Research Article
CT signs of pressure induced expansion of paranasal sinus structures
Peter AR Clement* and Stijn Halewyck
Published: 09/26/2017 | Volume 1 - Issue 1 | Pages: 077-087
Summary
Several articles have been written about hyper inflated sinus structures. Never before, however, a complete overview of all possible pressure induced variations of sinus anatomy have been published. The aim of this study was to make an inventory of the most common CT signs of hyper inflated paranasal sinus structures. During a period of 2 years all CT-scans of the paranasal sinuses made in an ENT-department were studied and the most typical shapes of hyper inflated sinus structures were recorded.
The authors documented 9 different anomalies of the anterior paranasal sinus complex (frontal sinus, frontal and supra-orbital recess and anterior ethmoid), 8 of the ethmoid and 1 of the sphenoidal sinus. These hyper inflated paranasal sinus structures can only be generated by high positive intranasal pressures. The nose blowing manoeuvre is the only manoeuvre that generates extremely high pressures and as such it might be the driving force in the generation of these hyper inflated paranasal structures and consequently play a role in the pathophysiology of chronic sinusitis.
Pneumatisation of the sinuses starts at birth and is a lifelong process. Sometimes, however, pneumatisation can be extreme and will result in facial deformities. Pneumosinus dilatans, is such a condition, characterized by an abnormal dilatation of a paranasal sinus cavity, containing air only. Most reports describe pneumosinus dilatans of the frontal sinus, but also other sinuses can show this phenomenon: maxillary sinus and in one case a unilateral pneumosinus dilatans of nearly all sinuses (maxillary, ethmoid, and sphenoid sinus) was described.
Recently Kalavagunta et al., described a less dramatic expansion of the maxillary sinus and named it “Extensive Maxillary Sinus Pneumatisation” (EMSP). They were surprised to see that EMSP has received little attention in the literature. Neuner et al., described 9 different atypical pneumatisation abnormalities of the paranasal sinus anatomy.
Most of deformities of the sinus pneumatisation are growth deformities of the thick bones that make up the frame of the sinuses. Only a few articles, deal with specific deformities of thinner bone structures such as “wavy orbital floor” and “frontal cells”. Never before, however, an article was published that studied all possible deformities due to increased pressures and tried to make a classification. So the aim of this study was to make an inventory of the most obvious pressures related deformities that can be seen on CT-scans of patients with rhinosinusitis.
Read Full Article HTMLDOI: 10.29328/journal.hor.1001013Cite this Article
References
- Lombardi G, Passerini A, Cecchini A. Pneumosinus dilatans. Acta Radiol Diagn (Stockh). 1968; 7: 535-542. Ref.: https://goo.gl/R5zxae
- Benjamins CE. Pneumo-sinus frontalis dilatans. Acta Otolaryngol (Stockh). 1918; 1: 414-423.
- Candan S, Muhtar H, Ciftçi A. Der Pneumosinus dilatans frontalis. Laryngol Rhinol Otol (Stuttg). 1990; 69: 552-533.
- Draf W, Constantinidis J, Weber R, Haque R. Pneumosinus dilatans frontalis. Etiology, symptoms and surgical technique. Laryngol Rhinol Otol (Stuttg). 1996; 75: 660-664.
