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Analyze 11

Manufactured by PerkinElmer
Sourced in United States

The Analyze 11.0 is a high-performance liquid chromatography (HPLC) system designed for analytical and preparative applications. It features a modular design, allowing for customization and flexibility to meet the specific needs of users. The core function of the Analyze 11.0 is to separate, identify, and quantify components in a complex mixture.

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4 protocols using analyze 11

1

Micro-CT Analysis of Rat Knee Joints

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Knee joints were imaged post mortem using a Quantum FX µ-CT scanner (PerkinElmer, Waltham, MA, USA) with parameters time = 3 min, isotropic voxel size = 30 µm3, tube voltage = 90 kV, and tube current = 180 µA. 3D images were obtained and reconstructed to serial 2D images using software Analyze 11.0 (PerkinElmer, Waltham, MA, USA). Serial 2D or 3D scans of the femur, tibia and patella were made and 2D scans were used to evaluate subchondral sclerosis, osteophytes, bone cysts and loose bodies using ImageJ software (ImageJ, 1.47v, NIH, Bethesda, USA) according to a multi-modality scoring system for rats [17 (link)].
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2

Micro-CT Imaging of Rat Osteoarthritis

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All rats were imaged directly after CO2/O2 asphyxiation, using a Quantum FX μCT scanner (PerkinElmer, Waltham, MA) with parameters time = 3 min, isotropic voxel size = 30 μm3, tube voltage of 90 kV, and tube current = 180 μA. 3D reconstructed images were obtained, and serial 2D images were reconstructed using software Analyze 11.0 (PerkinElmer; RRID:SCR_009120). ImageJ software (ImageJ; RRID:SCR_003070) was used for all analyses. Serial 2D scans were evaluated for subchondral sclerosis, osteophytes, bone cysts, and loose bodies according to a multi‐modality scoring system evaluated previously (Panahifar et al., 2014). Joint alignment was evaluated using sagittal serial 2D scans. Periarticular dystrophic calcifications were quantified by the mean average of each pixel value above soft tissue pixel value of each μCT scan, based on histograms representing air, soft tissue, and calcified tissue values. To obtain comparable region of interests, the same distance from growth plate to the lower end of tibia on the scan was measured.
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3

Micro-CT Analysis of Knee Joint

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The knee joint was fixed in 4% paraformaldehyde for 24 h and subjected to micro-CT (Micro-CT, QuantumGX, PerkinElmer, USA). The parameters were as follows: time 14 min, tube voltage 90 kV, and tube current 88uA. Sequential 2D images were reconstructed from the 3D images using the Analyze 11.0 software (PerkinElmer, Waltham, MA, USA).
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4

Comprehensive Micro-CT Imaging and Analysis of Rat Knee

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Directly after CO2/O2 asphyxiation, animals were imaged using a Quantum FX µ-CT scanner (PerkinElmer, Waltham, MA) with parameters time = 3 min, isotropic voxel size = 30 µm3, tube voltage of 90 kV, tube current = 180 µA. Serial 2 D images were reconstructed from the obtained 3 D reconstructed images using software Analyze 11.0 (PerkinElmer, Waltham, MA, USA). ImageJ software (ImageJ, 1.47v, NIH, Bethesda, USA) was used for all analyses. Serial 2 D scans of the femur, tibia, and patella were evaluated for subchondral sclerosis, osteophytes, bone cysts and loose bodies according to a multi-modality scoring system for rats evaluated previously (Panahifar et al., 2014 (link)).
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