MOR - Spiral Implant, Internal Hex

SKU: M3508

$75.00
QUANTITY DISCOUNT DISCOUNT PRICE
5 $0.50
$74.50
10 $1.00
$74.00
50 $1.50
$73.50
100 $2.00
$73.00

Please enter the quantity needed to the table below!

Length \ Diameter 3.5mm 3.75mm 4.2mm 5.0mm 6.0mm
6mm
8mm
10mm
11.5mm
13mm
16mm
Quantity: 0 Total: $0.00

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SHIPPING & PAYMENT

Shipping
Shipping Company Shipping Cost Estimated Delivery Time Tracking Information
Israel Post - Standard Shipping Free Shipping

7-21

Business days

Available
DHL - Express Shipping

$35

(Free On Order Over $399)

1-3

Business days

Available
UPS - Express Shipping

$35

(Free On Order Over $399)

1-3

Business days

Available
FedEx - Express Shipping

$35

(Free On Order Over $399)

1-3

Business days

Available

 

Payment

Our online store accepts payments by Credit Cards (Visa, MasterCard, Maestro, American Express), PayPal, and Apple Pay

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Return policy

We will provide instruction on where to return/exchange your item(s). Please note that we can exchange or take back goods only in original packaging without any damage. You should send the product(s) within 60 days of receipt. Exchanges may take up to 10 business days to process after we receive the tracking number for the returned goods.

Full Refund if you don't receive your order. If you do not receive your purchase within 30 days, you can ask for a full refund before order completion.

 

Description

# Connection: Internal Hex 2.42mm

# Implant Diameters: Ø3.5mm, Ø3.75mm, Ø4.2mm, Ø5.0mm, Ø6.0mm

# Implant Length: 6.0mm, 8.0mm, 10.0mm, 11.5mm, 13.0mm and 16.0mm

# Condition: Sterilized, Double Packaging

# Material: Titanium grade 5 (TI-6AL-4V ELI)

# Country of Manufacture: Israel

 

The MOR Spiral Implant, Internal Hex is a tapered bone level implant intended to provide primary stability, controlled insertion, and prosthetic consistency across a broad range of clinical indications. The implant features a spiral body design with self tapping and self drilling thread characteristics, allowing efficient engagement with the osteotomy and adaptation to different bone conditions. Subject to clinical assessment, bone quality, insertion torque, and treatment planning, it may be used in both immediate loading and conventional two stage protocols.

The implant body incorporates progressive threads, apical cutting channels, and cervical micro rings. These macro design features are intended to enhance mechanical retention during placement, support stability, and improve engagement in the crestal region. The platform switching concept is designed to support preservation of marginal bone and maintenance of peri implant soft tissue structure around the restorative platform.

The MOR implant is based on a standard platform Internal Hex connection, providing a unified prosthetic platform across diameters from 3.5 mm to 6.0 mm. This configuration supports restorative continuity and simplifies prosthetic planning throughout the system.

GDT implants are made of Titanium alloy Ti-6Al-4V ELI. This material combines properties such as low specific weight, high strength to weight ratio, very high corrosion resistance, and excellent general biocompatibility.

Ti-6Al-4V ELI is very similar to Ti-6Al-4V, except that Ti-6Al-4V ELI contains reduced levels of oxygen, nitrogen, carbon, and iron. ELI is short for “Extra Low Interstitials”, and these lower interstitials provide improved ductility and better fracture toughness for the material.

Ti-6Al-4V ELI has proven to be highly successful in the fabrication of dental implants

SLA Surface Treatment Technology:

SLA is a type of surface treatment that creates surface roughness intending to enhance osseointegration through greater bone-to-implant contact (BIC).

SLA surface treatment technology is based on a large-grit sandblasting technique that generates a macro-roughness on the titanium surface, This technique is followed by acid-etching that superposes a micro-roughness, This topography offers an excellent structure for cell attachment.

SLA surface treatment increases the rate at which osseointegration occurs by using a combination of grit and acid etching to give the surface increased roughness on multiple levels. This allows osteoblasts to proliferate and adhere to the implant surface. Through osseointegration, SLA helps provide increased stability to the implant which will ultimately lengthen its longevity.

Unboxing Video:


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