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2.
BMJ Case Rep ; 15(8)2022 Aug 29.
Artículo en Inglés | MEDLINE | ID: mdl-36038151

RESUMEN

Shigella vulvovaginitis is an uncommon aetiology of prepubertal vaginal bleeding that should be considered in the differential diagnosis, especially in patients who have travelled to developing countries. A young girl presented with prepubertal vaginal bleeding, pelvic pain, occasional dysuria and no gastrointestinal symptoms. After a year-long extensive workup, including vaginoscopy and biopsy, genital culture and Gram stain revealed vulvovaginitis due to Shigella flexneri After review of bacterial sensitivity, the patient was given a 30-day course of sulfamethoxazole-trimethoprim. The patient returned to the clinic 1 month later with no signs of vaginal bleeding, discharge or pelvic pain. This case prompted review of the indicated evaluation and differential diagnosis of prepubertal vaginal bleeding, including infectious aetiologies such as Shigella vulvovaginitis with the authors' goal to expedite diagnosis and treatment in paediatric patients.


Asunto(s)
Vaginitis , Vulvovaginitis , Niño , Femenino , Humanos , Dolor Pélvico/complicaciones , Shigella flexneri , Hemorragia Uterina/etiología , Vagina , Vaginitis/complicaciones , Vulvovaginitis/complicaciones , Vulvovaginitis/diagnóstico , Vulvovaginitis/tratamiento farmacológico
3.
J Innov Card Rhythm Manag ; 8(12): 2930-2938, 2017 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-32477761

RESUMEN

Active compression-decompression (ACD) cardiopulmonary resuscitation (CPR) devices were conceived and invented by Drs. Todd Cohen and Keith Lurie to improve the low survival rates for conventional CPR. Active decompression creates greater chest recoil as compared with the passive decompression used in standard CPR, leading to increased preload and greater cardiac output. ACD CPR devices use a suction cup to adhere themselves to the patient's chest. Putting downward force onto the device allows for the operator to actively compress the chest. Active chest decompression is achieved by pulling up on the device (using its suction), which in turn pulls up on the patient's chest, enabling greater chest expansion. Animal and human studies have demonstrated an improvement in overall circulation when using ACD CPR versus standard CPR. The impedance threshold device (ITD) was created to enhance ACD CPR. This device connects to the patient's airway and prevents the influx of air during chest decompression. ACD CPR plus ITD improves myocardial and cerebral perfusion, increases survival rates, and is associated with more favorable neurological outcomes. CPR guidelines permit the use of the above two devices by properly trained personnel. Additionally, an insulated handheld compression device can be actively applied over a standard defibrillation patch to decrease transthoracic impedance. This methodology has been incorporated into a patented PrestoPush™ device (Nexus Control Systems LLC, Port Washington, NY, USA), which is a handheld external cardioversion/defibrillation augmenter. This paper reviews the development of these innovative devices to augment standard CPR and external cardioversion and defibrillation, including summaries of studies the authors consider to those that are most significant in ACD CPR development.

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