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PubMed · 7735447

[Tuberculous dacryocystitis].

Abstract

BACKGROUND: Acute infection and inflammation of the nasolacrimal sac may complicate congenital obstruction of the nasolacrimal duct. Acute dacryocystitis is uncommon later and tuberculosis is exceptionally responsible for it. CASE REPORT: A 4 1/2 year-old boy was admitted because he suffered from acute left dacryocystitis with fever and cervical adenitis. Involvement of both lacrymal gland and lymph node persisted despite antibiotic and corticosteroid therapy. Needle biopsy of the lymph node showed presence of Mycobacterium tuberculosis and excision revealed caseating granulomas. The tuberculin skin test was positive while pulmonary tuberculosis was discovered in the patient's father. The patient was successfully given izoniazid, rifampin for 9 months and pyrazinamide for 2. Drainage of the sac area was necessary after 1 month of treatment followed by dacryocystorhinostomy. CONCLUSION: This rare case of tuberculous dacryocystitis permits to delineate the difficulties of ophthalmologic therapy.

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BibTeXRIS

J B Cotton, P Ligeon-Ligeonnet, A Durra, J Sartre, E Bureau, N Chetail, J L Grenier. 1995. [Tuberculous dacryocystitis].. https://doi.org/10.1016/0929-693x(96)89875-7

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Acute spermatic cord torsion alters the microcirculation of the contralateral testis.

PURPOSE: The purpose of this study was to characterize the hemodynamic changes in the contralateral testis during acute spermatic cord torsion in anesthetized rats. MATERIALS AND METHODS: We used videomicroscopy to examine the microcirculation of the contralateral testis following acute torsion. Specifically, we examined the effect on vasomotion, a rhythmic dilation and constriction of the arterioles that is involved in fluid and nutrient exchange and modulation of local vascular resistance. In a separate set of experiments, blood flow in the contralateral internal spermatic artery was measured with an ultrasonic flow probe during acute torsion. RESULTS: Following 720 degrees torsion, the amplitude of vasomotion in the contralateral testis increased 121% (29.0 +/- 3.9% versus 13.0 +/- 1.7%) compared with controls. Blood flow in the contralateral internal spermatic artery decreased 43% after 2 hours' torsion. CONCLUSIONS: Acute spermatic cord torsion altered the microcirculation by increasing the amplitude of vasomotion and decreased total blood flow to the opposite testis. Because the hydraulic resistance of a blood vessel exhibiting vasomotion is always less than a vessel with the same average but static diameter, the observed microcirculatory changes may be an adaptive response to preserve local flow in the presence of decreased total flow. The long-term consequences of these changes in the microcirculation may affect testicular function and ultimately fertility.

Acute Disease