Upper airway obstruction-an unusual complication following a minor scalding injury

Burns ◽  
1993 ◽  
Vol 19 (1) ◽  
pp. 85-87 ◽  
Author(s):  
L. Björk ◽  
H. Svensson
2010 ◽  
Vol 125 (3) ◽  
pp. 321-323
Author(s):  
C Kirton ◽  
A Guidera

AbstractObjective:We present an unusual case of parapharyngeal cerebrospinal fluid collection causing upper airway obstruction following a temporal bone fracture.Method:Case report and literature review of temporal bone fracture associated with parapharyngeal cerebrospinal fluid collection.Results:A 19-year-old man presented with cerebrospinal fluid otorrhoea and temporal bone fracture following a head injury. He was discharged after 48 hours of observation. The patient returned within 6 hours with sudden unilateral neck swelling and stridor after blowing his nose. Flexible nasendoscopy and computed tomography showed extrinsic compression of the pharynx, with partial upper airway obstruction. A literature review using Pubmed™ and Medline™ identified no previously reported cases of parapharyngeal cerebrospinal fluid collection associated with temporal bone fracture.Conclusion:This case illustrates a previously undescribed complication of temporal bone fracture. Raised intracranial pressure in the presence of a cerebrospinal fluid fistula may lead to airway obstruction, following temporal bone fracture.


2009 ◽  
Vol 123 (12) ◽  
pp. 1402-1403 ◽  
Author(s):  
P Baptista ◽  
C V Gimeno ◽  
F Salvinelli ◽  
V Rinaldi ◽  
M Casale

AbstractObjective:To underline the importance of accurate clinical evaluation of major salivary gland obstructions, in order to choose the right surgical approach and to reduce the risk of complications.Case report:We report a case of an unusual, previously unreported upper airway obstruction caused by massive swelling of the tongue following a successful sialoendoscopy, performed for treatment of submandibular sialolithiasis under general anaesthesia.Conclusions:Sialoendoscopy has gained popularity and is an accepted method for diagnosis and treatment of most inflammatory conditions of the major salivary glands. It can be performed as an out-patient procedure under local anaesthesia, and is not usually associated with significant complications. However, in the presence of larger stones (>4 mm) of the submandibular gland, we suggest that interventional sialoendoscopy should be performed under general anaesthesia with optimal airway control, in order to manage the major risk of perforations and ductal lesions enabling spread of saline solution into the mouth tissues and causing life-threatening swelling of the floor of the mouth and tongue.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
P. Sabetian ◽  
Y. Sadat-Nejad ◽  
Paul B. Yoo

AbstractElectrical signals from the peripheral nervous system have the potential to provide the necessary motor, sensory or autonomic information for implementing closed-loop control of neuroprosthetic or neuromodulatory systems. However, developing methods to recover information encoded in these signals is a significant challenge. Our goal was to test the feasibility of measuring physiologically generated nerve action potentials that can be classified as sensory or motor signals. A tetrapolar recording nerve cuff electrode was used to measure vagal nerve (VN) activity in a rodent model of upper airway obstruction. The effect of upper airway occlusions on VN activity related to respiration (RnP) was calculated and compared for 4 different cases: (1) intact VN, (2) VN transection only proximal to recording electrode, (3) VN transection only distal to the recording electrode, and (4) transection of VN proximal and distal to electrode. We employed a Support Vector Machine (SVM) model with Gaussian Kernel to learn a model capable of classifying efferent and afferent waveforms obtained from the tetrapolar electrode. In vivo results showed that the RnP values decreased significantly during obstruction by 91.7% ± 3.1%, and 78.2% ± 3.4% for cases of intact VN or proximal transection, respectively. In contrast, there were no significant changes for cases of VN transection at the distal end or both ends of the electrode. The SVM model yielded an 85.8% accuracy in distinguishing motor and sensory signals. The feasibility of measuring low-noise directionally-sensitive neural activity using a tetrapolar nerve cuff electrode along with the use of an SVM classifier was shown. Future experimental work in chronic implant studies is needed to support clinical translatability.


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