Search

Joseph G. Dauner

Examiner (ID: 7813, Phone: (571)270-3574 , Office: P/1634 )

Most Active Art Unit
1634
Art Unit(s)
1634, 1682
Total Applications
883
Issued Applications
423
Pending Applications
129
Abandoned Applications
350

Applications

Application numberTitle of the applicationFiling DateStatus
Array ( [id] => 19345610 [patent_doc_number] => 20240254573 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-08-01 [patent_title] => METHODS AND SYSTEMS FOR HPV DETECTION AND QUANTIFICATION [patent_app_type] => utility [patent_app_number] => 18/554389 [patent_app_country] => US [patent_app_date] => 2022-04-07 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 17258 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -159 [patent_words_short_claim] => 22 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18554389 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/554389
METHODS AND SYSTEMS FOR HPV DETECTION AND QUANTIFICATION Apr 6, 2022 Pending
Array ( [id] => 18021063 [patent_doc_number] => 20220372562 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-11-24 [patent_title] => ASSAY SYSTEMS FOR GENETIC ANALYSIS [patent_app_type] => utility [patent_app_number] => 17/711769 [patent_app_country] => US [patent_app_date] => 2022-04-01 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 31172 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -14 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17711769 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/711769
Assay systems for genetic analysis Mar 31, 2022 Issued
Array ( [id] => 17946151 [patent_doc_number] => 20220333168 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-10-20 [patent_title] => METHOD FOR IDENTIFYING AND QUANTIFYING ORGANIC AND BIOCHEMICAL SUBSTANCES [patent_app_type] => utility [patent_app_number] => 17/699980 [patent_app_country] => US [patent_app_date] => 2022-03-21 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 8183 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -14 [patent_words_short_claim] => 147 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17699980 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/699980
METHOD FOR IDENTIFYING AND QUANTIFYING ORGANIC AND BIOCHEMICAL SUBSTANCES Mar 20, 2022 Abandoned
Array ( [id] => 17830533 [patent_doc_number] => 20220267837 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-08-25 [patent_title] => METHODS FOR IDENTIFYING CARRIER STATUS AND ASSESSING RISK FOR SPINAL MUSCULAR ATROPHY [patent_app_type] => utility [patent_app_number] => 17/694443 [patent_app_country] => US [patent_app_date] => 2022-03-14 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 7140 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -9 [patent_words_short_claim] => 111 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17694443 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/694443
METHODS FOR IDENTIFYING CARRIER STATUS AND ASSESSING RISK FOR SPINAL MUSCULAR ATROPHY Mar 13, 2022 Abandoned
Array ( [id] => 19158131 [patent_doc_number] => 20240150838 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-05-09 [patent_title] => METHOD FOR DETECTING OR QUANTIFYING PHOTOAGED CELLS, APPLICATION OF SAME, AND METHOD FOR PREPARING PHOTOAGED CELLS [patent_app_type] => utility [patent_app_number] => 18/549333 [patent_app_country] => US [patent_app_date] => 2022-03-02 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 7716 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -1 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18549333 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/549333
METHOD FOR DETECTING OR QUANTIFYING PHOTOAGED CELLS, APPLICATION OF SAME, AND METHOD FOR PREPARING PHOTOAGED CELLS Mar 1, 2022 Pending
Array ( [id] => 19158145 [patent_doc_number] => 20240150852 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-05-09 [patent_title] => Graphene-based malaria sensor, methods and uses thereof [patent_app_type] => utility [patent_app_number] => 18/548190 [patent_app_country] => US [patent_app_date] => 2022-02-28 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 4754 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -18 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18548190 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/548190
Graphene-based malaria sensor, methods and uses thereof Feb 27, 2022 Pending
Array ( [id] => 19433002 [patent_doc_number] => 20240301500 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-09-12 [patent_title] => GLOBAL POLYGENIC RISK ASSESSMENT FOR BREAST CANCER [patent_app_type] => utility [patent_app_number] => 18/277554 [patent_app_country] => US [patent_app_date] => 2022-02-24 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 12414 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -46 [patent_words_short_claim] => 11 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18277554 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/277554
