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Biomedical subjects

J T Welsh

Publications and source records attributed to J T Welsh.

3 recordsLinked to original sources

Human middle-ear sound transfer function and cochlear input impedance.

The middle-ear pressure gain, defined as the ear canal sound pressure to cochlear vestibule pressure gain, GME, and the ear canal sound pressure to stapes footplate velocity transfer function, SVTF, simultaneously measured in 12 fresh human temporal bones for the 0.05 to 10 kHz frequency range are reported. The mean GME magnitude reached 23.5 dB at 1.2 kHz with a slope of approximately 6 dB/octave from 0.1 to 1.2 kHz and -6 dB/octave above 1.2 kHz. From 0.1 to 0.5 kHz, the mean GME phase angle was 51 degrees, rolling off at -78 degrees /octave above this frequency. The mean SVTF magnitude reached a maximum of 0.33 mm s(-1)/Pa at 1.0 kHz with nearly the same shape in magnitude and phase angle as the mean GME. The ratio of GME and SVTF provide the first direct measurements of Z(c) in human ears. The mean Z(c) was virtually flat with a value of 21.1 acoustic GOmega MKS between 0.1 and 5.0 kHz. Above 5 kHz, the mean Z(c) increased to a maximum value of 49.9 GOmega at 6.7 kHz. The mean Z(c) angle was near 0 degrees from 0.5 to 5.0 kHz, decreasing below 0.5 kHz and above 5 kHz with peaks and valleys.

Acoustic Impedance Tests↗

Acoustic role of the buttress and posterior incudal ligament in human temporal bones.

OBJECTIVES: In middle ear surgery using intact ear canal wall techniques, the buttress, which is the bony bridge at the medial end of the posterior-superior bony ear canal, is commonly retained during posterior tympanotomy. In some cases, the surgical exposure may be improved by resectioning the buttress, and this requires sectioning the posterior incudal ligament. To date, the acoustic effects of removing the buttress with sectioning of the attached ligament have not been studied. METHOD: Using a laser Doppler vibrometer system, 15 human cadaver temporal bones were measured with 80 dB sound pressure level at the tympanic membrane over the 0.1 to 10 kHz frequency range. RESULT: The resection of the buttress and sectioning the posterior incudal ligament had no effect on stapes footplate velocity. CONCLUSION: These results suggest that the posterior incudal ligament does not play a significant role in the acoustic function of the ossicles.

Acoustic Stimulation↗

Preparation and characterization of biotinylated psoralen.

Biotinylated psoralen (BPsor), a psoralen derivative containing a biotin moiety attached via a long-chain, positively charged linker, has been synthesized and its interactions with DNA and avidin have been studied. As do other psoralen derivatives, BPsor photoreacts with DNA to form interstrand crosslinks. The biotin binds to streptavidin after the reaction of BPsor with DNA, and this property has been used to measure low levels of BPsor modified DNA by ELISA with streptavidin and biotinylated alkaline phosphatase. In addition, BPsor retains the biological activity of psoralen, as shown by its ability to inhibit lymphocyte proliferation at a level of 10 ng/ml.

Biotin↗