of amputation in the diabetic foot?”,
Diabetes Metab Res Rev., vol 16, pp 75–83, 2000.
P R Cavanagh, J S Ulbrecht and G M Caputo, “Biomechanical
aspects of diabetic foot disease: Aetiology, treatment,
and prevention”, Diabet. Med., vol 13, pp 17–22, 1996.
G E Reiber, “Who is at risk of limb loss and what to
do about it?”, J Rehabil. Res. Dev., vol 31, pp 357–362,
A J Boulton et al., “Dynamic foot pressure and other studies
as diagnostic and management aids in diabetic neuropathy”,
Diabetes Care, vol 6, pp 26–33, 1983.
J Gareth, “The diabetic neuropathies: types, diagnosis and
management”, J. Neurol. Neurosurg. Psychiatry, vol 74, ii15,
E C Katoulis, ME Parry and S Hollis, “Postural instability
in diabetic neuropathic patients at risk of foot ulceration”,
Diabet. Med., vol 14, pp 296–300, 1997.
A S Guru Prasad, S N Omkar, H N Vikranth, V Anil,
K Chethana and S Asokan, “Design and development of
Fiber Bragg Grating sensing plate for plantar strain measurement
and postural stability analysis”, Measurement,
vol 47, pp 789–793, 2014.
P Batista, P Oliveira and B Cardeira, “Accelerometer
Calibration and Dynamic Bias and Gravity Estimation:
Analysis, Design, and Experimental Evaluation”, IEEE
Trans. Control Syst. Technol., vol 19, pp 1128–1137, 2011.
P Gispert et al., “Economy-class syndrome or immobile
Traveler’s syndrome?”, Archivos De Bronconeumologia,
vol 42, no 7, pp 373–375, 2006.
Deep Vein Thrombosis Anatomical Chart, Anatomical
Chart Company, Chicago, IL 2002.
K J Rothman, “Thrombosis after travel”, PLoS Med., vol 3,
no 8, pp 1206–1207, 2006.
S C Cannegieter et al., “Travel-related venous thrombosis:
Results from a large population-based control study
(MEGA study)”, PLoS Med., vol 3, no 8, pp 1258–1265,
K Hitos et al., “Effect of leg exercises on popliteal venous
blood flow during prolonged immobility of seated subjects:
implications for prevention of travel-related deep
vein tihrombosis”, J. Thromb. Haemost., vol 5, no 9, pp
–1895, 2007.
British Airways, http://www.britishairways.com/en-in/
information/special-assistance/medical-conditions
Continental Airways, http://www.united.com/web/en-US/
content/travel/inflight/health.aspx
K J Donovan et al., “Preliminary evaluation of recommended
airline exercises for optimal calf muscle pump
activity”, Eur. J. Vasc. Endovasc. Surg. Extra, vol 12, no 1,
pp 1–5, 2006.
K J Donovan et al., “Accelerometer based calf muscle
pump activity monitoring”, Med. Eng. Phys., vol 27, no 8,
pp 717–722, 2005.
A S Guru Prasad, S J N Omkar, K Anand, GM Hegde and
S Asokan, “Evaluation of airline exercises prescribed to
avoid deep vein thrombosis using fiber Bragg grating sensors”,
J. Biomed. Opt., vol 18, no 9, pp 097007, 2013.
W D Foley and S J Erickson, “Color Doppler flow imaging”,
Am. J. Roentgenol., vol 156, no 1, pp 3–13, 1991.
R B Christopher and M D Merritt, “Doppler color flow
imaging”, J. Clin. Ultrasound, vol 15, no 9, pp 591–597,
H Vedalaet al., “Nanoelectronic detection of lectin–
carbohydrate interactions using carbon nanotubes”,
Nano Lett., vol 11, pp 170–175, 2011.
K S Vasu et al., “Detection of sugar–lectin interactions by
multivalent dendritic sugar functionalized single-walled
carbon nanotubes”, Appl. Phys. Lett., vol 101, pp 053701,
Y Chen et al., “Electronic detection of lectins using
carbohydrate-functionalized nano-structures: graphene
versus carbon nanotubes”, ACS Nano, vol 6, pp 760–770,
C Andrea et al., “Integrated development of chemoptical
fiber nanosensors”, Curr. Anal. Chem., vol 4, pp 296–315,
K Kashiwagi and S Yamashita, “Deposition of carbon
nanotubes around microfibervia evanescent light”, Opt.