GLOBAL POLYGENIC RISK ASSESSMENT FOR BREAST CANCER Feb 23, 2022 Pending
Array ( [id] => 17595812 [patent_doc_number] => 20220145386 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-05-12 [patent_title] => METHODS AND KITS FOR DETECTION OF METHYLATION STATUS [patent_app_type] => utility [patent_app_number] => 17/585814 [patent_app_country] => US [patent_app_date] => 2022-01-27 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 17246 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -22 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17585814 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/585814
METHODS AND KITS FOR DETECTION OF METHYLATION STATUS Jan 26, 2022 Abandoned
Array ( [id] => 19172890 [patent_doc_number] => 20240158864 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-05-16 [patent_title] => METHODS AND COMPOSITIONS FOR IDENTIFYING NEUROENDOCRINE PROSTATE CANCER [patent_app_type] => utility [patent_app_number] => 18/272184 [patent_app_country] => US [patent_app_date] => 2022-01-24 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 46797 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -17 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18272184 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/272184
METHODS AND COMPOSITIONS FOR IDENTIFYING NEUROENDOCRINE PROSTATE CANCER Jan 23, 2022 Pending
Array ( [id] => 19003962 [patent_doc_number] => 20240068033 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-02-29 [patent_title] => METHODS OF DETECTING HIGH RISK BARRETT'S ESOPHAGUS WITH DYSPLASIA, AND ESOPHAGEAL ADENOCARCINOMA [patent_app_type] => utility [patent_app_number] => 18/261366 [patent_app_country] => US [patent_app_date] => 2022-01-14 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 22921 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -16 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18261366 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/261366
METHODS OF DETECTING HIGH RISK BARRETT'S ESOPHAGUS WITH DYSPLASIA, AND ESOPHAGEAL ADENOCARCINOMA Jan 13, 2022 Pending
Array ( [id] => 19051335 [patent_doc_number] => 20240093304 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-03-21 [patent_title] => ALK FUSION GENES AND USES THEREOF [patent_app_type] => utility [patent_app_number] => 18/269937 [patent_app_country] => US [patent_app_date] => 2021-12-29 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 71362 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -18 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18269937 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/269937
ALK FUSION GENES AND USES THEREOF Dec 28, 2021 Pending
Array ( [id] => 17548546 [patent_doc_number] => 20220119887 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-04-21 [patent_title] => DETECTION OF TARGET NUCLEIC ACIDS USING HYBRIDIZATION [patent_app_type] => utility [patent_app_number] => 17/561562 [patent_app_country] => US [patent_app_date] => 2021-12-23 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 24763 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -22 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17561562 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/561562
Detection of target nucleic acids using hybridization Dec 22, 2021 Issued
Array ( [id] => 19652396 [patent_doc_number] => 12174176 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2024-12-24 [patent_title] => Method for relative quantification of nucleic acid sequence, expression, or copy changes, using combined nuclease, ligation, and polymerase reactions [patent_app_type] => utility [patent_app_number] => 17/553182 [patent_app_country] => US [patent_app_date] => 2021-12-16 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 17 [patent_figures_cnt] => 17 [patent_no_of_words] => 28421 [patent_no_of_claims] => 5 [patent_no_of_ind_claims] => 1 [patent_words_short_claim] => 188 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17553182 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/553182
Method for relative quantification of nucleic acid sequence, expression, or copy changes, using combined nuclease, ligation, and polymerase reactions Dec 15, 2021 Issued
Array ( [id] => 18478486 [patent_doc_number] => 11692218 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2023-07-04 [patent_title] => Spatial transcriptomics for antigen-receptors [patent_app_type] => utility [patent_app_number] => 17/552135 [patent_app_country] => US [patent_app_date] => 2021-12-15 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 36 [patent_figures_cnt] => 39 [patent_no_of_words] => 28950 [patent_no_of_claims] => 27 [patent_no_of_ind_claims] => 1 [patent_words_short_claim] => 279 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17552135 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/552135