- Klossek JM, Dufour X, Toffel P, Fontanel JP. Pneumosinus dilatans: A report of three new cases and their surgical management. Ear Nose Throat J. 2000; 79: 48-51. Ref.: https://goo.gl/FNMG7d
- Staudenmaier R, Happ T, Grevers G. Pneumosinus dilatans of the frontal sinus. HNO. 2002; 50: 480-182. Ref.: https://goo.gl/jMR2df
- Walker JL, Jones NS. Pneumosinus dilatans of the frontal sinuses: two cases and a discussion of its aetiology. J laryngol Otol. 2002; 116: 382-385. Ref.: https://goo.gl/GjL3od
- Wolfensberger M. Pathogenesis of pneumosinus maxillaris dilatans. HNO. 1984; 32: 518-520. Ref.: https://goo.gl/xT7ny4
- Sobin A, Carenfelt C, Haverling M, Anggard A. Pressure-induced expansion of the maxillary sinus. A rare entity. Rhinology. 1986; 24: 283-286. Ref.: https://goo.gl/ugrZtH
- Wolfensberger M, Herrmann P. The pathogenesis of maxillary sinus pneumoceles. Arch Otolaryngol Head Neck Surg. 1987; 113: 184-186. Ref.: https://goo.gl/XY62xU
- Mauri M, Oliveira de Oliveira C, France G. Pneumonsinus dilatans of maxillary sinus. Case report. Ann Otol Rhinol Larygol. 2000; 109: 278-280. Ref.: https://goo.gl/vnkdoz
- Juhl HJ, Buchwald C, Bollinger B. An extensive maxillary pneumosinus dilatans. Rhinology. 2001; 39: 236-238. Ref.: https://goo.gl/uWR1CM
- Ganly I, McGuiness R. Clinical problem solving: radiology: radiology quiz case 1. Pneumosinus dilatans of the maxillary, ethmoid, and sphenoid sinuses. Arch Otolaryngol Head Neck Surg. 2002; 128: 1428-1430. Ref.: https://goo.gl/2LfK9R
- Kalavagunta S, Reddy KT. Extensive maxillary sinus pneumatization. Rhinology. 2003; 41: 113-117. Ref.: https://goo.gl/YAehhi
- Neuner NT, Hausler R. Atypische Pneumatistions-former des Nasennebenhöhlensystems. Schweiz Med Wochenschr. 2000; 116: 108-112.
- Bent JP, Cuilty-Siller C, Kuhn FA. The frontal cell as a cause of frontal sinus obstruction. Am J Rhinology. 1994; 8: 185-191.
- Gwaltney JM Jr, Hendley JO, Phillips CD, Bass CR, Mygind N, et al. Nose blowing propels nasal fluid into the paranasal sinuses. Clin Infect Dis. 2000; 30: 387-391. Ref.: https://goo.gl/ycZifP
- Wormald PJ. Surgery of the frontal recess and frontal sinus. Rhinology. 2005; 43: 82-85. Ref.: https://goo.gl/xPRnm2
- Stackpole SA, Edelstein DR. The anatomic relevance of the Haller cell in sinusitis. Am J Rhinol. 1997; 11: 219-223. Ref.: https://goo.gl/LnNo8j
- Stammberger H, Kennedy DW, Anatomic Terminology Group. Paranasal sinuses: anatomic terminology and nomenclature. Ann Otol Rhinol Laryngol Suppl. 1995; 167: 7-16. Ref.: https://goo.gl/a8VzBD
- Clement P, Chovanova H. Pressures generated during nose blowing in patients with nasal complaints and normal test subjects. Rhinology. 2003; 41: 152-158. Ref.: https://goo.gl/rQzmKB
- Stackpole SA, Edelstein DR. Anatomic variants of the paranasal sinuses and their implications for sinusitis. Curr Opin Otolaryngol Head Neck Surg. 1996; 4: 1-11. Ref.: https://goo.gl/umkTBV
- Ponikau JU, Sherris DA, Kephart GM, Kern EB, Congdon DJ, et al. Striking deposition of toxic eosinophil major basic protein in mucus: implications for chronic rhinosinusitis. J Allergy Clin Immunol. 2005; 116: 362-369. Ref.: https://goo.gl/tx5eeP
- Bachert C, Gevaert P, Howarth P, van Cauwenberge P. Staphylococcus aureus enterotoxins: a key in airway disease? Allergy. 2002; 57: 480-487. Ref.: https://goo.gl/nFQRe7
- Bhattacharyya N. Bacterial infection in chronic rhinosinusitis: A controlled paired analysis. Am J Rhinol. 2002; 19: 544-548. Ref.: https://goo.gl/xnaCPY
- Perloff JR, Palmer JN. Evidence of bacterial biofilms in a rabbit model of sinusitis. Am J Rhinol. 2005; 19: 1-6. Ref.: https://goo.gl/ra5k5A
- Chaiyasate S, Baron I, Clement P. Analysis of paranasal sinus development and anatomical variations: a CT genetic study in twins. Clin Otolaryngol. 2007; 32: 93-97. Ref.: https://goo.gl/PaBPDh