Express, vol 17, pp 18364–18370, 2009.
B N Shivananju et al., “Detection limit of etched fiber
Bragg grating sensors”, J. Lightwave Technol., vol 31, pp
–2447, 2013.
S Sridevi, K S Vasu, N Jayaraman, S Asokan and A K Sood,
“Optical bio-sensing devices based on etched fiber Bragg
gratings coated with carbon nanotubes and graphene
oxide along with a specific dendrimer”, Sensors and Actuators
B, vol 195, pp 150–155, 2014.
W C Cushman, “The burden of uncontrolled hypertension:
morbidity and mortality associated with disease progression”,
J. Clin. Hypertens., vol 5, no 3, pp 14–22, 2003.
M Ward and JA Langton, “Blood pressure measurement”,
Contin. Educ. Anaesth. Crit. Care Pain., vol 7, no 4, pp
–126, 2007.
D Perloff et al., “Human blood pressure determination
by sphygmomanometry”, Circulation, vol 88 (5 Pt 1), pp
–2470, 1993.
D Sahu and M Bhaskaran, “Palpatory method of measuring
diastolic blood pressure”, J. Anaesth. Clin. Pharmacol.,
vol 26, no 4, pp 528–530, 2010.
U Sharath, R Sukreet, G Apoorva, and S Asokan, “Blood
pressure evaluation using sphygmomanometry assisted
by arterial pulse waveform detection by fiber Bragg grating
pulse device”, J. Biomed. Opt., vol 18, no 6, pp 067010,
S N Bhaskar and G E Lilly, “Intrapulpal temperature during
cavity preparation”, J. Dent. Res., vol 44, pp 644–647,
M Hannig and B Bott, “In-vitro pulp temperature rise
during composite resin polymerization with various lightcuring
sources”, Dent. Mater., vol 15, pp 275–281, 1999.
L Zach and G Cohen, “Pulp response to externally applied
heat Oral Surg”, Med. Oral. Pathol., vol 19, pp 515–30,
K Langeland, “Effect of various procedures on the human
dental pulp, Pulp reactions to cavity preparation and guttapurcha”,
Oral Surg, Oral Med, and Oral Pathol, vol 14,
pp 210–33, 1961.
E K Hansen and E Asmussen, “Correlation between depth
of cure and temperature rise of a light-activated resin”,
Sc. and J. Dent. Res, vol 101, pp 176–179, 1993.
D S Cobb, D N Dederich, and T V Gardner, “In vitro temperature
change at the dentin/pulpal interface by using
conventional visible light versus argon laser”, Lasers in Sur.
and Med., vol 26, no 4, pp 386–397, 2000.
A Knezevic et al., “Degree of Conversion and temperature
rise during polymerization of composite resin samples
with blue diodes”, J. Oral Rehab., vol 28, pp 586–591, 2001.
L F Schneider et al., “Halogen and LED light curing of
composite: Temperature increase and Knoop hardness”,
Clin. Oral Inv., vol 10, pp 66–71, 2006.
A R Yazici, A Muftu, G Kugel, and RD Perry, “Comparison
of temperature changes in the pulp chamber induced by
various light curing units, in vitro”, Oper. Dent., vol 31,
pp 261–265, 2006.
H E Goodis, J M White, J Andrews, and L G Watanabe,
“Measurement of temperature generated by visible-light-cure
lamps in an in vitro model”, Dent. Mat., vol 5, pp
–234, 1989.
D F Murchison and B K Moore, “Influence of curing time
and distance on microhardness of eight light-cured liners”,
Oper. Dent., vol 17, pp 135–141, 1992.
U Sharath, K Aadarsh, B Adarsh, NR Jayanth and S
Asokan, “In-vitro measurement of temperature increase
in pulp chamber with light cured composite resins using
fiber Bragg grating thermal sensor”, Seventh International
Conference on Sensing Technology (ICST), pp 235–237,
Refbacks
- There are currently no refbacks.