Spatial transcriptomics for antigen-receptors Dec 14, 2021 Issued
Array ( [id] => 17720813 [patent_doc_number] => 20220213533 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-07-07 [patent_title] => METHOD FOR GENERATING DOUBLE STRANDED DNA LIBRARIES AND SEQUENCING METHODS FOR THE IDENTIFICATION OF METHYLATED [patent_app_type] => utility [patent_app_number] => 17/543806 [patent_app_country] => US [patent_app_date] => 2021-12-07 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 42570 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -4 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17543806 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/543806
METHOD FOR GENERATING DOUBLE STRANDED DNA LIBRARIES AND SEQUENCING METHODS FOR THE IDENTIFICATION OF METHYLATED Dec 6, 2021 Abandoned
Array ( [id] => 17640990 [patent_doc_number] => 20220168728 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-06-02 [patent_title] => NANOSPLASH: A SALIVA-BASED DIAGNOSTIC FOR VIRAL INFECTION SUITABLE FOR HOME USE [patent_app_type] => utility [patent_app_number] => 17/539019 [patent_app_country] => US [patent_app_date] => 2021-11-30 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 21152 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -21 [patent_words_short_claim] => 136 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17539019 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/539019
Nanosplash: a saliva-based diagnostic for viral infection suitable for home use Nov 29, 2021 Issued
Array ( [id] => 19580085 [patent_doc_number] => 12146185 [patent_country] => US [patent_kind] => B2 [patent_issue_date] => 2024-11-19 [patent_title] => Genetic markers for enhancing efficacy of antipsychotic treatment with iloperidone [patent_app_type] => utility [patent_app_number] => 17/536306 [patent_app_country] => US [patent_app_date] => 2021-11-29 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 4 [patent_figures_cnt] => 4 [patent_no_of_words] => 3960 [patent_no_of_claims] => 13 [patent_no_of_ind_claims] => 2 [patent_words_short_claim] => 78 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => patent [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17536306 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/536306
Genetic markers for enhancing efficacy of antipsychotic treatment with iloperidone Nov 28, 2021 Issued
Array ( [id] => 17474214 [patent_doc_number] => 20220081718 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-03-17 [patent_title] => DETERMINATION OF FETAL DNA FRACTION IN A SAMPLE [patent_app_type] => utility [patent_app_number] => 17/535496 [patent_app_country] => US [patent_app_date] => 2021-11-24 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 24768 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -21 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17535496 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/535496
DETERMINATION OF FETAL DNA FRACTION IN A SAMPLE Nov 23, 2021 Abandoned
Array ( [id] => 19113170 [patent_doc_number] => 20240124920 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2024-04-18 [patent_title] => ENCODED ASSAYS [patent_app_type] => utility [patent_app_number] => 18/253803 [patent_app_country] => US [patent_app_date] => 2021-11-23 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 51061 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -19 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 18253803 [rel_patent_id] =>[rel_patent_doc_number] =>)
18/253803
ENCODED ASSAYS Nov 22, 2021 Pending
Array ( [id] => 17579180 [patent_doc_number] => 20220136035 [patent_country] => US [patent_kind] => A1 [patent_issue_date] => 2022-05-05 [patent_title] => NUCLEIC ACID CONTROL MOLECULES FROM NON-HUMAN ORGANISMS [patent_app_type] => utility [patent_app_number] => 17/529896 [patent_app_country] => US [patent_app_date] => 2021-11-18 [patent_effective_date] => 0000-00-00 [patent_drawing_sheets_cnt] => 0 [patent_figures_cnt] => 0 [patent_no_of_words] => 15260 [patent_no_of_claims] => 0 [patent_no_of_ind_claims] => -18 [patent_words_short_claim] => 2 [patent_maintenance] => 1 [patent_no_of_assignments] => 0 [patent_current_assignee] =>[type] => publication [pdf_file] =>[firstpage_image] =>[orig_patent_app_number] => 17529896 [rel_patent_id] =>[rel_patent_doc_number] =>)
17/529896
Nucleic acid control molecules from non-human organisms Nov 17, 2021 Issued
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