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Items: 1 to 20 of 134

1.

Predicting the size of unerupted canines and premolars using primary maxillary first molar.

Mokhtari S, Sanati I, Shafizadeh N, Seraj B, Khosravanifard B.

Eur Arch Paediatr Dent. 2014 Dec;15(6):401-5. doi: 10.1007/s40368-014-0129-9.

PMID:
24943132
2.

New regression equations for mixed dentition space analysis in an Iranian population.

Toodehzaeim MH, Aghili H, Shariatifar E, Dehghani M.

J Contemp Dent Pract. 2013 Nov 1;14(6):1156-60.

PMID:
24858767
3.

New regression equations for predicting the size of unerupted canines and premolars in a contemporary population.

Nourallah AW, Gesch D, Khordaji MN, Splieth C.

Angle Orthod. 2002 Jun;72(3):216-21.

PMID:
12071605
4.

Demonstration of a sex difference in the predictability of widths of unerupted permanent canines and premolars in a Japanese population.

Tome W, Ohyama Y, Yagi M, Takada K.

Angle Orthod. 2011 Nov;81(6):938-44. doi: 10.2319/021211-102.1.

PMID:
21732762
5.

Prediction of the mesiodistal width of unerupted permanent canines and premolars: a statistical approach.

Boboc A, Dibbets J.

Am J Orthod Dentofacial Orthop. 2010 Apr;137(4):503-7. doi: 10.1016/j.ajodo.2008.04.031.

PMID:
20362910
6.

Prediction of width of un-erupted incisors, canines and premolars in a Ugandan population: a cross sectional study.

Buwembo W, Kutesa A, Muwazi L, Rwenyonyi CM.

BMC Oral Health. 2012 Jul 23;12:23. doi: 10.1186/1472-6831-12-23.

7.

Effect of intermaxillary tooth-size discrepancy on accuracy of prediction equations for mixed dentition space analysis.

Khanna R, Pandey RK, Tripathi S.

Eur Arch Paediatr Dent. 2015 Apr;16(2):211-7. doi: 10.1007/s40368-014-0157-5.

PMID:
25373496
8.

A digital method to predict the mesiodistal widths of canines and premolars in an Egyptian sample.

Ibrahim IA, Elkateb MA, Wahba NA, El Harouny NM.

J Clin Pediatr Dent. 2011 Summer;35(4):421-7.

PMID:
22046703
9.

Regression equations for predicting the size of unerupted canines and premolars in an Iranian population: a pilot study.

Talebi M, Parisay I, Sarraf A, Mazhari F.

J Contemp Dent Pract. 2010 Oct 14;11(5):033-40.

PMID:
20978722
10.

Regression equations for determining mesiodistal crown diameters of canines and premolars.

Legović M, Novosel A, Legović A.

Angle Orthod. 2003 Jun;73(3):314-8.

PMID:
12828441
11.

Applicability of two methods of mixed dentition analysis in a contemporary Indian population sample.

Sonahita A, Dharma RM, Dinesh MR, Amarnath BC, Prashanth CS, Akshai S, Zuber NA, Sathyadeep V.

Eur J Paediatr Dent. 2012 Mar;13(1):29-34.

PMID:
22455525
12.

Comparative evaluation of the group of teeth with the best prediction value in the mixed dentition analysis.

Cattaneo C, Butti AC, Bernini S, Biagi R, Salvato A.

Eur J Paediatr Dent. 2010 Mar;11(1):23-6.

PMID:
20359277
13.

Prediction of breadth of permanent canines and premolars in the mixed dentition.

Ingervall B, Lennartsson B.

Angle Orthod. 1978 Jan;48(1):62-9.

PMID:
272133
14.

Predicting the size of unerupted canines and premolars of the maxillary and mandibular quadrants in an Iranian population.

nik Tahere H, Majid S, Fateme M, Kharazi fard, Javad M.

J Clin Pediatr Dent. 2007 Fall;32(1):43-7.

PMID:
18274469
15.

Molar distalization with pendulum appliances in the mixed dentition: effects on the position of unerupted canines and premolars.

Kinzinger GS, Wehrbein H, Gross U, Diedrich PR.

Am J Orthod Dentofacial Orthop. 2006 Mar;129(3):407-17.

PMID:
16527638
16.

Prediction of space available for unerupted permanent canine and premolars in a Nepalese population.

Jaiswal AK, Paudel KR, Shrestha SL, Jaiswal S.

J Orthod. 2009 Dec;36(4):253-9. doi: 10.1179/14653120723283.

PMID:
19934243
17.
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19.

Individual variation in tooth-size/ arch-length changes from the primary to permanent dentitions.

Bishara SE, Jakobsen JR.

World J Orthod. 2006 Summer;7(2):145-53.

PMID:
16779973
20.

Prediction of unerupted canines and premolars in a Syrian sample.

Burhan AS, Nawaya FR.

Prog Orthod. 2014 Jan 6;15:4. doi: 10.1186/2196-1042-15-4.

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