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The effect of micro-implant surface ...
~
MacGregor, Scott A.
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The effect of micro-implant surface geometry on peri-implant bone adaptation under orthodontic loading in the rabbit tibia.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
The effect of micro-implant surface geometry on peri-implant bone adaptation under orthodontic loading in the rabbit tibia./
作者:
MacGregor, Scott A.
面頁冊數:
78 p.
附註:
Source: Masters Abstracts International, Volume: 43-03, page: 0813.
Contained By:
Masters Abstracts International43-03.
標題:
Health Sciences, Dentistry. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=MQ95318
ISBN:
0612953181
The effect of micro-implant surface geometry on peri-implant bone adaptation under orthodontic loading in the rabbit tibia.
MacGregor, Scott A.
The effect of micro-implant surface geometry on peri-implant bone adaptation under orthodontic loading in the rabbit tibia.
- 78 p.
Source: Masters Abstracts International, Volume: 43-03, page: 0813.
Thesis (M.Sc.)--University of Toronto (Canada), 2004.
Twenty-four New Zealand white rabbits were used for this investigation. All implants were placed in the mid-diaphyseal surface of the right proximal tibia. In part I, 13 animals were implanted with two test and one control machined threaded micro-implants (1.2mm diameter, 4mm length). In part II of the study, 11 animals received two test and one control porous-surfaced micro-implants (2.6mm diameter, 2.5mm length). After a 12-day healing period, the test micro-implants were loaded with tension coil springs for 42 days. Part I showed no significant differences in peri-implant bone response between the compression, tension and control surfaces of the threaded micro-implants. In part II, the test compression surfaces within 500 mum of the porous-surfaced micro-implants had significantly greater peri-implant bone response than the corresponding control implant surfaces (p < 0.01). Both micro-implant designs appeared to withstand horizontally directed orthodontic force loads in the rabbit tibia following a 12-day healing period.
ISBN: 0612953181Subjects--Topical Terms:
1019378
Health Sciences, Dentistry.
The effect of micro-implant surface geometry on peri-implant bone adaptation under orthodontic loading in the rabbit tibia.
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Source: Masters Abstracts International, Volume: 43-03, page: 0813.
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Thesis (M.Sc.)--University of Toronto (Canada), 2004.
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Twenty-four New Zealand white rabbits were used for this investigation. All implants were placed in the mid-diaphyseal surface of the right proximal tibia. In part I, 13 animals were implanted with two test and one control machined threaded micro-implants (1.2mm diameter, 4mm length). In part II of the study, 11 animals received two test and one control porous-surfaced micro-implants (2.6mm diameter, 2.5mm length). After a 12-day healing period, the test micro-implants were loaded with tension coil springs for 42 days. Part I showed no significant differences in peri-implant bone response between the compression, tension and control surfaces of the threaded micro-implants. In part II, the test compression surfaces within 500 mum of the porous-surfaced micro-implants had significantly greater peri-implant bone response than the corresponding control implant surfaces (p < 0.01). Both micro-implant designs appeared to withstand horizontally directed orthodontic force loads in the rabbit tibia following a 12-day healing period.
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