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1.
Calcif Tissue Int ; 48(6): 414-20, 1991 Jun.
Article in English | MEDLINE | ID: mdl-2070276

ABSTRACT

Laser Doppler Flowmetry (LDF) has been shown to be a useful tool in the experimental and clinical measurement of bone blood flow. Two LDF receiving fiber channel systems, one with a 2mW He-Ne tube laser source and the other with an infrared diode laser source, were compared with specific reference to their light attenuation through three types of bone as well as their threshold thickness for the same specimens. The threshold thickness was higher for the infrared diode system for all three bone types whereas the attenuation was identical. The demonstrated differences were most likely due to the criteria established for flow detection; the infrared diode system has a greater degree of amplification of the output signal, yielding a higher value at each thickness of bone. The two systems will produce similar output data when used for experimental analysis of bone blood flow.


Subject(s)
Bone Density , Animals , Cattle , Lasers , Methods , Perfusion , Regional Blood Flow
2.
J Hand Surg Am ; 14(6): 986-91, 1989 Nov.
Article in English | MEDLINE | ID: mdl-2531182

ABSTRACT

Eleven consecutive median nerves in patients with clinical carpal tunnel syndrome were examined prospectively with laser Doppler flowmetry. All procedures were done without a tourniquet with the patient under local or general anesthesia. Multiple measurements of median nerve blood flow were obtained during carpal tunnel release. Flow characteristics proximal to the transverse carpal ligament did not change after release of the ligament. Beneath the transverse carpal ligament, initial flow was random in 10 of 11 nerves. Within 1 minute after release of the transverse carpal ligament, flow became pulsatile and synchronized with the patient's pulse in nine nerves. Although preliminary, these data suggest that in carpal tunnel syndrome the segment of median nerve beneath the carpal ligament is relatively ischemic and this ischemia may be a factor in the development of symptomatic median nerve entrapment. The rapid return of a pulsatile signal within the nerve after release is positively correlated with relief or improvement of median nerve dysesthesias.


Subject(s)
Carpal Tunnel Syndrome/surgery , Intraoperative Care , Ischemia/diagnosis , Median Nerve/blood supply , Adult , Aged , Blood Flow Velocity , Carpal Tunnel Syndrome/etiology , Carpal Tunnel Syndrome/physiopathology , Female , Humans , Ischemia/complications , Lasers , Male , Middle Aged , Rheology
3.
J Orthop Res ; 7(3): 413-24, 1989.
Article in English | MEDLINE | ID: mdl-2703933

ABSTRACT

Laser Doppler flowmetry (LDF) has been successfully used in clinical and experimental settings to evaluate bone perfusion but unanswered questions regarding its capabilities and limitations still remain. This study was undertaken to determine absorption of He-Ne laser light (632.8 nm) and maximum depth for flow assessment (threshold thickness) under optimal conditions in bone. Light transmittance in bovine bone samples of femora and tibia was measured after each step of grinding and depth of penetration calculated. The threshold thickness was obtained by placing the same samples in a flow chamber where a solution of 2% latex circulated beneath; flow was detected by a laser Doppler probe resting on top of the sample. The results showed a significantly higher depth of penetration for trabecular than for cortical bone. A regression analysis showed a high correlation between the inorganic fraction of the bone and the depth of penetration. The maximum depth at which the laser Doppler probe can evaluate flow in bone conditions was found to be 2.9 +/- 0.2 mm in cortical bone, 3.5 +/- 0.3 mm in bone covered by 1 mm cartilage and 3.5 +/- 0.2 mm in trabecular bone. The study showed the limitations of LDF in bone and their correlations to various bone properties.


Subject(s)
Bone and Bones/blood supply , Lasers , Animals , Bone and Bones/anatomy & histology , Cattle , Helium , Neon , Regional Blood Flow
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